%------------------------------------------------------------------------------
% File : Prover9---2026-6A
% Problem : MGT029-1 : TPTP v9.3.1. Released v2.4.0.
% Transfm : none
% Format : tptp:raw
% Command : prover9 -casc 300 -f /export/starexec/sandbox/benchmark/theBenchmark.p
% Computer : n006.cluster.edu
% Model : x86_64 x86_64
% CPU : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory : 8046.5625MB
% OS : Linux 6.8.0-71-generic
% CPULimit : 300s
% WCLimit : 300s
% DateTime : Sun Sep 27 08:02:21 AM UTC 2026
% Result : Unsatisfiable 34.76s 4.97s
% Output : CNFRefutation 35.33s
% Verified :
% SZS Type : ERROR: Analysing output (MakeTreeStats ran out of CPU time)
% Comments :
%------------------------------------------------------------------------------
fof(prove_l11_36,axiom,
environment(sk3),
file('theBenchmark.p',prove_l11_36) ).
cnf(c_1,plain,
environment(sk3),
inference(clausify,[status(thm)],[prove_l11_36]) ).
fof(a4_35,axiom,
! [VAR_0] :
( greater_or_equal(sk2(VAR_0),equilibrium(VAR_0))
| ~ stable(VAR_0)
| ~ environment(VAR_0) ),
file('theBenchmark.p',a4_35) ).
cnf(c_2,plain,
( greater_or_equal(sk2(A),equilibrium(A))
| ~ stable(A)
| ~ environment(A) ),
inference(clausify,[status(thm)],[a4_35]) ).
fof(a4_34,axiom,
! [VAR_0] :
( in_environment(VAR_0,sk2(VAR_0))
| ~ stable(VAR_0)
| ~ environment(VAR_0) ),
file('theBenchmark.p',a4_34) ).
cnf(c_3,plain,
( in_environment(A,sk2(A))
| ~ stable(A)
| ~ environment(A) ),
inference(clausify,[status(thm)],[a4_34]) ).
fof(l1_33,axiom,
! [VAR_0,VAR_1] :
( greater(growth_rate(efficient_producers,VAR_1),growth_rate(first_movers,VAR_1))
| ~ greater_or_equal(VAR_1,sk1(VAR_0))
| ~ subpopulations(first_movers,efficient_producers,VAR_0,VAR_1)
| ~ stable(VAR_0)
| ~ environment(VAR_0) ),
file('theBenchmark.p',l1_33) ).
cnf(c_4,plain,
( greater(growth_rate(efficient_producers,B),growth_rate(first_movers,B))
| ~ greater_or_equal(B,sk1(A))
| ~ subpopulations(first_movers,efficient_producers,A,B)
| ~ stable(A)
| ~ environment(A) ),
inference(clausify,[status(thm)],[l1_33]) ).
fof(l1_32,axiom,
! [VAR_0] :
( in_environment(VAR_0,sk1(VAR_0))
| ~ stable(VAR_0)
| ~ environment(VAR_0) ),
file('theBenchmark.p',l1_32) ).
cnf(c_5,plain,
( in_environment(A,sk1(A))
| ~ stable(A)
| ~ environment(A) ),
inference(clausify,[status(thm)],[l1_32]) ).
fof(l6_31,axiom,
! [VAR_0,VAR_1] :
( greater(zero,growth_rate(first_movers,VAR_1))
| greater(zero,growth_rate(efficient_producers,VAR_1))
| growth_rate(efficient_producers,VAR_1) = zero
| ~ greater_or_equal(VAR_1,equilibrium(VAR_0))
| ~ subpopulations(first_movers,efficient_producers,VAR_0,VAR_1)
| ~ environment(VAR_0) ),
file('theBenchmark.p',l6_31) ).
cnf(c_6,plain,
( greater(zero,growth_rate(first_movers,B))
| greater(zero,growth_rate(efficient_producers,B))
| growth_rate(efficient_producers,B) = zero
| ~ greater_or_equal(B,equilibrium(A))
| ~ subpopulations(first_movers,efficient_producers,A,B)
| ~ environment(A) ),
inference(clausify,[status(thm)],[l6_31]) ).
fof(l6_30,axiom,
! [VAR_0,VAR_1] :
( greater(growth_rate(efficient_producers,VAR_1),zero)
| greater(zero,growth_rate(efficient_producers,VAR_1))
| growth_rate(efficient_producers,VAR_1) = zero
| ~ greater_or_equal(VAR_1,equilibrium(VAR_0))
| ~ subpopulations(first_movers,efficient_producers,VAR_0,VAR_1)
| ~ environment(VAR_0) ),
file('theBenchmark.p',l6_30) ).
cnf(c_7,plain,
( greater(growth_rate(efficient_producers,B),zero)
| greater(zero,growth_rate(efficient_producers,B))
| growth_rate(efficient_producers,B) = zero
| ~ greater_or_equal(B,equilibrium(A))
| ~ subpopulations(first_movers,efficient_producers,A,B)
| ~ environment(A) ),
inference(clausify,[status(thm)],[l6_30]) ).
fof(l6_29,axiom,
! [VAR_0,VAR_1] :
( greater(zero,growth_rate(first_movers,VAR_1))
| greater(growth_rate(first_movers,VAR_1),zero)
| growth_rate(efficient_producers,VAR_1) = zero
| ~ greater_or_equal(VAR_1,equilibrium(VAR_0))
| ~ subpopulations(first_movers,efficient_producers,VAR_0,VAR_1)
| ~ environment(VAR_0) ),
file('theBenchmark.p',l6_29) ).
cnf(c_8,plain,
( greater(zero,growth_rate(first_movers,B))
| greater(growth_rate(first_movers,B),zero)
| growth_rate(efficient_producers,B) = zero
| ~ greater_or_equal(B,equilibrium(A))
| ~ subpopulations(first_movers,efficient_producers,A,B)
| ~ environment(A) ),
inference(clausify,[status(thm)],[l6_29]) ).
fof(l6_28,axiom,
! [VAR_0,VAR_1] :
( greater(growth_rate(efficient_producers,VAR_1),zero)
| greater(growth_rate(first_movers,VAR_1),zero)
| growth_rate(efficient_producers,VAR_1) = zero
| ~ greater_or_equal(VAR_1,equilibrium(VAR_0))
| ~ subpopulations(first_movers,efficient_producers,VAR_0,VAR_1)
| ~ environment(VAR_0) ),
file('theBenchmark.p',l6_28) ).
cnf(c_9,plain,
( greater(growth_rate(efficient_producers,B),zero)
| greater(growth_rate(first_movers,B),zero)
| growth_rate(efficient_producers,B) = zero
| ~ greater_or_equal(B,equilibrium(A))
| ~ subpopulations(first_movers,efficient_producers,A,B)
| ~ environment(A) ),
inference(clausify,[status(thm)],[l6_28]) ).
fof(l6_27,axiom,
! [VAR_0,VAR_1] :
( greater(zero,growth_rate(first_movers,VAR_1))
| greater(zero,growth_rate(efficient_producers,VAR_1))
| growth_rate(first_movers,VAR_1) = zero
| ~ greater_or_equal(VAR_1,equilibrium(VAR_0))
| ~ subpopulations(first_movers,efficient_producers,VAR_0,VAR_1)
| ~ environment(VAR_0) ),
file('theBenchmark.p',l6_27) ).
cnf(c_10,plain,
( greater(zero,growth_rate(first_movers,B))
| greater(zero,growth_rate(efficient_producers,B))
| growth_rate(first_movers,B) = zero
| ~ greater_or_equal(B,equilibrium(A))
| ~ subpopulations(first_movers,efficient_producers,A,B)
| ~ environment(A) ),
inference(clausify,[status(thm)],[l6_27]) ).
fof(l6_26,axiom,
! [VAR_0,VAR_1] :
( greater(growth_rate(efficient_producers,VAR_1),zero)
| greater(zero,growth_rate(efficient_producers,VAR_1))
| growth_rate(first_movers,VAR_1) = zero
| ~ greater_or_equal(VAR_1,equilibrium(VAR_0))
| ~ subpopulations(first_movers,efficient_producers,VAR_0,VAR_1)
| ~ environment(VAR_0) ),
file('theBenchmark.p',l6_26) ).
cnf(c_11,plain,
( greater(growth_rate(efficient_producers,B),zero)
| greater(zero,growth_rate(efficient_producers,B))
| growth_rate(first_movers,B) = zero
| ~ greater_or_equal(B,equilibrium(A))
| ~ subpopulations(first_movers,efficient_producers,A,B)
| ~ environment(A) ),
inference(clausify,[status(thm)],[l6_26]) ).
fof(l6_24,axiom,
! [VAR_0,VAR_1] :
( greater(growth_rate(efficient_producers,VAR_1),zero)
| greater(growth_rate(first_movers,VAR_1),zero)
| growth_rate(first_movers,VAR_1) = zero
| ~ greater_or_equal(VAR_1,equilibrium(VAR_0))
| ~ subpopulations(first_movers,efficient_producers,VAR_0,VAR_1)
| ~ environment(VAR_0) ),
file('theBenchmark.p',l6_24) ).
cnf(c_13,plain,
( greater(growth_rate(efficient_producers,B),zero)
| greater(growth_rate(first_movers,B),zero)
| growth_rate(first_movers,B) = zero
| ~ greater_or_equal(B,equilibrium(A))
| ~ subpopulations(first_movers,efficient_producers,A,B)
| ~ environment(A) ),
inference(clausify,[status(thm)],[l6_24]) ).
cnf(c_14,plain,
( greater(growth_rate(efficient_producers,A),zero)
| greater(growth_rate(first_movers,A),zero)
| growth_rate(first_movers,A) = zero
| ~ greater_or_equal(A,equilibrium(sk3))
| ~ subpopulations(first_movers,efficient_producers,sk3,A) ),
inference(resolve,[status(thm)],[c_1,c_13]) ).
cnf(c_16,plain,
( greater(growth_rate(efficient_producers,A),zero)
| greater(zero,growth_rate(efficient_producers,A))
| growth_rate(first_movers,A) = zero
| ~ greater_or_equal(A,equilibrium(sk3))
| ~ subpopulations(first_movers,efficient_producers,sk3,A) ),
inference(resolve,[status(thm)],[c_1,c_11]) ).
cnf(c_17,plain,
( greater(zero,growth_rate(first_movers,A))
| greater(zero,growth_rate(efficient_producers,A))
| growth_rate(first_movers,A) = zero
| ~ greater_or_equal(A,equilibrium(sk3))
| ~ subpopulations(first_movers,efficient_producers,sk3,A) ),
inference(resolve,[status(thm)],[c_1,c_10]) ).
cnf(c_18,plain,
( greater(growth_rate(efficient_producers,A),zero)
| greater(growth_rate(first_movers,A),zero)
| growth_rate(efficient_producers,A) = zero
| ~ greater_or_equal(A,equilibrium(sk3))
| ~ subpopulations(first_movers,efficient_producers,sk3,A) ),
inference(resolve,[status(thm)],[c_1,c_9]) ).
cnf(c_19,plain,
( greater(zero,growth_rate(first_movers,A))
| greater(growth_rate(first_movers,A),zero)
| growth_rate(efficient_producers,A) = zero
| ~ greater_or_equal(A,equilibrium(sk3))
| ~ subpopulations(first_movers,efficient_producers,sk3,A) ),
inference(resolve,[status(thm)],[c_1,c_8]) ).
cnf(c_20,plain,
( greater(growth_rate(efficient_producers,A),zero)
| greater(zero,growth_rate(efficient_producers,A))
| growth_rate(efficient_producers,A) = zero
| ~ greater_or_equal(A,equilibrium(sk3))
| ~ subpopulations(first_movers,efficient_producers,sk3,A) ),
inference(resolve,[status(thm)],[c_1,c_7]) ).
cnf(c_21,plain,
( greater(zero,growth_rate(first_movers,A))
| greater(zero,growth_rate(efficient_producers,A))
| growth_rate(efficient_producers,A) = zero
| ~ greater_or_equal(A,equilibrium(sk3))
| ~ subpopulations(first_movers,efficient_producers,sk3,A) ),
inference(resolve,[status(thm)],[c_1,c_6]) ).
cnf(c_22,plain,
( in_environment(sk3,sk1(sk3))
| ~ stable(sk3) ),
inference(resolve,[status(thm)],[c_1,c_5]) ).
cnf(c_23,plain,
( greater(growth_rate(efficient_producers,A),growth_rate(first_movers,A))
| ~ greater_or_equal(A,sk1(sk3))
| ~ subpopulations(first_movers,efficient_producers,sk3,A)
| ~ stable(sk3) ),
inference(resolve,[status(thm)],[c_1,c_4]) ).
cnf(c_24,plain,
( in_environment(sk3,sk2(sk3))
| ~ stable(sk3) ),
inference(resolve,[status(thm)],[c_1,c_3]) ).
cnf(c_25,plain,
( greater_or_equal(sk2(sk3),equilibrium(sk3))
| ~ stable(sk3) ),
inference(resolve,[status(thm)],[c_1,c_2]) ).
fof(prove_l11_40,axiom,
! [VAR_0] :
( ~ greater(zero,growth_rate(first_movers,sk4(VAR_0)))
| ~ greater(growth_rate(efficient_producers,sk4(VAR_0)),zero)
| ~ in_environment(sk3,VAR_0) ),
file('theBenchmark.p',prove_l11_40) ).
cnf(c_26,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(A)))
| ~ greater(growth_rate(efficient_producers,sk4(A)),zero)
| ~ in_environment(sk3,A) ),
inference(clausify,[status(thm)],[prove_l11_40]) ).
fof(prove_l11_39,axiom,
! [VAR_0] :
( greater_or_equal(sk4(VAR_0),VAR_0)
| ~ in_environment(sk3,VAR_0) ),
file('theBenchmark.p',prove_l11_39) ).
cnf(c_27,plain,
( greater_or_equal(sk4(A),A)
| ~ in_environment(sk3,A) ),
inference(clausify,[status(thm)],[prove_l11_39]) ).
fof(prove_l11_38,axiom,
! [VAR_0] :
( subpopulations(first_movers,efficient_producers,sk3,sk4(VAR_0))
| ~ in_environment(sk3,VAR_0) ),
file('theBenchmark.p',prove_l11_38) ).
cnf(c_28,plain,
( subpopulations(first_movers,efficient_producers,sk3,sk4(A))
| ~ in_environment(sk3,A) ),
inference(clausify,[status(thm)],[prove_l11_38]) ).
fof(prove_l11_37,axiom,
stable(sk3),
file('theBenchmark.p',prove_l11_37) ).
cnf(c_29,plain,
stable(sk3),
inference(clausify,[status(thm)],[prove_l11_37]) ).
fof(mp_greater_or_equal_23,axiom,
! [VAR_0,VAR_1] :
( greater_or_equal(VAR_0,VAR_1)
| VAR_0 != VAR_1 ),
file('theBenchmark.p',mp_greater_or_equal_23) ).
cnf(c_30,plain,
( greater_or_equal(A,B)
| A != B ),
inference(clausify,[status(thm)],[mp_greater_or_equal_23]) ).
fof(mp_greater_or_equal_22,axiom,
! [VAR_0,VAR_1] :
( greater_or_equal(VAR_0,VAR_1)
| ~ greater(VAR_0,VAR_1) ),
file('theBenchmark.p',mp_greater_or_equal_22) ).
cnf(c_31,plain,
( greater_or_equal(A,B)
| ~ greater(A,B) ),
inference(clausify,[status(thm)],[mp_greater_or_equal_22]) ).
fof(mp_greater_or_equal_21,axiom,
! [VAR_0,VAR_1] :
( VAR_0 = VAR_1
| greater(VAR_0,VAR_1)
| ~ greater_or_equal(VAR_0,VAR_1) ),
file('theBenchmark.p',mp_greater_or_equal_21) ).
cnf(c_32,plain,
( A = B
| greater(A,B)
| ~ greater_or_equal(A,B) ),
inference(clausify,[status(thm)],[mp_greater_or_equal_21]) ).
fof(mp_times_in_environment_20,axiom,
! [VAR_0,VAR_1,VAR_2] :
( greater(VAR_1,VAR_2)
| VAR_2 = VAR_1
| greater(VAR_2,VAR_1)
| ~ in_environment(VAR_0,VAR_2)
| ~ in_environment(VAR_0,VAR_1) ),
file('theBenchmark.p',mp_times_in_environment_20) ).
cnf(c_33,plain,
( greater(B,C)
| C = B
| greater(C,B)
| ~ in_environment(A,C)
| ~ in_environment(A,B) ),
inference(clausify,[status(thm)],[mp_times_in_environment_20]) ).
fof(mp_greater_transitivity_19,axiom,
! [VAR_0,VAR_1,VAR_2] :
( greater(VAR_0,VAR_2)
| ~ greater(VAR_1,VAR_2)
| ~ greater(VAR_0,VAR_1) ),
file('theBenchmark.p',mp_greater_transitivity_19) ).
cnf(c_34,plain,
( greater(A,C)
| ~ greater(B,C)
| ~ greater(A,B) ),
inference(clausify,[status(thm)],[mp_greater_transitivity_19]) ).
cnf(c_35,plain,
greater_or_equal(sk2(sk3),equilibrium(sk3)),
inference(resolve,[status(thm)],[c_29,c_25]) ).
cnf(c_36,plain,
in_environment(sk3,sk2(sk3)),
inference(resolve,[status(thm)],[c_29,c_24]) ).
cnf(c_37,plain,
( greater(growth_rate(efficient_producers,A),growth_rate(first_movers,A))
| ~ greater_or_equal(A,sk1(sk3))
| ~ subpopulations(first_movers,efficient_producers,sk3,A) ),
inference(resolve,[status(thm)],[c_29,c_23]) ).
cnf(c_38,plain,
in_environment(sk3,sk1(sk3)),
inference(resolve,[status(thm)],[c_29,c_22]) ).
cnf(c_39,plain,
greater_or_equal(A,A),
inference(xxres,[status(thm)],[c_30]) ).
cnf(c_40,plain,
( sk2(sk3) = equilibrium(sk3)
| greater(sk2(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_35,c_32]) ).
cnf(c_42,plain,
subpopulations(first_movers,efficient_producers,sk3,sk4(sk2(sk3))),
inference(resolve,[status(thm)],[c_36,c_28]) ).
cnf(c_43,plain,
greater_or_equal(sk4(sk2(sk3)),sk2(sk3)),
inference(resolve,[status(thm)],[c_36,c_27]) ).
cnf(c_44,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero) ),
inference(resolve,[status(thm)],[c_36,c_26]) ).
cnf(c_46,plain,
subpopulations(first_movers,efficient_producers,sk3,sk4(sk1(sk3))),
inference(resolve,[status(thm)],[c_38,c_28]) ).
cnf(c_47,plain,
greater_or_equal(sk4(sk1(sk3)),sk1(sk3)),
inference(resolve,[status(thm)],[c_38,c_27]) ).
cnf(c_48,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| ~ greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero) ),
inference(resolve,[status(thm)],[c_38,c_26]) ).
cnf(c_5155,plain,
( greater(sk2(sk3),A)
| A = sk2(sk3)
| greater(A,sk2(sk3))
| ~ in_environment(sk3,A) ),
inference(resolve,[status(thm)],[c_33,c_36]) ).
cnf(c_5156,plain,
( greater(sk2(sk3),sk1(sk3))
| sk1(sk3) = sk2(sk3)
| greater(sk1(sk3),sk2(sk3)) ),
inference(resolve,[status(thm)],[c_5155,c_38]) ).
cnf(c_49,plain,
( greater(sk2(sk3),sk1(sk3))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3)) ),
inference(copy,[status(thm)],[c_5156]) ).
cnf(c_50,plain,
( greater(A,equilibrium(sk3))
| ~ greater(A,sk2(sk3))
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_40,c_34]) ).
cnf(c_52,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| greater(sk4(sk2(sk3)),sk2(sk3)) ),
inference(resolve,[status(thm)],[c_43,c_32]) ).
cnf(c_53,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| greater(sk4(sk1(sk3)),sk1(sk3)) ),
inference(resolve,[status(thm)],[c_47,c_32]) ).
cnf(c_54,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater_or_equal(sk4(sk2(sk3)),sk1(sk3)) ),
inference(resolve,[status(thm)],[c_42,c_37]) ).
cnf(c_55,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_42,c_21]) ).
cnf(c_56,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_42,c_20]) ).
cnf(c_57,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_42,c_19]) ).
cnf(c_58,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_42,c_18]) ).
cnf(c_59,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_42,c_17]) ).
cnf(c_60,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_42,c_16]) ).
cnf(c_62,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_42,c_14]) ).
cnf(c_5157,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),growth_rate(first_movers,sk4(sk1(sk3))))
| ~ greater_or_equal(sk4(sk1(sk3)),sk1(sk3)) ),
inference(resolve,[status(thm)],[c_46,c_37]) ).
cnf(c_63,plain,
greater(growth_rate(efficient_producers,sk4(sk1(sk3))),growth_rate(first_movers,sk4(sk1(sk3)))),
inference(resolve,[status(thm)],[c_47,c_5157]) ).
cnf(c_64,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| ~ greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_46,c_21]) ).
cnf(c_67,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| ~ greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_46,c_18]) ).
cnf(c_68,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| ~ greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_46,c_17]) ).
cnf(c_71,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| ~ greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_46,c_14]) ).
cnf(c_74,plain,
( greater_or_equal(sk2(sk3),sk1(sk3))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3)) ),
inference(resolve,[status(thm)],[c_49,c_31]) ).
cnf(c_75,plain,
( greater(sk4(sk2(sk3)),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_52,c_50]) ).
cnf(c_77,plain,
( greater(sk4(sk2(sk3)),A)
| ~ greater(sk2(sk3),A)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_52,c_34]) ).
cnf(c_5158,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| greater(sk4(sk2(sk3)),A)
| ~ greater(sk2(sk3),A) ),
inference(resolve,[status(thm)],[c_34,c_52]) ).
cnf(c_78,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| greater(sk4(sk2(sk3)),sk1(sk3)) ),
inference(resolve,[status(thm)],[c_5158,c_49]) ).
cnf(c_80,plain,
( greater(sk4(sk1(sk3)),A)
| ~ greater(sk1(sk3),A)
| sk4(sk1(sk3)) = sk1(sk3) ),
inference(resolve,[status(thm)],[c_53,c_34]) ).
cnf(c_81,plain,
( greater(A,growth_rate(first_movers,sk4(sk1(sk3))))
| ~ greater(A,growth_rate(efficient_producers,sk4(sk1(sk3)))) ),
inference(resolve,[status(thm)],[c_63,c_34]) ).
cnf(c_82,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),A)
| ~ greater(growth_rate(first_movers,sk4(sk1(sk3))),A) ),
inference(resolve,[status(thm)],[c_63,c_34]) ).
cnf(c_86,plain,
( greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_75,c_31]) ).
cnf(c_87,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_86,c_55]) ).
cnf(c_5159,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_20,c_42]) ).
cnf(c_88,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5159,c_86]) ).
cnf(c_5160,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_18,c_42]) ).
cnf(c_90,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5160,c_86]) ).
cnf(c_5161,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_17,c_42]) ).
cnf(c_91,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5161,c_86]) ).
cnf(c_5162,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_16,c_42]) ).
cnf(c_92,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5162,c_86]) ).
cnf(c_5163,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(sk2(sk3)),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_14,c_42]) ).
cnf(c_94,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5163,c_86]) ).
cnf(c_97,plain,
( greater_or_equal(sk4(sk2(sk3)),sk1(sk3))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_78,c_31]) ).
cnf(c_98,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_97,c_54]) ).
cnf(c_103,plain,
( greater(A,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(A,growth_rate(efficient_producers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_98,c_34]) ).
cnf(c_104,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),A)
| ~ greater(growth_rate(first_movers,sk4(sk2(sk3))),A)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_98,c_34]) ).
cnf(c_5164,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3)))) ),
inference(resolve,[status(thm)],[c_44,c_88]) ).
cnf(c_5165,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5164,c_87]) ).
cnf(c_5166,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5165]) ).
cnf(c_5167,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5166]) ).
cnf(c_5168,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5167]) ).
cnf(c_110,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5168]) ).
cnf(c_5169,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_110,c_103]) ).
cnf(c_111,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5169]) ).
cnf(c_113,plain,
( greater(zero,A)
| ~ greater(growth_rate(efficient_producers,sk4(sk2(sk3))),A)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_110,c_34]) ).
cnf(c_5170,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_90,c_104]) ).
cnf(c_5171,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5170]) ).
cnf(c_120,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5171]) ).
cnf(c_5172,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3)))) ),
inference(resolve,[status(thm)],[c_44,c_92]) ).
cnf(c_5173,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5172,c_91]) ).
cnf(c_5174,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5173]) ).
cnf(c_5175,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5174]) ).
cnf(c_5176,plain,
( sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5175]) ).
cnf(c_133,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5176]) ).
cnf(c_5177,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_133,c_103]) ).
cnf(c_138,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5177]) ).
cnf(c_140,plain,
( greater(zero,A)
| ~ greater(growth_rate(efficient_producers,sk4(sk2(sk3))),A)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_133,c_34]) ).
cnf(c_5178,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_94,c_104]) ).
cnf(c_5179,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5178]) ).
cnf(c_144,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5179]) ).
cnf(c_145,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_94,c_34]) ).
cnf(c_148,plain,
( ~ greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(factor,[status(thm)],[c_145]) ).
cnf(c_5180,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3)))) ),
inference(resolve,[status(thm)],[c_44,c_120]) ).
cnf(c_5181,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5180,c_111]) ).
cnf(c_5182,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5181]) ).
cnf(c_5183,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5182]) ).
cnf(c_5184,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5183]) ).
cnf(c_5185,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5184]) ).
cnf(c_160,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5185]) ).
cnf(c_5186,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_160,c_50]) ).
cnf(c_165,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5186]) ).
cnf(c_169,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_165,c_80]) ).
cnf(c_172,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_165,c_31]) ).
cnf(c_5187,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3)))) ),
inference(resolve,[status(thm)],[c_44,c_144]) ).
cnf(c_5188,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5187,c_138]) ).
cnf(c_5189,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5188]) ).
cnf(c_5190,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5189]) ).
cnf(c_5191,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5190]) ).
cnf(c_5192,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5191]) ).
cnf(c_185,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5192]) ).
cnf(c_5193,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_185,c_50]) ).
cnf(c_187,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5193]) ).
cnf(c_191,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_187,c_80]) ).
cnf(c_194,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_187,c_31]) ).
cnf(c_206,plain,
( greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_169,c_31]) ).
cnf(c_212,plain,
( greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_191,c_31]) ).
cnf(c_213,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_206,c_71]) ).
cnf(c_216,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_206,c_68]) ).
cnf(c_220,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_206,c_64]) ).
cnf(c_225,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_212,c_67]) ).
cnf(c_228,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_212,c_64]) ).
cnf(c_5194,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_213,c_82]) ).
cnf(c_231,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5194]) ).
cnf(c_234,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_231,c_48]) ).
cnf(c_5195,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_216,c_234]) ).
cnf(c_5196,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5195]) ).
cnf(c_5197,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5196]) ).
cnf(c_5198,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5197]) ).
cnf(c_5199,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5198]) ).
cnf(c_5200,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5199]) ).
cnf(c_246,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5200]) ).
cnf(c_253,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_246,c_81]) ).
cnf(c_5201,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_253,c_234]) ).
cnf(c_5202,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5201]) ).
cnf(c_5203,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5202]) ).
cnf(c_5204,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5203]) ).
cnf(c_5205,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5204]) ).
cnf(c_5206,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5205]) ).
cnf(c_260,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5206]) ).
cnf(c_263,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(paramod,[status(thm)],[c_260,c_63]) ).
cnf(c_268,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_263,c_48]) ).
cnf(c_269,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(efficient_producers,sk4(sk1(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_263,c_34]) ).
cnf(c_5207,plain,
( ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(paramod,[status(thm)],[c_260,c_268]) ).
cnf(c_5208,plain,
( ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5207]) ).
cnf(c_5209,plain,
( ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5208]) ).
cnf(c_5210,plain,
( ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5209]) ).
cnf(c_5211,plain,
( ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5210]) ).
cnf(c_275,plain,
( ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5211]) ).
cnf(c_5212,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_220,c_268]) ).
cnf(c_5213,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5212]) ).
cnf(c_5214,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5213]) ).
cnf(c_5215,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5214]) ).
cnf(c_5216,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5215]) ).
cnf(c_279,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5216]) ).
cnf(c_5217,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_279,c_269]) ).
cnf(c_5218,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5217]) ).
cnf(c_5219,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5218]) ).
cnf(c_5220,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5219]) ).
cnf(c_5221,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5220]) ).
cnf(c_280,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5221]) ).
cnf(c_5222,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_280,c_275]) ).
cnf(c_5223,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5222]) ).
cnf(c_5224,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5223]) ).
cnf(c_5225,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5224]) ).
cnf(c_5226,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5225]) ).
cnf(c_290,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5226]) ).
cnf(c_293,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_290,c_44]) ).
cnf(c_5227,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_290,c_98]) ).
cnf(c_5228,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5227]) ).
cnf(c_294,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5228]) ).
cnf(c_5229,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_225,c_82]) ).
cnf(c_330,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5229]) ).
cnf(c_365,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_330,c_48]) ).
cnf(c_5230,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3)))) ),
inference(resolve,[status(thm)],[c_48,c_330]) ).
cnf(c_5231,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5230,c_228]) ).
cnf(c_5232,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5231]) ).
cnf(c_5233,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5232]) ).
cnf(c_5234,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5233]) ).
cnf(c_5235,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5234]) ).
cnf(c_5236,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5235]) ).
cnf(c_369,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5236]) ).
cnf(c_372,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_369,c_81]) ).
cnf(c_5237,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(resolve,[status(thm)],[c_372,c_365]) ).
cnf(c_5238,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5237]) ).
cnf(c_5239,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5238]) ).
cnf(c_5240,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5239]) ).
cnf(c_5241,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5240]) ).
cnf(c_5242,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5241]) ).
cnf(c_377,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero ),
inference(copy,[status(thm)],[c_5242]) ).
cnf(c_5243,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_377,c_98]) ).
cnf(c_5244,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5243]) ).
cnf(c_380,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5244]) ).
cnf(c_5245,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_377,c_293]) ).
cnf(c_5246,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5245]) ).
cnf(c_5247,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5246]) ).
cnf(c_5248,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5247]) ).
cnf(c_5249,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5248]) ).
cnf(c_5250,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5249]) ).
cnf(c_382,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5250]) ).
cnf(c_5251,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3)))) ),
inference(resolve,[status(thm)],[c_44,c_380]) ).
cnf(c_5252,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_5251,c_294]) ).
cnf(c_5253,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5252]) ).
cnf(c_5254,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5253]) ).
cnf(c_5255,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5254]) ).
cnf(c_5256,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5255]) ).
cnf(c_5257,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5256]) ).
cnf(c_405,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5257]) ).
cnf(c_5258,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_405,c_50]) ).
cnf(c_407,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5258]) ).
cnf(c_5259,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_407,c_80]) ).
cnf(c_411,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5259]) ).
cnf(c_420,plain,
( greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_411,c_31]) ).
cnf(c_5260,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_420,c_67]) ).
cnf(c_422,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5260]) ).
cnf(c_5261,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_420,c_64]) ).
cnf(c_425,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5261]) ).
cnf(c_5262,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_422,c_82]) ).
cnf(c_430,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5262]) ).
cnf(c_431,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_430,c_48]) ).
cnf(c_432,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_430,c_34]) ).
cnf(c_5263,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_425,c_431]) ).
cnf(c_5264,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5263]) ).
cnf(c_5265,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5264]) ).
cnf(c_5266,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5265]) ).
cnf(c_5267,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5266]) ).
cnf(c_438,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5267]) ).
cnf(c_5268,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_438,c_432]) ).
cnf(c_5269,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5268]) ).
cnf(c_5270,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5269]) ).
cnf(c_5271,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5270]) ).
cnf(c_5272,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5271]) ).
cnf(c_440,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5272]) ).
cnf(c_5273,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_440,c_382]) ).
cnf(c_5274,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5273]) ).
cnf(c_5275,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5274]) ).
cnf(c_5276,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5275]) ).
cnf(c_5277,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5276]) ).
cnf(c_445,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5277]) ).
cnf(c_448,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_445,c_48]) ).
cnf(c_449,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_445,c_63]) ).
cnf(c_5278,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_449,c_268]) ).
cnf(c_5279,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5278]) ).
cnf(c_5280,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5279]) ).
cnf(c_5281,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5280]) ).
cnf(c_454,plain,
( growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5281]) ).
cnf(c_457,plain,
( greater(zero,A)
| ~ greater(growth_rate(first_movers,sk4(sk1(sk3))),A)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_449,c_34]) ).
cnf(c_5282,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_454,c_98]) ).
cnf(c_5283,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5282]) ).
cnf(c_461,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5283]) ).
cnf(c_5284,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_454,c_133]) ).
cnf(c_5285,plain,
( sk2(sk3) = equilibrium(sk3)
| greater(zero,zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5284]) ).
cnf(c_464,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5285]) ).
cnf(c_5286,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_448,c_449]) ).
cnf(c_5287,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5286]) ).
cnf(c_5288,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5287]) ).
cnf(c_5289,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5288]) ).
cnf(c_467,plain,
( ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5289]) ).
cnf(c_5290,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_464,c_467]) ).
cnf(c_5291,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5290]) ).
cnf(c_5292,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5291]) ).
cnf(c_5293,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5292]) ).
cnf(c_468,plain,
( growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5293]) ).
cnf(c_5294,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_468,c_461]) ).
cnf(c_5295,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5294]) ).
cnf(c_5296,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5295]) ).
cnf(c_5297,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5296]) ).
cnf(c_478,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5297]) ).
cnf(c_5298,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_478,c_50]) ).
cnf(c_480,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5298]) ).
cnf(c_5299,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_480,c_80]) ).
cnf(c_484,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5299]) ).
cnf(c_493,plain,
( greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3))
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_484,c_31]) ).
cnf(c_494,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_493,c_71]) ).
cnf(c_5300,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_494,c_457]) ).
cnf(c_5301,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5300]) ).
cnf(c_5302,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5301]) ).
cnf(c_5303,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5302]) ).
cnf(c_5304,plain,
( greater(zero,zero)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5303]) ).
cnf(c_515,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5304]) ).
cnf(c_5305,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3)))) ),
inference(resolve,[status(thm)],[c_48,c_515]) ).
cnf(c_5306,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_5305,c_449]) ).
cnf(c_5307,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5306]) ).
cnf(c_5308,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5307]) ).
cnf(c_5309,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5308]) ).
cnf(c_521,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5309]) ).
cnf(c_5310,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_521,c_467]) ).
cnf(c_5311,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5310]) ).
cnf(c_5312,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5311]) ).
cnf(c_5313,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5312]) ).
cnf(c_522,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5313]) ).
cnf(c_5314,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_522,c_449]) ).
cnf(c_5315,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5314]) ).
cnf(c_5316,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5315]) ).
cnf(c_5317,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5316]) ).
cnf(c_526,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5317]) ).
cnf(c_5318,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(resolve,[status(thm)],[c_526,c_467]) ).
cnf(c_5319,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5318]) ).
cnf(c_5320,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5319]) ).
cnf(c_5321,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5320]) ).
cnf(c_527,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3) ),
inference(copy,[status(thm)],[c_5321]) ).
cnf(c_529,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_527,c_44]) ).
cnf(c_530,plain,
( subpopulations(first_movers,efficient_producers,sk3,sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_527,c_42]) ).
cnf(c_531,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater_or_equal(sk2(sk3),sk1(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_527,c_54]) ).
cnf(c_5322,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_530,c_21]) ).
cnf(c_541,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5322]) ).
cnf(c_5323,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_530,c_20]) ).
cnf(c_542,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5323]) ).
cnf(c_5324,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(growth_rate(first_movers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_530,c_18]) ).
cnf(c_544,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(growth_rate(first_movers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5324]) ).
cnf(c_5325,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_530,c_17]) ).
cnf(c_545,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5325]) ).
cnf(c_5326,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_530,c_16]) ).
cnf(c_546,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5326]) ).
cnf(c_5327,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(growth_rate(first_movers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_530,c_14]) ).
cnf(c_548,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(growth_rate(first_movers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5327]) ).
cnf(c_5328,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk2(sk3)))
| ~ greater_or_equal(sk2(sk3),sk1(sk3)) ),
inference(resolve,[status(thm)],[c_37,c_530]) ).
cnf(c_5329,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk2(sk3))) ),
inference(resolve,[status(thm)],[c_5328,c_74]) ).
cnf(c_549,plain,
( greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk2(sk3))) ),
inference(copy,[status(thm)],[c_5329]) ).
cnf(c_550,plain,
( greater(A,growth_rate(first_movers,sk2(sk3)))
| ~ greater(A,growth_rate(efficient_producers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_549,c_34]) ).
cnf(c_551,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),A)
| ~ greater(growth_rate(first_movers,sk2(sk3)),A)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_549,c_34]) ).
cnf(c_5330,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_527,c_529]) ).
cnf(c_5331,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5330]) ).
cnf(c_5332,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5331]) ).
cnf(c_553,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5332]) ).
cnf(c_5333,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_553,c_542]) ).
cnf(c_5334,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5333,c_541]) ).
cnf(c_5335,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5334]) ).
cnf(c_5336,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5335]) ).
cnf(c_5337,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5336]) ).
cnf(c_5338,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5337]) ).
cnf(c_5339,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5338]) ).
cnf(c_5340,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5339]) ).
cnf(c_5341,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5340]) ).
cnf(c_562,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5341]) ).
cnf(c_5342,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_531,c_74]) ).
cnf(c_563,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5342]) ).
cnf(c_5343,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_562,c_550]) ).
cnf(c_5344,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5343]) ).
cnf(c_5345,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5344]) ).
cnf(c_564,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5345]) ).
cnf(c_5346,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_544,c_551]) ).
cnf(c_5347,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5346]) ).
cnf(c_5348,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5347]) ).
cnf(c_5349,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5348]) ).
cnf(c_582,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5349]) ).
cnf(c_5350,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_553,c_582]) ).
cnf(c_5351,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5350,c_564]) ).
cnf(c_5352,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5351]) ).
cnf(c_5353,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5352]) ).
cnf(c_5354,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5353]) ).
cnf(c_5355,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5354]) ).
cnf(c_5356,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5355]) ).
cnf(c_5357,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5356]) ).
cnf(c_5358,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5357]) ).
cnf(c_594,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5358]) ).
cnf(c_5359,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_594,c_50]) ).
cnf(c_596,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5359]) ).
cnf(c_5360,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_596,c_80]) ).
cnf(c_600,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5360]) ).
cnf(c_615,plain,
( greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_600,c_31]) ).
cnf(c_616,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_615,c_71]) ).
cnf(c_619,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_615,c_68]) ).
cnf(c_620,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_615,c_67]) ).
cnf(c_623,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_615,c_64]) ).
cnf(c_5361,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_553,c_546]) ).
cnf(c_5362,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5361,c_545]) ).
cnf(c_5363,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5362]) ).
cnf(c_5364,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5363]) ).
cnf(c_5365,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5364]) ).
cnf(c_5366,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5365]) ).
cnf(c_5367,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5366]) ).
cnf(c_5368,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5367]) ).
cnf(c_5369,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5368]) ).
cnf(c_645,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5369]) ).
cnf(c_5370,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_645,c_550]) ).
cnf(c_5371,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5370]) ).
cnf(c_5372,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5371]) ).
cnf(c_646,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5372]) ).
cnf(c_5373,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_548,c_551]) ).
cnf(c_5374,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5373]) ).
cnf(c_5375,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5374]) ).
cnf(c_5376,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5375]) ).
cnf(c_670,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5376]) ).
cnf(c_5377,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_553,c_670]) ).
cnf(c_5378,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5377,c_646]) ).
cnf(c_5379,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5378]) ).
cnf(c_5380,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5379]) ).
cnf(c_5381,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5380]) ).
cnf(c_5382,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5381]) ).
cnf(c_5383,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5382]) ).
cnf(c_5384,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5383]) ).
cnf(c_5385,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5384]) ).
cnf(c_682,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5385]) ).
cnf(c_5386,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_682,c_50]) ).
cnf(c_691,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5386]) ).
cnf(c_5387,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_691,c_80]) ).
cnf(c_695,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5387]) ).
cnf(c_704,plain,
( greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_695,c_31]) ).
cnf(c_711,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_704,c_71]) ).
cnf(c_714,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_704,c_68]) ).
cnf(c_5388,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_527,c_563]) ).
cnf(c_5389,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5388]) ).
cnf(c_5390,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5389]) ).
cnf(c_731,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5390]) ).
cnf(c_5391,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_616,c_82]) ).
cnf(c_791,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5391]) ).
cnf(c_5392,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_620,c_82]) ).
cnf(c_825,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5392]) ).
cnf(c_5393,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_711,c_82]) ).
cnf(c_1048,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5393]) ).
cnf(c_1055,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_791,c_48]) ).
cnf(c_5394,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3)))) ),
inference(resolve,[status(thm)],[c_48,c_791]) ).
cnf(c_5395,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5394,c_619]) ).
cnf(c_5396,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5395]) ).
cnf(c_5397,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5396]) ).
cnf(c_5398,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5397]) ).
cnf(c_5399,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5398]) ).
cnf(c_1060,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5399]) ).
cnf(c_5400,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3)))) ),
inference(resolve,[status(thm)],[c_48,c_825]) ).
cnf(c_5401,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5400,c_623]) ).
cnf(c_5402,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5401]) ).
cnf(c_5403,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5402]) ).
cnf(c_5404,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5403]) ).
cnf(c_5405,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5404]) ).
cnf(c_1071,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5405]) ).
cnf(c_1085,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1048,c_48]) ).
cnf(c_1098,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1060,c_81]) ).
cnf(c_5406,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3)))) ),
inference(resolve,[status(thm)],[c_48,c_1048]) ).
cnf(c_5407,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5406,c_714]) ).
cnf(c_5408,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5407]) ).
cnf(c_5409,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5408]) ).
cnf(c_5410,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5409]) ).
cnf(c_5411,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5410]) ).
cnf(c_1119,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5411]) ).
cnf(c_5412,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,A)
| ~ greater(growth_rate(efficient_producers,sk4(sk1(sk3))),A) ),
inference(resolve,[status(thm)],[c_34,c_1071]) ).
cnf(c_5413,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero) ),
inference(resolve,[status(thm)],[c_5412,c_825]) ).
cnf(c_5414,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero) ),
inference(copy,[status(thm)],[c_5413]) ).
cnf(c_5415,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero) ),
inference(copy,[status(thm)],[c_5414]) ).
cnf(c_5416,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero) ),
inference(copy,[status(thm)],[c_5415]) ).
cnf(c_5417,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero) ),
inference(copy,[status(thm)],[c_5416]) ).
cnf(c_1135,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero) ),
inference(copy,[status(thm)],[c_5417]) ).
cnf(c_5418,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1098,c_1055]) ).
cnf(c_5419,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5418]) ).
cnf(c_5420,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5419]) ).
cnf(c_5421,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5420]) ).
cnf(c_5422,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5421]) ).
cnf(c_1144,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5422]) ).
cnf(c_1147,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1144,c_63]) ).
cnf(c_1157,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1147,c_48]) ).
cnf(c_5423,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1144,c_1157]) ).
cnf(c_5424,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5423]) ).
cnf(c_5425,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5424]) ).
cnf(c_5426,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5425]) ).
cnf(c_1167,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5426]) ).
cnf(c_5427,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1167,c_1135]) ).
cnf(c_5428,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5427]) ).
cnf(c_5429,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5428]) ).
cnf(c_5430,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5429]) ).
cnf(c_1168,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5430]) ).
cnf(c_5431,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1168,c_1147]) ).
cnf(c_5432,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5431]) ).
cnf(c_5433,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5432]) ).
cnf(c_5434,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5433]) ).
cnf(c_1172,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5434]) ).
cnf(c_5435,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1172,c_1167]) ).
cnf(c_5436,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5435]) ).
cnf(c_5437,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5436]) ).
cnf(c_5438,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5437]) ).
cnf(c_1173,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5438]) ).
cnf(c_5439,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1173,c_553]) ).
cnf(c_5440,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5439]) ).
cnf(c_5441,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5440]) ).
cnf(c_1177,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5441]) ).
cnf(c_5442,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1173,c_645]) ).
cnf(c_5443,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5442]) ).
cnf(c_5444,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5443]) ).
cnf(c_1180,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5444]) ).
cnf(c_5445,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1173,c_731]) ).
cnf(c_5446,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5445]) ).
cnf(c_5447,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5446]) ).
cnf(c_1183,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5447]) ).
cnf(c_5448,plain,
( ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1183,c_529]) ).
cnf(c_5449,plain,
( ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5448]) ).
cnf(c_5450,plain,
( ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5449]) ).
cnf(c_1201,plain,
( ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5450]) ).
cnf(c_1211,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1119,c_81]) ).
cnf(c_5451,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1211,c_1085]) ).
cnf(c_5452,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5451]) ).
cnf(c_5453,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5452]) ).
cnf(c_5454,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5453]) ).
cnf(c_5455,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5454]) ).
cnf(c_1226,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5455]) ).
cnf(c_1229,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1226,c_63]) ).
cnf(c_1237,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1229,c_48]) ).
cnf(c_5456,plain,
( ~ greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1226,c_1237]) ).
cnf(c_5457,plain,
( ~ greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5456]) ).
cnf(c_5458,plain,
( ~ greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5457]) ).
cnf(c_5459,plain,
( ~ greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5458]) ).
cnf(c_1240,plain,
( ~ greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5459]) ).
cnf(c_5460,plain,
( growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1240,c_1180]) ).
cnf(c_5461,plain,
( growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5460]) ).
cnf(c_5462,plain,
( growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5461]) ).
cnf(c_5463,plain,
( growth_rate(first_movers,sk2(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5462]) ).
cnf(c_1243,plain,
( growth_rate(first_movers,sk2(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5463]) ).
cnf(c_5464,plain,
( greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1243,c_549]) ).
cnf(c_5465,plain,
( greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5464]) ).
cnf(c_5466,plain,
( greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5465]) ).
cnf(c_1246,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5466]) ).
cnf(c_5467,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1243,c_1177]) ).
cnf(c_5468,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5467]) ).
cnf(c_5469,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5468]) ).
cnf(c_5470,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5469]) ).
cnf(c_1251,plain,
( ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5470]) ).
cnf(c_5471,plain,
( greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1246,c_1201]) ).
cnf(c_5472,plain,
( greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5471]) ).
cnf(c_5473,plain,
( greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5472]) ).
cnf(c_5474,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5473]) ).
cnf(c_1255,plain,
( greater(sk1(sk3),sk2(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5474]) ).
cnf(c_5475,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1255,c_50]) ).
cnf(c_1257,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5475]) ).
cnf(c_5476,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1257,c_80]) ).
cnf(c_1261,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5476]) ).
cnf(c_1270,plain,
( greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1261,c_31]) ).
cnf(c_1273,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1270,c_71]) ).
cnf(c_1276,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1270,c_68]) ).
cnf(c_1280,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1270,c_64]) ).
cnf(c_5477,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1273,c_82]) ).
cnf(c_1283,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5477]) ).
cnf(c_1284,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1283,c_48]) ).
cnf(c_1285,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1283,c_34]) ).
cnf(c_5478,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1276,c_1284]) ).
cnf(c_5479,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5478]) ).
cnf(c_5480,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5479]) ).
cnf(c_5481,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5480]) ).
cnf(c_1291,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5481]) ).
cnf(c_5482,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1291,c_1285]) ).
cnf(c_5483,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5482]) ).
cnf(c_5484,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5483]) ).
cnf(c_5485,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5484]) ).
cnf(c_1293,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5485]) ).
cnf(c_5486,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1293,c_1251]) ).
cnf(c_5487,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5486]) ).
cnf(c_5488,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5487]) ).
cnf(c_1298,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5488]) ).
cnf(c_1301,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1298,c_63]) ).
cnf(c_1307,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1301,c_48]) ).
cnf(c_1308,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(efficient_producers,sk4(sk1(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1301,c_34]) ).
cnf(c_5489,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1280,c_1307]) ).
cnf(c_5490,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5489]) ).
cnf(c_5491,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5490]) ).
cnf(c_1309,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5491]) ).
cnf(c_5492,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1309,c_1308]) ).
cnf(c_5493,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5492]) ).
cnf(c_5494,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5493]) ).
cnf(c_1310,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5494]) ).
cnf(c_5495,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1310,c_1251]) ).
cnf(c_5496,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5495]) ).
cnf(c_5497,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5496]) ).
cnf(c_1316,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5497]) ).
cnf(c_5498,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1316,c_1301]) ).
cnf(c_5499,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5498]) ).
cnf(c_5500,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5499]) ).
cnf(c_1320,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5500]) ).
cnf(c_5501,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1320,c_1251]) ).
cnf(c_5502,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5501]) ).
cnf(c_5503,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5502]) ).
cnf(c_1321,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5503]) ).
cnf(c_1323,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1321,c_48]) ).
cnf(c_1324,plain,
( subpopulations(first_movers,efficient_producers,sk3,sk1(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1321,c_46]) ).
cnf(c_1325,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),growth_rate(first_movers,sk4(sk1(sk3))))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1321,c_63]) ).
cnf(c_5504,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),growth_rate(first_movers,sk1(sk3)))
| ~ greater_or_equal(sk1(sk3),sk1(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1324,c_37]) ).
cnf(c_1339,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_39,c_5504]) ).
cnf(c_1340,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1324,c_21]) ).
cnf(c_1343,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1324,c_18]) ).
cnf(c_1344,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1324,c_17]) ).
cnf(c_1347,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1324,c_14]) ).
cnf(c_5505,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_21,c_1324]) ).
cnf(c_5506,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_5505,c_194]) ).
cnf(c_5507,plain,
( sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5506]) ).
cnf(c_1348,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5507]) ).
cnf(c_5508,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_21,c_1324]) ).
cnf(c_5509,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_5508,c_172]) ).
cnf(c_5510,plain,
( sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5509]) ).
cnf(c_1349,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5510]) ).
cnf(c_5511,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_20,c_1324]) ).
cnf(c_5512,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_5511,c_194]) ).
cnf(c_5513,plain,
( sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5512]) ).
cnf(c_1350,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5513]) ).
cnf(c_5514,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_20,c_1324]) ).
cnf(c_5515,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_5514,c_172]) ).
cnf(c_5516,plain,
( sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5515]) ).
cnf(c_1351,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5516]) ).
cnf(c_5517,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_18,c_1324]) ).
cnf(c_5518,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_5517,c_194]) ).
cnf(c_5519,plain,
( sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5518]) ).
cnf(c_1354,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5519]) ).
cnf(c_5520,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_18,c_1324]) ).
cnf(c_5521,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_5520,c_172]) ).
cnf(c_5522,plain,
( sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5521]) ).
cnf(c_1355,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5522]) ).
cnf(c_5523,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_17,c_1324]) ).
cnf(c_5524,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_5523,c_194]) ).
cnf(c_5525,plain,
( sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5524]) ).
cnf(c_1356,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5525]) ).
cnf(c_5526,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_17,c_1324]) ).
cnf(c_5527,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_5526,c_172]) ).
cnf(c_5528,plain,
( sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5527]) ).
cnf(c_1357,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5528]) ).
cnf(c_5529,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_16,c_1324]) ).
cnf(c_5530,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_5529,c_194]) ).
cnf(c_5531,plain,
( sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5530]) ).
cnf(c_1358,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5531]) ).
cnf(c_5532,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_16,c_1324]) ).
cnf(c_5533,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_5532,c_172]) ).
cnf(c_5534,plain,
( sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5533]) ).
cnf(c_1359,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5534]) ).
cnf(c_1364,plain,
( greater(A,growth_rate(first_movers,sk1(sk3)))
| ~ greater(A,growth_rate(efficient_producers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1339,c_34]) ).
cnf(c_1365,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),A)
| ~ greater(growth_rate(first_movers,sk1(sk3)),A)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1339,c_34]) ).
cnf(c_5535,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1321,c_1323]) ).
cnf(c_5536,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5535]) ).
cnf(c_1369,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5536]) ).
cnf(c_5537,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1369,c_1350]) ).
cnf(c_5538,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5537,c_1348]) ).
cnf(c_5539,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5538]) ).
cnf(c_5540,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5539]) ).
cnf(c_5541,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5540]) ).
cnf(c_5542,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5541]) ).
cnf(c_5543,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5542]) ).
cnf(c_5544,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5543]) ).
cnf(c_5545,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5544]) ).
cnf(c_1404,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5545]) ).
cnf(c_5546,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1404,c_1364]) ).
cnf(c_5547,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5546]) ).
cnf(c_1405,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5547]) ).
cnf(c_5548,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1369,c_1351]) ).
cnf(c_5549,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5548,c_1349]) ).
cnf(c_5550,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5549]) ).
cnf(c_5551,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5550]) ).
cnf(c_5552,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5551]) ).
cnf(c_5553,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5552]) ).
cnf(c_5554,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5553]) ).
cnf(c_5555,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5554]) ).
cnf(c_5556,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5555]) ).
cnf(c_1417,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5556]) ).
cnf(c_5557,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1417,c_1364]) ).
cnf(c_5558,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5557]) ).
cnf(c_1423,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5558]) ).
cnf(c_5559,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_1354,c_1365]) ).
cnf(c_5560,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5559]) ).
cnf(c_5561,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5560]) ).
cnf(c_1435,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5561]) ).
cnf(c_5562,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1369,c_1435]) ).
cnf(c_5563,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5562,c_1405]) ).
cnf(c_5564,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5563]) ).
cnf(c_5565,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5564]) ).
cnf(c_5566,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5565]) ).
cnf(c_5567,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5566]) ).
cnf(c_5568,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5567]) ).
cnf(c_5569,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5568]) ).
cnf(c_1442,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5569]) ).
cnf(c_5570,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1442,c_98]) ).
cnf(c_5571,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5570]) ).
cnf(c_1445,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5571]) ).
cnf(c_5572,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_1355,c_1365]) ).
cnf(c_5573,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5572]) ).
cnf(c_5574,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5573]) ).
cnf(c_1452,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_5574]) ).
cnf(c_5575,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1369,c_1452]) ).
cnf(c_5576,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5575,c_1423]) ).
cnf(c_5577,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5576]) ).
cnf(c_5578,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5577]) ).
cnf(c_5579,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5578]) ).
cnf(c_5580,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5579]) ).
cnf(c_5581,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5580]) ).
cnf(c_5582,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5581]) ).
cnf(c_1459,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5582]) ).
cnf(c_1462,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1459,c_44]) ).
cnf(c_5583,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1459,c_1445]) ).
cnf(c_5584,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5583]) ).
cnf(c_5585,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5584]) ).
cnf(c_5586,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5585]) ).
cnf(c_1465,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5586]) ).
cnf(c_5587,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1465,c_50]) ).
cnf(c_1466,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5587]) ).
cnf(c_1478,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1466,c_31]) ).
cnf(c_5588,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1478,c_1343]) ).
cnf(c_5589,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5588]) ).
cnf(c_5590,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5589]) ).
cnf(c_1483,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5590]) ).
cnf(c_5591,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1478,c_1340]) ).
cnf(c_5592,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5591]) ).
cnf(c_5593,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5592]) ).
cnf(c_1486,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5593]) ).
cnf(c_5594,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1442,c_1462]) ).
cnf(c_5595,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5594]) ).
cnf(c_5596,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5595]) ).
cnf(c_5597,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5596]) ).
cnf(c_5598,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5597]) ).
cnf(c_1501,plain,
( ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5598]) ).
cnf(c_5599,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1483,c_1365]) ).
cnf(c_5600,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5599]) ).
cnf(c_5601,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5600]) ).
cnf(c_1502,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5601]) ).
cnf(c_5602,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1369,c_1358]) ).
cnf(c_5603,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5602,c_1356]) ).
cnf(c_5604,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5603]) ).
cnf(c_5605,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5604]) ).
cnf(c_5606,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5605]) ).
cnf(c_5607,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5606]) ).
cnf(c_5608,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5607]) ).
cnf(c_5609,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5608]) ).
cnf(c_5610,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5609]) ).
cnf(c_1509,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5610]) ).
cnf(c_5611,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1502,c_1369]) ).
cnf(c_5612,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5611]) ).
cnf(c_1510,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5612]) ).
cnf(c_1511,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(efficient_producers,sk1(sk3)))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1502,c_34]) ).
cnf(c_1514,plain,
( ~ greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(factor,[status(thm)],[c_1511]) ).
cnf(c_5613,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1369,c_1359]) ).
cnf(c_5614,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5613,c_1357]) ).
cnf(c_5615,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5614]) ).
cnf(c_5616,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5615]) ).
cnf(c_5617,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5616]) ).
cnf(c_5618,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5617]) ).
cnf(c_5619,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5618]) ).
cnf(c_5620,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5619]) ).
cnf(c_5621,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5620]) ).
cnf(c_1520,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5621]) ).
cnf(c_5622,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1486,c_1510]) ).
cnf(c_5623,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5622]) ).
cnf(c_5624,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5623]) ).
cnf(c_5625,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5624]) ).
cnf(c_5626,plain,
( greater(zero,zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5625]) ).
cnf(c_1525,plain,
( greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5626]) ).
cnf(c_5627,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1525,c_1514]) ).
cnf(c_5628,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5627]) ).
cnf(c_5629,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5628]) ).
cnf(c_5630,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5629]) ).
cnf(c_5631,plain,
( greater(zero,zero)
| greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5630]) ).
cnf(c_1526,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5631]) ).
cnf(c_5632,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1526,c_1501]) ).
cnf(c_5633,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5632]) ).
cnf(c_5634,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5633]) ).
cnf(c_5635,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5634]) ).
cnf(c_1527,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5635]) ).
cnf(c_5636,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1527,c_1339]) ).
cnf(c_5637,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5636]) ).
cnf(c_1530,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5637]) ).
cnf(c_5638,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1527,c_1325]) ).
cnf(c_5639,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5638]) ).
cnf(c_1533,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5639]) ).
cnf(c_5640,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1527,c_1369]) ).
cnf(c_5641,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5640]) ).
cnf(c_1534,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5641]) ).
cnf(c_1542,plain,
( greater(zero,A)
| ~ greater(growth_rate(first_movers,sk1(sk3)),A)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1530,c_34]) ).
cnf(c_5642,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1534,c_1530]) ).
cnf(c_5643,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5642]) ).
cnf(c_5644,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5643]) ).
cnf(c_1543,plain,
( ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5644]) ).
cnf(c_5645,plain,
( ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1533,c_1323]) ).
cnf(c_5646,plain,
( ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5645]) ).
cnf(c_1546,plain,
( ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5646]) ).
cnf(c_5647,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1527,c_1509]) ).
cnf(c_5648,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5647]) ).
cnf(c_5649,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5648]) ).
cnf(c_1562,plain,
( growth_rate(first_movers,sk4(sk2(sk3))) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5649]) ).
cnf(c_5650,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1562,c_1543]) ).
cnf(c_5651,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5650]) ).
cnf(c_5652,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5651]) ).
cnf(c_1563,plain,
( growth_rate(first_movers,sk4(sk2(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5652]) ).
cnf(c_5653,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1563,c_98]) ).
cnf(c_5654,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5653]) ).
cnf(c_1566,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5654]) ).
cnf(c_5655,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1527,c_1520]) ).
cnf(c_5656,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5655]) ).
cnf(c_5657,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5656]) ).
cnf(c_1585,plain,
( growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5657]) ).
cnf(c_5658,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1585,c_1543]) ).
cnf(c_5659,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5658]) ).
cnf(c_5660,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5659]) ).
cnf(c_1586,plain,
( growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5660]) ).
cnf(c_5661,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1586,c_1566]) ).
cnf(c_5662,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5661]) ).
cnf(c_5663,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5662]) ).
cnf(c_5664,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5663]) ).
cnf(c_1591,plain,
( greater(zero,zero)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5664]) ).
cnf(c_5665,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1591,c_50]) ).
cnf(c_1592,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5665]) ).
cnf(c_1604,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1592,c_31]) ).
cnf(c_5666,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1604,c_1347]) ).
cnf(c_5667,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5666]) ).
cnf(c_5668,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5667]) ).
cnf(c_1605,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5668]) ).
cnf(c_5669,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1605,c_1542]) ).
cnf(c_5670,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5669]) ).
cnf(c_5671,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5670]) ).
cnf(c_5672,plain,
( greater(zero,zero)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5671]) ).
cnf(c_1617,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5672]) ).
cnf(c_5673,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1617,c_1546]) ).
cnf(c_5674,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5673]) ).
cnf(c_5675,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5674]) ).
cnf(c_1618,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5675]) ).
cnf(c_5676,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1618,c_1543]) ).
cnf(c_5677,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5676]) ).
cnf(c_5678,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5677]) ).
cnf(c_1619,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5678]) ).
cnf(c_5679,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1619,c_1530]) ).
cnf(c_5680,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5679]) ).
cnf(c_5681,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5680]) ).
cnf(c_1632,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5681]) ).
cnf(c_5682,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1632,c_1543]) ).
cnf(c_5683,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5682]) ).
cnf(c_5684,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5683]) ).
cnf(c_1633,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5684]) ).
cnf(c_1635,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1633,c_44]) ).
cnf(c_1636,plain,
( subpopulations(first_movers,efficient_producers,sk3,sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1633,c_42]) ).
cnf(c_1637,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater_or_equal(sk2(sk3),sk1(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1633,c_54]) ).
cnf(c_5685,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1636,c_21]) ).
cnf(c_1647,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5685]) ).
cnf(c_5686,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1636,c_20]) ).
cnf(c_1648,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5686]) ).
cnf(c_5687,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(growth_rate(first_movers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1636,c_18]) ).
cnf(c_1650,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(growth_rate(first_movers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5687]) ).
cnf(c_5688,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1636,c_17]) ).
cnf(c_1651,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5688]) ).
cnf(c_5689,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1636,c_16]) ).
cnf(c_1652,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5689]) ).
cnf(c_5690,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(growth_rate(first_movers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1636,c_14]) ).
cnf(c_1654,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(growth_rate(first_movers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5690]) ).
cnf(c_5691,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk2(sk3)))
| ~ greater_or_equal(sk2(sk3),sk1(sk3)) ),
inference(resolve,[status(thm)],[c_37,c_1636]) ).
cnf(c_5692,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk2(sk3))) ),
inference(resolve,[status(thm)],[c_5691,c_74]) ).
cnf(c_1655,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk2(sk3))) ),
inference(copy,[status(thm)],[c_5692]) ).
cnf(c_5693,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1633,c_1635]) ).
cnf(c_5694,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5693]) ).
cnf(c_1656,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5694]) ).
cnf(c_1657,plain,
( greater(A,growth_rate(first_movers,sk2(sk3)))
| ~ greater(A,growth_rate(efficient_producers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1655,c_34]) ).
cnf(c_1658,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),A)
| ~ greater(growth_rate(first_movers,sk2(sk3)),A)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1655,c_34]) ).
cnf(c_5695,plain,
( sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1637,c_74]) ).
cnf(c_1664,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5695]) ).
cnf(c_5696,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1656,c_1648]) ).
cnf(c_5697,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5696,c_1647]) ).
cnf(c_5698,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5697]) ).
cnf(c_5699,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5698]) ).
cnf(c_5700,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5699]) ).
cnf(c_5701,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5700]) ).
cnf(c_5702,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5701]) ).
cnf(c_1669,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5702]) ).
cnf(c_5703,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1669,c_1657]) ).
cnf(c_5704,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5703]) ).
cnf(c_1670,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5704]) ).
cnf(c_5705,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1650,c_1658]) ).
cnf(c_5706,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5705]) ).
cnf(c_5707,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5706]) ).
cnf(c_1688,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5707]) ).
cnf(c_5708,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1656,c_1688]) ).
cnf(c_5709,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5708,c_1670]) ).
cnf(c_5710,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5709]) ).
cnf(c_5711,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5710]) ).
cnf(c_5712,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5711]) ).
cnf(c_5713,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5712]) ).
cnf(c_5714,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5713]) ).
cnf(c_1700,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5714]) ).
cnf(c_5715,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1700,c_50]) ).
cnf(c_1701,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5715]) ).
cnf(c_1707,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1701,c_31]) ).
cnf(c_5716,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1707,c_1347]) ).
cnf(c_5717,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5716]) ).
cnf(c_1714,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5717]) ).
cnf(c_5718,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1707,c_1344]) ).
cnf(c_5719,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5718]) ).
cnf(c_1717,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5719]) ).
cnf(c_5720,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1707,c_1340]) ).
cnf(c_5721,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5720]) ).
cnf(c_1721,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5721]) ).
cnf(c_5722,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1656,c_1652]) ).
cnf(c_5723,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5722,c_1651]) ).
cnf(c_5724,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5723]) ).
cnf(c_5725,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5724]) ).
cnf(c_5726,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5725]) ).
cnf(c_5727,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5726]) ).
cnf(c_5728,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5727]) ).
cnf(c_1744,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5728]) ).
cnf(c_5729,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1744,c_1657]) ).
cnf(c_5730,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5729]) ).
cnf(c_1745,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5730]) ).
cnf(c_5731,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1654,c_1658]) ).
cnf(c_5732,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5731]) ).
cnf(c_5733,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5732]) ).
cnf(c_1767,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5733]) ).
cnf(c_5734,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1656,c_1767]) ).
cnf(c_5735,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5734,c_1745]) ).
cnf(c_5736,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5735]) ).
cnf(c_5737,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5736]) ).
cnf(c_5738,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5737]) ).
cnf(c_5739,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5738]) ).
cnf(c_5740,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5739]) ).
cnf(c_1778,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5740]) ).
cnf(c_5741,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1778,c_50]) ).
cnf(c_1779,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5741]) ).
cnf(c_1795,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1779,c_31]) ).
cnf(c_5742,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1795,c_1343]) ).
cnf(c_5743,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5742]) ).
cnf(c_1800,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5743]) ).
cnf(c_5744,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1795,c_1340]) ).
cnf(c_5745,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5744]) ).
cnf(c_1803,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5745]) ).
cnf(c_5746,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1633,c_1664]) ).
cnf(c_5747,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5746]) ).
cnf(c_1872,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5747]) ).
cnf(c_5748,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1714,c_1365]) ).
cnf(c_5749,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5748]) ).
cnf(c_5750,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5749]) ).
cnf(c_1888,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5750]) ).
cnf(c_5751,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1888,c_1369]) ).
cnf(c_5752,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5751]) ).
cnf(c_1891,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5752]) ).
cnf(c_5753,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1717,c_1891]) ).
cnf(c_5754,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5753]) ).
cnf(c_5755,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5754]) ).
cnf(c_5756,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5755]) ).
cnf(c_1911,plain,
( greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5756]) ).
cnf(c_5757,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1911,c_1364]) ).
cnf(c_5758,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5757]) ).
cnf(c_1916,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5758]) ).
cnf(c_5759,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1916,c_1891]) ).
cnf(c_5760,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5759]) ).
cnf(c_5761,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5760]) ).
cnf(c_5762,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5761]) ).
cnf(c_1927,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5762]) ).
cnf(c_5763,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1927,c_1339]) ).
cnf(c_5764,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5763]) ).
cnf(c_1930,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5764]) ).
cnf(c_5765,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1930,c_1369]) ).
cnf(c_5766,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5765]) ).
cnf(c_1947,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5766]) ).
cnf(c_1948,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1930,c_34]) ).
cnf(c_5767,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1927,c_1947]) ).
cnf(c_5768,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5767]) ).
cnf(c_5769,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5768]) ).
cnf(c_1951,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5769]) ).
cnf(c_5770,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1721,c_1947]) ).
cnf(c_5771,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5770]) ).
cnf(c_5772,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5771]) ).
cnf(c_1955,plain,
( greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5772]) ).
cnf(c_5773,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1955,c_1948]) ).
cnf(c_5774,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5773]) ).
cnf(c_5775,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5774]) ).
cnf(c_1972,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5775]) ).
cnf(c_5776,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1972,c_1951]) ).
cnf(c_5777,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5776]) ).
cnf(c_5778,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5777]) ).
cnf(c_1988,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5778]) ).
cnf(c_5779,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1988,c_1656]) ).
cnf(c_5780,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5779]) ).
cnf(c_1991,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5780]) ).
cnf(c_5781,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_1988,c_1872]) ).
cnf(c_5782,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5781]) ).
cnf(c_1998,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5782]) ).
cnf(c_5783,plain,
( ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1998,c_1635]) ).
cnf(c_5784,plain,
( ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5783]) ).
cnf(c_2036,plain,
( ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5784]) ).
cnf(c_5785,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1800,c_1365]) ).
cnf(c_5786,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5785]) ).
cnf(c_5787,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5786]) ).
cnf(c_2213,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5787]) ).
cnf(c_5788,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2213,c_1369]) ).
cnf(c_5789,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5788]) ).
cnf(c_2219,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5789]) ).
cnf(c_5790,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1803,c_2219]) ).
cnf(c_5791,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5790]) ).
cnf(c_5792,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5791]) ).
cnf(c_5793,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5792]) ).
cnf(c_2253,plain,
( greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5793]) ).
cnf(c_5794,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2253,c_1364]) ).
cnf(c_5795,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5794]) ).
cnf(c_2258,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5795]) ).
cnf(c_5796,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2258,c_2219]) ).
cnf(c_5797,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5796]) ).
cnf(c_5798,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5797]) ).
cnf(c_5799,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5798]) ).
cnf(c_2267,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5799]) ).
cnf(c_5800,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2267,c_1655]) ).
cnf(c_5801,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5800]) ).
cnf(c_2270,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5801]) ).
cnf(c_5802,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2267,c_1991]) ).
cnf(c_5803,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5802]) ).
cnf(c_5804,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5803]) ).
cnf(c_5805,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5804]) ).
cnf(c_2274,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5805]) ).
cnf(c_5806,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2270,c_2036]) ).
cnf(c_5807,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5806]) ).
cnf(c_5808,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5807]) ).
cnf(c_5809,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5808]) ).
cnf(c_2305,plain,
( greater(sk1(sk3),sk2(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5809]) ).
cnf(c_5810,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2305,c_50]) ).
cnf(c_2306,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5810]) ).
cnf(c_2322,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2306,c_31]) ).
cnf(c_5811,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2322,c_1343]) ).
cnf(c_5812,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5811]) ).
cnf(c_5813,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5812]) ).
cnf(c_2323,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5813]) ).
cnf(c_5814,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2322,c_1340]) ).
cnf(c_5815,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5814]) ).
cnf(c_5816,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5815]) ).
cnf(c_2326,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5816]) ).
cnf(c_5817,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2323,c_1365]) ).
cnf(c_5818,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5817]) ).
cnf(c_5819,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5818]) ).
cnf(c_2352,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5819]) ).
cnf(c_5820,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2352,c_1369]) ).
cnf(c_5821,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5820]) ).
cnf(c_2353,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5821]) ).
cnf(c_2354,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2352,c_34]) ).
cnf(c_5822,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2326,c_2353]) ).
cnf(c_5823,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5822]) ).
cnf(c_5824,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5823]) ).
cnf(c_2368,plain,
( greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5824]) ).
cnf(c_5825,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2368,c_2354]) ).
cnf(c_5826,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5825]) ).
cnf(c_5827,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5826]) ).
cnf(c_2370,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5827]) ).
cnf(c_5828,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2370,c_2274]) ).
cnf(c_5829,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5828]) ).
cnf(c_5830,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5829]) ).
cnf(c_2386,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5830]) ).
cnf(c_5831,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2386,c_1339]) ).
cnf(c_5832,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5831]) ).
cnf(c_2389,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5832]) ).
cnf(c_5833,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2386,c_1325]) ).
cnf(c_5834,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5833]) ).
cnf(c_2392,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5834]) ).
cnf(c_5835,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2386,c_1369]) ).
cnf(c_5836,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5835]) ).
cnf(c_2393,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5836]) ).
cnf(c_5837,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2389,c_1947]) ).
cnf(c_5838,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5837]) ).
cnf(c_2398,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5838]) ).
cnf(c_5839,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2398,c_1655]) ).
cnf(c_5840,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5839]) ).
cnf(c_2413,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5840]) ).
cnf(c_5841,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2398,c_1744]) ).
cnf(c_5842,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5841]) ).
cnf(c_2416,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5842]) ).
cnf(c_5843,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2393,c_2389]) ).
cnf(c_5844,plain,
( sk2(sk3) = sk1(sk3)
| ~ greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5843]) ).
cnf(c_2424,plain,
( ~ greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5844]) ).
cnf(c_5845,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2416,c_2424]) ).
cnf(c_5846,plain,
( sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5845]) ).
cnf(c_2428,plain,
( growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5846]) ).
cnf(c_5847,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2428,c_1655]) ).
cnf(c_5848,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5847]) ).
cnf(c_2431,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5848]) ).
cnf(c_5849,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_1656,c_2431]) ).
cnf(c_5850,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5849,c_2413]) ).
cnf(c_5851,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5850]) ).
cnf(c_5852,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5851]) ).
cnf(c_5853,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5852]) ).
cnf(c_5854,plain,
( greater(sk1(sk3),sk2(sk3))
| greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5853]) ).
cnf(c_2459,plain,
( greater(sk1(sk3),sk2(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5854]) ).
cnf(c_5855,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2459,c_50]) ).
cnf(c_2460,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5855]) ).
cnf(c_2466,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2460,c_31]) ).
cnf(c_5856,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2466,c_1347]) ).
cnf(c_5857,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5856]) ).
cnf(c_2467,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5857]) ).
cnf(c_5858,plain,
( ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2392,c_1323]) ).
cnf(c_5859,plain,
( ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5858]) ).
cnf(c_2476,plain,
( ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5859]) ).
cnf(c_5860,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2467,c_1365]) ).
cnf(c_5861,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk2(sk3) = sk1(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5860]) ).
cnf(c_5862,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5861]) ).
cnf(c_2498,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5862]) ).
cnf(c_5863,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2498,c_2476]) ).
cnf(c_5864,plain,
( sk2(sk3) = sk1(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5863]) ).
cnf(c_2499,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5864]) ).
cnf(c_5865,plain,
( greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2499,c_2389]) ).
cnf(c_5866,plain,
( greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5865]) ).
cnf(c_2506,plain,
( greater(zero,zero)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5866]) ).
cnf(c_5867,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2506,c_2424]) ).
cnf(c_5868,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5867]) ).
cnf(c_2507,plain,
( sk2(sk3) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5868]) ).
cnf(c_2508,plain,
( greater_or_equal(sk2(sk3),sk1(sk3))
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2507,c_30]) ).
cnf(c_5869,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater_or_equal(sk4(sk1(sk3)),sk1(sk3))
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2507,c_54]) ).
cnf(c_2518,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_47,c_5869]) ).
cnf(c_5870,plain,
( sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2518,c_148]) ).
cnf(c_2613,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5870]) ).
cnf(c_5871,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2518,c_140]) ).
cnf(c_2614,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5871]) ).
cnf(c_5872,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3)))) ),
inference(resolve,[status(thm)],[c_44,c_2613]) ).
cnf(c_5873,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5872,c_2614]) ).
cnf(c_5874,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5873]) ).
cnf(c_5875,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5874]) ).
cnf(c_2705,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5875]) ).
cnf(c_5876,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2705,c_2518]) ).
cnf(c_2709,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5876]) ).
cnf(c_5877,plain,
( greater(zero,zero)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2709,c_113]) ).
cnf(c_5878,plain,
( greater(zero,zero)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5877]) ).
cnf(c_2719,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5878]) ).
cnf(c_2721,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2709,c_44]) ).
cnf(c_5879,plain,
( ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2705,c_2721]) ).
cnf(c_5880,plain,
( ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5879]) ).
cnf(c_2728,plain,
( ~ greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5880]) ).
cnf(c_5881,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2719,c_2728]) ).
cnf(c_5882,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5881]) ).
cnf(c_2732,plain,
( growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5882]) ).
cnf(c_5883,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2732,c_2709]) ).
cnf(c_5884,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5883]) ).
cnf(c_2739,plain,
( greater(zero,zero)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5884]) ).
cnf(c_5885,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2739,c_2728]) ).
cnf(c_5886,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5885]) ).
cnf(c_2740,plain,
( sk4(sk2(sk3)) = sk2(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5886]) ).
cnf(c_2742,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2740,c_44]) ).
cnf(c_2743,plain,
( subpopulations(first_movers,efficient_producers,sk3,sk2(sk3))
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2740,c_42]) ).
cnf(c_5887,plain,
( sk4(sk2(sk3)) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2507,c_2740]) ).
cnf(c_2753,plain,
( sk4(sk2(sk3)) = sk1(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5887]) ).
cnf(c_5888,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2743,c_21]) ).
cnf(c_2767,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5888]) ).
cnf(c_5889,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2743,c_20]) ).
cnf(c_2768,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5889]) ).
cnf(c_5890,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(growth_rate(first_movers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2743,c_18]) ).
cnf(c_2770,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(growth_rate(first_movers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5890]) ).
cnf(c_5891,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| ~ greater_or_equal(sk2(sk3),equilibrium(sk3))
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2743,c_16]) ).
cnf(c_2772,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_35,c_5891]) ).
cnf(c_5892,plain,
( sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk2(sk3)))
| ~ greater_or_equal(sk2(sk3),sk1(sk3)) ),
inference(resolve,[status(thm)],[c_37,c_2743]) ).
cnf(c_5893,plain,
( sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk2(sk3))) ),
inference(resolve,[status(thm)],[c_5892,c_2508]) ).
cnf(c_2775,plain,
( sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk2(sk3))) ),
inference(copy,[status(thm)],[c_5893]) ).
cnf(c_5894,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2740,c_2742]) ).
cnf(c_2825,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5894]) ).
cnf(c_5895,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2753,c_2742]) ).
cnf(c_2826,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5895]) ).
cnf(c_2828,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),A)
| ~ greater(growth_rate(first_movers,sk2(sk3)),A)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2775,c_34]) ).
cnf(c_5896,plain,
( sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2507,c_2775]) ).
cnf(c_2831,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5896]) ).
cnf(c_2839,plain,
( greater(A,growth_rate(first_movers,sk1(sk3)))
| ~ greater(A,growth_rate(efficient_producers,sk2(sk3)))
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2831,c_34]) ).
cnf(c_5897,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2825,c_2768]) ).
cnf(c_5898,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5897,c_2767]) ).
cnf(c_5899,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5898]) ).
cnf(c_5900,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5899]) ).
cnf(c_5901,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5900]) ).
cnf(c_2911,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5901]) ).
cnf(c_5902,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2911,c_2839]) ).
cnf(c_2912,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5902]) ).
cnf(c_5903,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| sk2(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2770,c_2828]) ).
cnf(c_5904,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5903]) ).
cnf(c_2934,plain,
( greater(growth_rate(efficient_producers,sk2(sk3)),zero)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5904]) ).
cnf(c_5905,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2826,c_2934]) ).
cnf(c_5906,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5905,c_2912]) ).
cnf(c_5907,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5906]) ).
cnf(c_5908,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5907]) ).
cnf(c_2942,plain,
( growth_rate(efficient_producers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5908]) ).
cnf(c_5909,plain,
( sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2942,c_2775]) ).
cnf(c_2946,plain,
( greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5909]) ).
cnf(c_5910,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(zero,zero)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2942,c_2825]) ).
cnf(c_2950,plain,
( ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| ~ greater(zero,zero)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5910]) ).
cnf(c_5911,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk2(sk3)))
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2825,c_2772]) ).
cnf(c_5912,plain,
( sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5911,c_2946]) ).
cnf(c_5913,plain,
( sk2(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5912]) ).
cnf(c_2967,plain,
( greater(zero,growth_rate(efficient_producers,sk2(sk3)))
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5913]) ).
cnf(c_5914,plain,
( sk2(sk3) = equilibrium(sk3)
| ~ greater(zero,zero)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2950,c_2946]) ).
cnf(c_2969,plain,
( ~ greater(zero,zero)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5914]) ).
cnf(c_5915,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2942,c_2967]) ).
cnf(c_2984,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5915]) ).
cnf(c_5916,plain,
( sk2(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_2984,c_2969]) ).
cnf(c_2990,plain,
( growth_rate(first_movers,sk2(sk3)) = zero
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5916]) ).
cnf(c_5917,plain,
( greater(zero,zero)
| sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_2990,c_2946]) ).
cnf(c_3003,plain,
( greater(zero,zero)
| sk2(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5917]) ).
cnf(c_5918,plain,
( sk2(sk3) = equilibrium(sk3)
| sk2(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3003,c_2969]) ).
cnf(c_3004,plain,
sk2(sk3) = equilibrium(sk3),
inference(copy,[status(thm)],[c_5918]) ).
cnf(c_5919,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),A)
| ~ greater(growth_rate(first_movers,sk4(sk2(sk3))),A)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(equilibrium(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_104]) ).
cnf(c_5920,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),A)
| ~ greater(growth_rate(first_movers,sk4(sk2(sk3))),A)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5919]) ).
cnf(c_5921,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),A)
| ~ greater(growth_rate(first_movers,sk4(sk2(sk3))),A)
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5920]) ).
cnf(c_5922,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),A)
| ~ greater(growth_rate(first_movers,sk4(sk2(sk3))),A)
| equilibrium(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5921]) ).
cnf(c_5923,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),A)
| ~ greater(growth_rate(first_movers,sk4(equilibrium(sk3))),A)
| equilibrium(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5922]) ).
cnf(c_5924,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),A)
| ~ greater(growth_rate(first_movers,sk4(equilibrium(sk3))),A)
| equilibrium(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5923]) ).
cnf(c_3006,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),A)
| ~ greater(growth_rate(first_movers,sk4(equilibrium(sk3))),A)
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5924]) ).
cnf(c_5925,plain,
( greater(A,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(A,growth_rate(efficient_producers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(equilibrium(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_103]) ).
cnf(c_5926,plain,
( greater(A,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(A,growth_rate(efficient_producers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),sk2(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5925]) ).
cnf(c_5927,plain,
( greater(A,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(A,growth_rate(efficient_producers,sk4(sk2(sk3))))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5926]) ).
cnf(c_5928,plain,
( greater(A,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(A,growth_rate(efficient_producers,sk4(sk2(sk3))))
| equilibrium(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5927]) ).
cnf(c_5929,plain,
( greater(A,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(A,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| equilibrium(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5928]) ).
cnf(c_5930,plain,
( greater(A,growth_rate(first_movers,sk4(equilibrium(sk3))))
| ~ greater(A,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| equilibrium(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5929]) ).
cnf(c_3007,plain,
( greater(A,growth_rate(first_movers,sk4(equilibrium(sk3))))
| ~ greater(A,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5930]) ).
cnf(c_5931,plain,
( greater(sk4(sk2(sk3)),A)
| ~ greater(sk2(sk3),A)
| sk4(equilibrium(sk3)) = sk2(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_77]) ).
cnf(c_5932,plain,
( greater(sk4(sk2(sk3)),A)
| ~ greater(sk2(sk3),A)
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5931]) ).
cnf(c_5933,plain,
( greater(sk4(sk2(sk3)),A)
| ~ greater(equilibrium(sk3),A)
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5932]) ).
cnf(c_3013,plain,
( greater(sk4(equilibrium(sk3)),A)
| ~ greater(equilibrium(sk3),A)
| sk4(equilibrium(sk3)) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3004,c_5933]) ).
cnf(c_5934,plain,
( greater_or_equal(sk2(sk3),sk1(sk3))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_74]) ).
cnf(c_5935,plain,
( greater_or_equal(sk2(sk3),sk1(sk3))
| equilibrium(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5934]) ).
cnf(c_5936,plain,
( greater_or_equal(equilibrium(sk3),sk1(sk3))
| equilibrium(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5935]) ).
cnf(c_3015,plain,
( greater_or_equal(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3)) ),
inference(copy,[status(thm)],[c_5936]) ).
cnf(c_5937,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_62]) ).
cnf(c_5938,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5937]) ).
cnf(c_5939,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5938]) ).
cnf(c_3018,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| greater(growth_rate(first_movers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5939]) ).
cnf(c_5940,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_60]) ).
cnf(c_5941,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5940]) ).
cnf(c_5942,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5941]) ).
cnf(c_3020,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5942]) ).
cnf(c_5943,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_59]) ).
cnf(c_5944,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5943]) ).
cnf(c_5945,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5944]) ).
cnf(c_3021,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5945]) ).
cnf(c_5946,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_58]) ).
cnf(c_5947,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5946]) ).
cnf(c_5948,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(growth_rate(first_movers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5947]) ).
cnf(c_3022,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| greater(growth_rate(first_movers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5948]) ).
cnf(c_5949,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_57]) ).
cnf(c_5950,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(growth_rate(first_movers,sk4(sk2(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5949]) ).
cnf(c_5951,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(growth_rate(first_movers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5950]) ).
cnf(c_3023,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| greater(growth_rate(first_movers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5951]) ).
cnf(c_5952,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_56]) ).
cnf(c_5953,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5952]) ).
cnf(c_5954,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5953]) ).
cnf(c_3024,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5954]) ).
cnf(c_5955,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(sk2(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_55]) ).
cnf(c_5956,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk2(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5955]) ).
cnf(c_5957,plain,
( greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5956]) ).
cnf(c_3025,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5957]) ).
cnf(c_5958,plain,
( greater(growth_rate(efficient_producers,sk4(sk2(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater_or_equal(sk4(equilibrium(sk3)),sk1(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_54]) ).
cnf(c_5959,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater_or_equal(sk4(equilibrium(sk3)),sk1(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5958]) ).
cnf(c_3026,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3))))
| ~ greater_or_equal(sk4(equilibrium(sk3)),sk1(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5959]) ).
cnf(c_5960,plain,
( greater(sk2(sk3),sk1(sk3))
| sk2(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_49]) ).
cnf(c_5961,plain,
( greater(sk2(sk3),sk1(sk3))
| equilibrium(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5960]) ).
cnf(c_5962,plain,
( greater(equilibrium(sk3),sk1(sk3))
| equilibrium(sk3) = sk1(sk3)
| greater(sk1(sk3),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_3004,c_5961]) ).
cnf(c_3028,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3)) ),
inference(copy,[status(thm)],[c_5962]) ).
cnf(c_5963,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk2(sk3))))
| ~ greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero) ),
inference(paramod,[status(thm)],[c_3004,c_44]) ).
cnf(c_3029,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| ~ greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero) ),
inference(paramod,[status(thm)],[c_3004,c_5963]) ).
cnf(c_5964,plain,
greater_or_equal(sk4(equilibrium(sk3)),sk2(sk3)),
inference(paramod,[status(thm)],[c_3004,c_43]) ).
cnf(c_3030,plain,
greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)),
inference(paramod,[status(thm)],[c_3004,c_5964]) ).
cnf(c_3031,plain,
subpopulations(first_movers,efficient_producers,sk3,sk4(equilibrium(sk3))),
inference(paramod,[status(thm)],[c_3004,c_42]) ).
cnf(c_3034,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3030,c_3025]) ).
cnf(c_3035,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3030,c_3024]) ).
cnf(c_3036,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| greater(growth_rate(first_movers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3030,c_3023]) ).
cnf(c_3037,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| greater(growth_rate(first_movers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3030,c_3022]) ).
cnf(c_3038,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3030,c_3021]) ).
cnf(c_3039,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3030,c_3020]) ).
cnf(c_3041,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| greater(growth_rate(first_movers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3030,c_3018]) ).
cnf(c_3042,plain,
( greater(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3028,c_80]) ).
cnf(c_3045,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3028,c_31]) ).
cnf(c_3048,plain,
( greater_or_equal(sk4(sk1(sk3)),equilibrium(sk3))
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3042,c_31]) ).
cnf(c_3049,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3048,c_71]) ).
cnf(c_3052,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3048,c_68]) ).
cnf(c_3053,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(first_movers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3048,c_67]) ).
cnf(c_3056,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3048,c_64]) ).
cnf(c_5965,plain,
( greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3)))) ),
inference(resolve,[status(thm)],[c_3029,c_3035]) ).
cnf(c_5966,plain,
( greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5965,c_3034]) ).
cnf(c_5967,plain,
( greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(copy,[status(thm)],[c_5966]) ).
cnf(c_3065,plain,
( greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(copy,[status(thm)],[c_5967]) ).
cnf(c_3068,plain,
( greater(zero,A)
| ~ greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),A)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3065,c_34]) ).
cnf(c_3076,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(first_movers,sk4(equilibrium(sk3))))
| greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3037,c_34]) ).
cnf(c_3079,plain,
( ~ greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3))))
| greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(factor,[status(thm)],[c_3076]) ).
cnf(c_5968,plain,
( greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3)))) ),
inference(resolve,[status(thm)],[c_3029,c_3039]) ).
cnf(c_5969,plain,
( greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5968,c_3038]) ).
cnf(c_5970,plain,
( greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(copy,[status(thm)],[c_5969]) ).
cnf(c_3088,plain,
( greater(zero,growth_rate(efficient_producers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(copy,[status(thm)],[c_5970]) ).
cnf(c_3093,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3088,c_3007]) ).
cnf(c_3095,plain,
( greater(zero,A)
| ~ greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),A)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3088,c_34]) ).
cnf(c_5971,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3041,c_3006]) ).
cnf(c_3099,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(copy,[status(thm)],[c_5971]) ).
cnf(c_3100,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(first_movers,sk4(equilibrium(sk3))))
| greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3041,c_34]) ).
cnf(c_3103,plain,
( ~ greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3))))
| greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(factor,[status(thm)],[c_3100]) ).
cnf(c_5972,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3049,c_82]) ).
cnf(c_3106,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5972]) ).
cnf(c_5973,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3053,c_82]) ).
cnf(c_3134,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5973]) ).
cnf(c_5974,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3)))) ),
inference(resolve,[status(thm)],[c_3029,c_3099]) ).
cnf(c_5975,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5974,c_3093]) ).
cnf(c_5976,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(copy,[status(thm)],[c_5975]) ).
cnf(c_5977,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(copy,[status(thm)],[c_5976]) ).
cnf(c_5978,plain,
( sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(copy,[status(thm)],[c_5977]) ).
cnf(c_3173,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(copy,[status(thm)],[c_5978]) ).
cnf(c_3177,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_3173,c_31]) ).
cnf(c_3180,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3106,c_48]) ).
cnf(c_5979,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3)))) ),
inference(resolve,[status(thm)],[c_48,c_3106]) ).
cnf(c_5980,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5979,c_3052]) ).
cnf(c_5981,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5980]) ).
cnf(c_5982,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5981]) ).
cnf(c_5983,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5982]) ).
cnf(c_3185,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5983]) ).
cnf(c_3188,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3134,c_48]) ).
cnf(c_5984,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3)))) ),
inference(resolve,[status(thm)],[c_48,c_3134]) ).
cnf(c_5985,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5984,c_3056]) ).
cnf(c_5986,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5985]) ).
cnf(c_5987,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5986]) ).
cnf(c_5988,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5987]) ).
cnf(c_3192,plain,
( greater(zero,growth_rate(efficient_producers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5988]) ).
cnf(c_3206,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3185,c_81]) ).
cnf(c_3229,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3192,c_81]) ).
cnf(c_5989,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3206,c_3180]) ).
cnf(c_5990,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5989]) ).
cnf(c_5991,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5990]) ).
cnf(c_5992,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5991]) ).
cnf(c_3266,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5992]) ).
cnf(c_3271,plain,
( greater(sk4(equilibrium(sk3)),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3266,c_3013]) ).
cnf(c_3274,plain,
( greater_or_equal(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3266,c_31]) ).
cnf(c_5993,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3229,c_3188]) ).
cnf(c_5994,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5993]) ).
cnf(c_5995,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5994]) ).
cnf(c_5996,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5995]) ).
cnf(c_3275,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5996]) ).
cnf(c_3280,plain,
( greater(sk4(equilibrium(sk3)),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3275,c_3013]) ).
cnf(c_3283,plain,
( greater_or_equal(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3275,c_31]) ).
cnf(c_3286,plain,
( greater_or_equal(sk4(equilibrium(sk3)),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3271,c_31]) ).
cnf(c_3289,plain,
( greater_or_equal(sk4(equilibrium(sk3)),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3280,c_31]) ).
cnf(c_3290,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3))))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3286,c_3026]) ).
cnf(c_3291,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3))))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3289,c_3026]) ).
cnf(c_3303,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3290,c_3103]) ).
cnf(c_3304,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3290,c_3095]) ).
cnf(c_3305,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3290,c_3079]) ).
cnf(c_3306,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3290,c_3068]) ).
cnf(c_3318,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3291,c_3103]) ).
cnf(c_3321,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3291,c_3068]) ).
cnf(c_5997,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3)))) ),
inference(resolve,[status(thm)],[c_3029,c_3303]) ).
cnf(c_5998,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5997,c_3304]) ).
cnf(c_5999,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5998]) ).
cnf(c_6000,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_5999]) ).
cnf(c_6001,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6000]) ).
cnf(c_6002,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6001]) ).
cnf(c_3350,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6002]) ).
cnf(c_3356,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3350,c_63]) ).
cnf(c_3360,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3356,c_48]) ).
cnf(c_6003,plain,
( ~ greater(zero,zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3350,c_3360]) ).
cnf(c_6004,plain,
( ~ greater(zero,zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6003]) ).
cnf(c_6005,plain,
( ~ greater(zero,zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6004]) ).
cnf(c_6006,plain,
( ~ greater(zero,zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6005]) ).
cnf(c_3362,plain,
( ~ greater(zero,zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6006]) ).
cnf(c_6007,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3)))) ),
inference(resolve,[status(thm)],[c_3029,c_3305]) ).
cnf(c_6008,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6007,c_3306]) ).
cnf(c_6009,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6008]) ).
cnf(c_6010,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6009]) ).
cnf(c_6011,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6010]) ).
cnf(c_6012,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6011]) ).
cnf(c_3387,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6012]) ).
cnf(c_3390,plain,
( greater(growth_rate(efficient_producers,sk4(sk1(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3387,c_63]) ).
cnf(c_3396,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3390,c_48]) ).
cnf(c_6013,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3387,c_3396]) ).
cnf(c_6014,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6013]) ).
cnf(c_6015,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6014]) ).
cnf(c_6016,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6015]) ).
cnf(c_3403,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6016]) ).
cnf(c_6017,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3318,c_3095]) ).
cnf(c_3409,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6017]) ).
cnf(c_6018,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3409,c_3362]) ).
cnf(c_6019,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6018]) ).
cnf(c_6020,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6019]) ).
cnf(c_6021,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6020]) ).
cnf(c_3416,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6021]) ).
cnf(c_6022,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3416,c_3291]) ).
cnf(c_6023,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6022]) ).
cnf(c_6024,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6023]) ).
cnf(c_6025,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6024]) ).
cnf(c_3423,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6025]) ).
cnf(c_6026,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3)))) ),
inference(resolve,[status(thm)],[c_3029,c_3423]) ).
cnf(c_6027,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6026,c_3321]) ).
cnf(c_6028,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6027]) ).
cnf(c_6029,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6028]) ).
cnf(c_6030,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6029]) ).
cnf(c_3435,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6030]) ).
cnf(c_6031,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3435,c_3390]) ).
cnf(c_6032,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6031]) ).
cnf(c_6033,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6032]) ).
cnf(c_6034,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6033]) ).
cnf(c_3441,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6034]) ).
cnf(c_6035,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3441,c_3403]) ).
cnf(c_6036,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6035]) ).
cnf(c_6037,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6036]) ).
cnf(c_6038,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6037]) ).
cnf(c_3442,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6038]) ).
cnf(c_3446,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3442,c_3029]) ).
cnf(c_3449,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3442,c_3088]) ).
cnf(c_6039,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3442,c_3290]) ).
cnf(c_6040,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6039]) ).
cnf(c_6041,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6040]) ).
cnf(c_3451,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6041]) ).
cnf(c_6042,plain,
( greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3442,c_3423]) ).
cnf(c_6043,plain,
( greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6042]) ).
cnf(c_6044,plain,
( greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6043]) ).
cnf(c_3455,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6044]) ).
cnf(c_6045,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3449,c_3362]) ).
cnf(c_6046,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6045]) ).
cnf(c_6047,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6046]) ).
cnf(c_6048,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6047]) ).
cnf(c_3457,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6048]) ).
cnf(c_6049,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3457,c_3446]) ).
cnf(c_6050,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6049]) ).
cnf(c_6051,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6050]) ).
cnf(c_6052,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6051]) ).
cnf(c_3464,plain,
( ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6052]) ).
cnf(c_6053,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3455,c_3464]) ).
cnf(c_6054,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6053]) ).
cnf(c_6055,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6054]) ).
cnf(c_3465,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6055]) ).
cnf(c_3468,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3465,c_63]) ).
cnf(c_6056,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3457,c_3451]) ).
cnf(c_6057,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6056]) ).
cnf(c_6058,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6057]) ).
cnf(c_3486,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6058]) ).
cnf(c_6059,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3486,c_3464]) ).
cnf(c_6060,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6059]) ).
cnf(c_6061,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6060]) ).
cnf(c_3487,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6061]) ).
cnf(c_6062,plain,
( greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3487,c_3468]) ).
cnf(c_6063,plain,
( greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6062]) ).
cnf(c_6064,plain,
( greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6063]) ).
cnf(c_3491,plain,
( greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6064]) ).
cnf(c_6065,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3491,c_3464]) ).
cnf(c_6066,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6065]) ).
cnf(c_6067,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6066]) ).
cnf(c_3492,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6067]) ).
cnf(c_3494,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3492,c_48]) ).
cnf(c_3495,plain,
( subpopulations(first_movers,efficient_producers,sk3,sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3492,c_46]) ).
cnf(c_6068,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),growth_rate(first_movers,sk1(sk3)))
| ~ greater_or_equal(sk1(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3495,c_37]) ).
cnf(c_3510,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_39,c_6068]) ).
cnf(c_6069,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_21,c_3495]) ).
cnf(c_6070,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_6069,c_3045]) ).
cnf(c_3521,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6070]) ).
cnf(c_6071,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_20,c_3495]) ).
cnf(c_6072,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_6071,c_3045]) ).
cnf(c_3524,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6072]) ).
cnf(c_6073,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_18,c_3495]) ).
cnf(c_6074,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_6073,c_3045]) ).
cnf(c_3530,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6074]) ).
cnf(c_6075,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_17,c_3495]) ).
cnf(c_6076,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_6075,c_3045]) ).
cnf(c_3533,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6076]) ).
cnf(c_6077,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_16,c_3495]) ).
cnf(c_6078,plain,
( sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_6077,c_3177]) ).
cnf(c_6079,plain,
( sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6078]) ).
cnf(c_3534,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6079]) ).
cnf(c_6080,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_16,c_3495]) ).
cnf(c_6081,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_6080,c_3045]) ).
cnf(c_3536,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6081]) ).
cnf(c_6082,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_14,c_3495]) ).
cnf(c_6083,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_6082,c_3045]) ).
cnf(c_3542,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6083]) ).
cnf(c_3543,plain,
( greater(A,growth_rate(first_movers,sk1(sk3)))
| ~ greater(A,growth_rate(efficient_producers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3510,c_34]) ).
cnf(c_3544,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),A)
| ~ greater(growth_rate(first_movers,sk1(sk3)),A)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3510,c_34]) ).
cnf(c_6084,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3492,c_3494]) ).
cnf(c_6085,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6084]) ).
cnf(c_3546,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6085]) ).
cnf(c_6086,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3546,c_3524]) ).
cnf(c_6087,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6086,c_3521]) ).
cnf(c_6088,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6087]) ).
cnf(c_6089,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6088]) ).
cnf(c_6090,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6089]) ).
cnf(c_6091,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6090]) ).
cnf(c_6092,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6091]) ).
cnf(c_6093,plain,
( greater(equilibrium(sk3),sk1(sk3))
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6092]) ).
cnf(c_3566,plain,
( greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6093]) ).
cnf(c_6094,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3566,c_3543]) ).
cnf(c_6095,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6094]) ).
cnf(c_3570,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6095]) ).
cnf(c_6096,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_3530,c_3544]) ).
cnf(c_6097,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6096]) ).
cnf(c_6098,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6097]) ).
cnf(c_3592,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6098]) ).
cnf(c_6099,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3546,c_3592]) ).
cnf(c_6100,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6099,c_3570]) ).
cnf(c_6101,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6100]) ).
cnf(c_6102,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6101]) ).
cnf(c_6103,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6102]) ).
cnf(c_6104,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6103]) ).
cnf(c_6105,plain,
( greater(equilibrium(sk3),sk1(sk3))
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6104]) ).
cnf(c_3601,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6105]) ).
cnf(c_6106,plain,
( greater(sk4(equilibrium(sk3)),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3601,c_3013]) ).
cnf(c_3606,plain,
( greater(sk4(equilibrium(sk3)),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6106]) ).
cnf(c_3615,plain,
( greater_or_equal(sk4(equilibrium(sk3)),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3606,c_31]) ).
cnf(c_3616,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3615,c_3026]) ).
cnf(c_3628,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3616,c_3103]) ).
cnf(c_3629,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3616,c_3095]) ).
cnf(c_6107,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3546,c_3536]) ).
cnf(c_6108,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6107,c_3533]) ).
cnf(c_6109,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6108]) ).
cnf(c_6110,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6109]) ).
cnf(c_6111,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6110]) ).
cnf(c_6112,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6111]) ).
cnf(c_6113,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6112]) ).
cnf(c_6114,plain,
( greater(equilibrium(sk3),sk1(sk3))
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6113]) ).
cnf(c_3649,plain,
( greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6114]) ).
cnf(c_6115,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3649,c_3543]) ).
cnf(c_6116,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6115]) ).
cnf(c_3650,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6116]) ).
cnf(c_6117,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_3542,c_3544]) ).
cnf(c_6118,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6117]) ).
cnf(c_6119,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6118]) ).
cnf(c_3675,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6119]) ).
cnf(c_6120,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3546,c_3675]) ).
cnf(c_6121,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6120,c_3650]) ).
cnf(c_6122,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6121]) ).
cnf(c_6123,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6122]) ).
cnf(c_6124,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6123]) ).
cnf(c_6125,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6124]) ).
cnf(c_6126,plain,
( greater(equilibrium(sk3),sk1(sk3))
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6125]) ).
cnf(c_3684,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6126]) ).
cnf(c_6127,plain,
( greater(sk4(equilibrium(sk3)),sk1(sk3))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3684,c_3013]) ).
cnf(c_3689,plain,
( greater(sk4(equilibrium(sk3)),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6127]) ).
cnf(c_3695,plain,
( greater_or_equal(sk4(equilibrium(sk3)),sk1(sk3))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3689,c_31]) ).
cnf(c_3696,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3695,c_3026]) ).
cnf(c_6128,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3)))) ),
inference(resolve,[status(thm)],[c_3029,c_3628]) ).
cnf(c_6129,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6128,c_3629]) ).
cnf(c_6130,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6129]) ).
cnf(c_6131,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6130]) ).
cnf(c_6132,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6131]) ).
cnf(c_3734,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6132]) ).
cnf(c_6133,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3734,c_3616]) ).
cnf(c_6134,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6133]) ).
cnf(c_6135,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6134]) ).
cnf(c_3740,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6135]) ).
cnf(c_3748,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3740,c_3068]) ).
cnf(c_3750,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3740,c_3029]) ).
cnf(c_6136,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3734,c_3750]) ).
cnf(c_6137,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6136]) ).
cnf(c_6138,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6137]) ).
cnf(c_3753,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6138]) ).
cnf(c_6139,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3748,c_3753]) ).
cnf(c_6140,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6139]) ).
cnf(c_6141,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6140]) ).
cnf(c_3760,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6141]) ).
cnf(c_6142,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3760,c_3740]) ).
cnf(c_6143,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6142]) ).
cnf(c_6144,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6143]) ).
cnf(c_3765,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6144]) ).
cnf(c_6145,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3765,c_3753]) ).
cnf(c_6146,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6145]) ).
cnf(c_6147,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6146]) ).
cnf(c_3766,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6147]) ).
cnf(c_6148,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3766,c_3510]) ).
cnf(c_6149,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6148]) ).
cnf(c_3769,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6149]) ).
cnf(c_6150,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3766,c_3546]) ).
cnf(c_6151,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6150]) ).
cnf(c_3772,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6151]) ).
cnf(c_6152,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3546,c_3534]) ).
cnf(c_6153,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6152,c_3769]) ).
cnf(c_6154,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6153]) ).
cnf(c_6155,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6154]) ).
cnf(c_6156,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6155]) ).
cnf(c_3786,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6156]) ).
cnf(c_6157,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3772,c_3769]) ).
cnf(c_6158,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6157]) ).
cnf(c_3787,plain,
( ~ greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6158]) ).
cnf(c_6159,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3766,c_3786]) ).
cnf(c_6160,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6159]) ).
cnf(c_3801,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6160]) ).
cnf(c_6161,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3801,c_3787]) ).
cnf(c_6162,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6161]) ).
cnf(c_3805,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6162]) ).
cnf(c_6163,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3805,c_3696]) ).
cnf(c_6164,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6163]) ).
cnf(c_6165,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6164]) ).
cnf(c_3811,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6165]) ).
cnf(c_3815,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3811,c_3068]) ).
cnf(c_6166,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3815,c_3787]) ).
cnf(c_6167,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6166]) ).
cnf(c_3826,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6167]) ).
cnf(c_6168,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3826,c_3811]) ).
cnf(c_6169,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6168]) ).
cnf(c_6170,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6169]) ).
cnf(c_3831,plain,
( greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6170]) ).
cnf(c_6171,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3831,c_3787]) ).
cnf(c_6172,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6171]) ).
cnf(c_3832,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6172]) ).
cnf(c_6173,plain,
( greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3832,c_3769]) ).
cnf(c_6174,plain,
( greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6173]) ).
cnf(c_3839,plain,
( greater(zero,zero)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6174]) ).
cnf(c_6175,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3839,c_3787]) ).
cnf(c_6176,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6175]) ).
cnf(c_3843,plain,
( sk4(equilibrium(sk3)) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6176]) ).
cnf(c_3845,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| ~ greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3843,c_3029]) ).
cnf(c_3846,plain,
( subpopulations(first_movers,efficient_producers,sk3,equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3843,c_3031]) ).
cnf(c_3847,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3))))
| ~ greater_or_equal(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3843,c_3026]) ).
cnf(c_3849,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3843,c_3036]) ).
cnf(c_3852,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3843,c_3037]) ).
cnf(c_3894,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3)))
| ~ greater_or_equal(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3846,c_37]) ).
cnf(c_6177,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| ~ greater_or_equal(equilibrium(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3846,c_21]) ).
cnf(c_3895,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_39,c_6177]) ).
cnf(c_6178,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| ~ greater_or_equal(equilibrium(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3846,c_20]) ).
cnf(c_3896,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_39,c_6178]) ).
cnf(c_6179,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| ~ greater_or_equal(equilibrium(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3846,c_19]) ).
cnf(c_3897,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_39,c_6179]) ).
cnf(c_6180,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| ~ greater_or_equal(equilibrium(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3846,c_18]) ).
cnf(c_3898,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_39,c_6180]) ).
cnf(c_6181,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| ~ greater_or_equal(equilibrium(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3846,c_17]) ).
cnf(c_3899,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_39,c_6181]) ).
cnf(c_6182,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| ~ greater_or_equal(equilibrium(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3846,c_16]) ).
cnf(c_3900,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_39,c_6182]) ).
cnf(c_6183,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| ~ greater_or_equal(equilibrium(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3846,c_14]) ).
cnf(c_3902,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_39,c_6183]) ).
cnf(c_6184,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3)))
| ~ greater_or_equal(equilibrium(sk3),sk1(sk3)) ),
inference(resolve,[status(thm)],[c_37,c_3846]) ).
cnf(c_6185,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3))) ),
inference(resolve,[status(thm)],[c_6184,c_3283]) ).
cnf(c_3903,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3))) ),
inference(copy,[status(thm)],[c_6185]) ).
cnf(c_6186,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3)))
| ~ greater_or_equal(equilibrium(sk3),sk1(sk3)) ),
inference(resolve,[status(thm)],[c_37,c_3846]) ).
cnf(c_6187,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3))) ),
inference(resolve,[status(thm)],[c_6186,c_3274]) ).
cnf(c_3904,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3))) ),
inference(copy,[status(thm)],[c_6187]) ).
cnf(c_6188,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3)))
| ~ greater_or_equal(equilibrium(sk3),sk1(sk3)) ),
inference(resolve,[status(thm)],[c_37,c_3846]) ).
cnf(c_6189,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3))) ),
inference(resolve,[status(thm)],[c_6188,c_3015]) ).
cnf(c_3905,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3))) ),
inference(copy,[status(thm)],[c_6189]) ).
cnf(c_3906,plain,
( greater(A,growth_rate(first_movers,equilibrium(sk3)))
| ~ greater(A,growth_rate(efficient_producers,equilibrium(sk3)))
| greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3905,c_34]) ).
cnf(c_3907,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),A)
| ~ greater(growth_rate(first_movers,equilibrium(sk3)),A)
| greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3905,c_34]) ).
cnf(c_6190,plain,
( ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| ~ greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3843,c_3845]) ).
cnf(c_3909,plain,
( ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| ~ greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6190]) ).
cnf(c_6191,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3))))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3847,c_3015]) ).
cnf(c_3914,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3))))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6191]) ).
cnf(c_6192,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3909,c_3896]) ).
cnf(c_6193,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6192,c_3895]) ).
cnf(c_6194,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6193]) ).
cnf(c_6195,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6194]) ).
cnf(c_6196,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6195]) ).
cnf(c_3925,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6196]) ).
cnf(c_3928,plain,
( greater(zero,A)
| ~ greater(growth_rate(efficient_producers,equilibrium(sk3)),A)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3925,c_34]) ).
cnf(c_3952,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(first_movers,equilibrium(sk3)))
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3898,c_34]) ).
cnf(c_3955,plain,
( ~ greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3)))
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(factor,[status(thm)],[c_3952]) ).
cnf(c_6197,plain,
( greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3)))) ),
inference(resolve,[status(thm)],[c_3029,c_3852]) ).
cnf(c_6198,plain,
( greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6197,c_3849]) ).
cnf(c_6199,plain,
( greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6198]) ).
cnf(c_6200,plain,
( greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6199]) ).
cnf(c_3986,plain,
( greater(growth_rate(first_movers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6200]) ).
cnf(c_6201,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3909,c_3900]) ).
cnf(c_6202,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6201,c_3899]) ).
cnf(c_6203,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6202]) ).
cnf(c_6204,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6203]) ).
cnf(c_6205,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6204]) ).
cnf(c_3991,plain,
( greater(zero,growth_rate(efficient_producers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6205]) ).
cnf(c_6206,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3991,c_3906]) ).
cnf(c_3992,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6206]) ).
cnf(c_3994,plain,
( greater(zero,A)
| ~ greater(growth_rate(efficient_producers,equilibrium(sk3)),A)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3991,c_34]) ).
cnf(c_6207,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3902,c_3907]) ).
cnf(c_6208,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| greater(sk1(sk3),equilibrium(sk3))
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6207]) ).
cnf(c_4015,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6208]) ).
cnf(c_4018,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(first_movers,equilibrium(sk3)))
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3902,c_34]) ).
cnf(c_4021,plain,
( ~ greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3)))
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(factor,[status(thm)],[c_4018]) ).
cnf(c_6209,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3909,c_4015]) ).
cnf(c_6210,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6209,c_3992]) ).
cnf(c_6211,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6210]) ).
cnf(c_6212,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6211]) ).
cnf(c_6213,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6212]) ).
cnf(c_4030,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6213]) ).
cnf(c_4038,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4030,c_31]) ).
cnf(c_6214,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_3843,c_3914]) ).
cnf(c_4106,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6214]) ).
cnf(c_6215,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3903,c_4021]) ).
cnf(c_4244,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6215]) ).
cnf(c_6216,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3903,c_3994]) ).
cnf(c_4245,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6216]) ).
cnf(c_6217,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3903,c_3955]) ).
cnf(c_4246,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6217]) ).
cnf(c_6218,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3903,c_3928]) ).
cnf(c_4247,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6218]) ).
cnf(c_6219,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3904,c_4021]) ).
cnf(c_4273,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6219]) ).
cnf(c_6220,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3909,c_4244]) ).
cnf(c_6221,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6220,c_4245]) ).
cnf(c_6222,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6221]) ).
cnf(c_6223,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6222]) ).
cnf(c_6224,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6223]) ).
cnf(c_6225,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6224]) ).
cnf(c_4365,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6225]) ).
cnf(c_4368,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| ~ greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4365,c_48]) ).
cnf(c_4369,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4365,c_63]) ).
cnf(c_6226,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4368,c_4369]) ).
cnf(c_6227,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| ~ greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6226]) ).
cnf(c_6228,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| ~ greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6227]) ).
cnf(c_4387,plain,
( ~ greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6228]) ).
cnf(c_6229,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3909,c_4246]) ).
cnf(c_6230,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6229,c_4247]) ).
cnf(c_6231,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6230]) ).
cnf(c_6232,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6231]) ).
cnf(c_6233,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6232]) ).
cnf(c_6234,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6233]) ).
cnf(c_4402,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6234]) ).
cnf(c_4405,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| ~ greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4402,c_48]) ).
cnf(c_4406,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4402,c_63]) ).
cnf(c_6235,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4405,c_4406]) ).
cnf(c_6236,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| ~ greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6235]) ).
cnf(c_6237,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| ~ greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6236]) ).
cnf(c_4418,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6237]) ).
cnf(c_6238,plain,
( greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4273,c_3994]) ).
cnf(c_6239,plain,
( greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6238]) ).
cnf(c_4427,plain,
( greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6239]) ).
cnf(c_6240,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4427,c_4387]) ).
cnf(c_6241,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6240]) ).
cnf(c_6242,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6241]) ).
cnf(c_4434,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6242]) ).
cnf(c_6243,plain,
( greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4434,c_4369]) ).
cnf(c_6244,plain,
( greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6243]) ).
cnf(c_6245,plain,
( greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6244]) ).
cnf(c_4438,plain,
( greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6245]) ).
cnf(c_6246,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4438,c_4387]) ).
cnf(c_6247,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6246]) ).
cnf(c_6248,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6247]) ).
cnf(c_4440,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6248]) ).
cnf(c_6249,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4440,c_3897]) ).
cnf(c_4446,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6249]) ).
cnf(c_6250,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4440,c_3903]) ).
cnf(c_6251,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6250]) ).
cnf(c_4453,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6251]) ).
cnf(c_6252,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4440,c_3904]) ).
cnf(c_6253,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6252]) ).
cnf(c_4454,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6253]) ).
cnf(c_6254,plain,
( greater(zero,zero)
| greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4440,c_4446]) ).
cnf(c_6255,plain,
( greater(zero,zero)
| greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6254]) ).
cnf(c_6256,plain,
( greater(zero,zero)
| greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6255]) ).
cnf(c_4469,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6256]) ).
cnf(c_6257,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4469,c_4418]) ).
cnf(c_6258,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6257]) ).
cnf(c_6259,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6258]) ).
cnf(c_4470,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6259]) ).
cnf(c_6260,plain,
( ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| ~ greater(zero,zero)
| sk1(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4470,c_3909]) ).
cnf(c_4474,plain,
( ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6260]) ).
cnf(c_6261,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4440,c_4474]) ).
cnf(c_6262,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6261]) ).
cnf(c_6263,plain,
( ~ greater(zero,zero)
| ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6262]) ).
cnf(c_4499,plain,
( ~ greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6263]) ).
cnf(c_6264,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4470,c_4453]) ).
cnf(c_6265,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6264]) ).
cnf(c_4555,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6265]) ).
cnf(c_6266,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4555,c_4499]) ).
cnf(c_6267,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6266]) ).
cnf(c_4557,plain,
( growth_rate(efficient_producers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6267]) ).
cnf(c_4560,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4557,c_63]) ).
cnf(c_6268,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4470,c_4454]) ).
cnf(c_6269,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6268]) ).
cnf(c_4568,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6269]) ).
cnf(c_6270,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4568,c_4499]) ).
cnf(c_6271,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6270]) ).
cnf(c_4569,plain,
( growth_rate(first_movers,sk4(sk1(sk3))) = zero
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6271]) ).
cnf(c_6272,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4569,c_4560]) ).
cnf(c_6273,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6272]) ).
cnf(c_4573,plain,
( greater(zero,zero)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6273]) ).
cnf(c_6274,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4573,c_4499]) ).
cnf(c_6275,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6274]) ).
cnf(c_4574,plain,
( sk4(sk1(sk3)) = sk1(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6275]) ).
cnf(c_4576,plain,
( ~ greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4574,c_48]) ).
cnf(c_4577,plain,
( subpopulations(first_movers,efficient_producers,sk3,sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4574,c_46]) ).
cnf(c_4578,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),growth_rate(first_movers,sk4(sk1(sk3))))
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4574,c_63]) ).
cnf(c_6276,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),growth_rate(first_movers,sk1(sk3)))
| ~ greater_or_equal(sk1(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4577,c_37]) ).
cnf(c_4592,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),growth_rate(first_movers,sk1(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_39,c_6276]) ).
cnf(c_4593,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4577,c_21]) ).
cnf(c_4596,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4577,c_18]) ).
cnf(c_4600,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4577,c_14]) ).
cnf(c_6277,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_21,c_4577]) ).
cnf(c_6278,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_6277,c_3045]) ).
cnf(c_4605,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6278]) ).
cnf(c_6279,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_20,c_4577]) ).
cnf(c_6280,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_6279,c_3045]) ).
cnf(c_4610,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6280]) ).
cnf(c_6281,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_18,c_4577]) ).
cnf(c_6282,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_6281,c_3045]) ).
cnf(c_4620,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6282]) ).
cnf(c_6283,plain,
( sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero
| ~ greater_or_equal(sk1(sk3),equilibrium(sk3)) ),
inference(resolve,[status(thm)],[c_16,c_4577]) ).
cnf(c_6284,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_6283,c_4038]) ).
cnf(c_4628,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6284]) ).
cnf(c_4641,plain,
( greater(A,growth_rate(first_movers,sk1(sk3)))
| ~ greater(A,growth_rate(efficient_producers,sk1(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4592,c_34]) ).
cnf(c_4642,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),A)
| ~ greater(growth_rate(first_movers,sk1(sk3)),A)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4592,c_34]) ).
cnf(c_6285,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4574,c_4576]) ).
cnf(c_4644,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6285]) ).
cnf(c_6286,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4644,c_4610]) ).
cnf(c_6287,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6286,c_4605]) ).
cnf(c_6288,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6287]) ).
cnf(c_6289,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6288]) ).
cnf(c_6290,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6289]) ).
cnf(c_6291,plain,
( greater(equilibrium(sk3),sk1(sk3))
| greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6290]) ).
cnf(c_4676,plain,
( greater(equilibrium(sk3),sk1(sk3))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6291]) ).
cnf(c_6292,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4676,c_4641]) ).
cnf(c_4682,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6292]) ).
cnf(c_6293,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_4620,c_4642]) ).
cnf(c_6294,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6293]) ).
cnf(c_4718,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6294]) ).
cnf(c_6295,plain,
( greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4644,c_4718]) ).
cnf(c_6296,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6295,c_4682]) ).
cnf(c_6297,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6296]) ).
cnf(c_6298,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6297]) ).
cnf(c_6299,plain,
( greater(equilibrium(sk3),sk1(sk3))
| greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6298]) ).
cnf(c_4731,plain,
( greater(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6299]) ).
cnf(c_4742,plain,
( greater_or_equal(equilibrium(sk3),sk1(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4731,c_31]) ).
cnf(c_6300,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4742,c_3894]) ).
cnf(c_4743,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),growth_rate(first_movers,equilibrium(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6300]) ).
cnf(c_6301,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4743,c_4021]) ).
cnf(c_4768,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6301]) ).
cnf(c_6302,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4743,c_3994]) ).
cnf(c_4769,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6302]) ).
cnf(c_6303,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_3909,c_4768]) ).
cnf(c_6304,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_6303,c_4769]) ).
cnf(c_6305,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6304]) ).
cnf(c_6306,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6305]) ).
cnf(c_6307,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6306]) ).
cnf(c_4793,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6307]) ).
cnf(c_6308,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4793,c_3986]) ).
cnf(c_4799,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6308]) ).
cnf(c_6309,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4793,c_4743]) ).
cnf(c_6310,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6309]) ).
cnf(c_4804,plain,
( greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6310]) ).
cnf(c_6311,plain,
( ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4804,c_3909]) ).
cnf(c_4813,plain,
( ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6311]) ).
cnf(c_6312,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4793,c_4813]) ).
cnf(c_6313,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6312]) ).
cnf(c_4816,plain,
( ~ greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6313]) ).
cnf(c_6314,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4799,c_4816]) ).
cnf(c_6315,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6314]) ).
cnf(c_4868,plain,
( growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6315]) ).
cnf(c_6316,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4868,c_4106]) ).
cnf(c_4879,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6316]) ).
cnf(c_6317,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4879,c_4813]) ).
cnf(c_6318,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(sk1(sk3),equilibrium(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6317]) ).
cnf(c_4883,plain,
( greater(sk1(sk3),equilibrium(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6318]) ).
cnf(c_4888,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4883,c_31]) ).
cnf(c_6319,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4888,c_4596]) ).
cnf(c_6320,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6319]) ).
cnf(c_4893,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6320]) ).
cnf(c_6321,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4888,c_4593]) ).
cnf(c_6322,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6321]) ).
cnf(c_4896,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6322]) ).
cnf(c_6323,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4893,c_4642]) ).
cnf(c_6324,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6323]) ).
cnf(c_4913,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6324]) ).
cnf(c_6325,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4913,c_4644]) ).
cnf(c_4921,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6325]) ).
cnf(c_4924,plain,
( greater(A,zero)
| ~ greater(A,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4913,c_34]) ).
cnf(c_6326,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4896,c_4921]) ).
cnf(c_6327,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6326]) ).
cnf(c_4939,plain,
( greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6327]) ).
cnf(c_6328,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4939,c_4924]) ).
cnf(c_6329,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6328]) ).
cnf(c_4941,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6329]) ).
cnf(c_6330,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4941,c_4816]) ).
cnf(c_6331,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6330]) ).
cnf(c_4950,plain,
( growth_rate(efficient_producers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6331]) ).
cnf(c_6332,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4950,c_4592]) ).
cnf(c_4953,plain,
( greater(zero,growth_rate(first_movers,sk1(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6332]) ).
cnf(c_6333,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(zero,zero)
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4950,c_4644]) ).
cnf(c_4956,plain,
( ~ greater(zero,growth_rate(first_movers,sk1(sk3)))
| ~ greater(zero,zero)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6333]) ).
cnf(c_6334,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4950,c_4578]) ).
cnf(c_4957,plain,
( greater(zero,growth_rate(first_movers,sk4(sk1(sk3))))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6334]) ).
cnf(c_6335,plain,
( sk1(sk3) = equilibrium(sk3)
| ~ greater(zero,zero)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4956,c_4953]) ).
cnf(c_4978,plain,
( ~ greater(zero,zero)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6335]) ).
cnf(c_6336,plain,
( ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_4957,c_4576]) ).
cnf(c_4987,plain,
( ~ greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6336]) ).
cnf(c_6337,plain,
( sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(resolve,[status(thm)],[c_4628,c_4987]) ).
cnf(c_5000,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(efficient_producers,sk1(sk3)))
| growth_rate(first_movers,sk1(sk3)) = zero ),
inference(copy,[status(thm)],[c_6337]) ).
cnf(c_6338,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_4950,c_5000]) ).
cnf(c_5011,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| greater(zero,zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6338]) ).
cnf(c_6339,plain,
( sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5011,c_4978]) ).
cnf(c_5012,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| growth_rate(first_movers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6339]) ).
cnf(c_6340,plain,
( greater(zero,zero)
| sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_5012,c_4953]) ).
cnf(c_5019,plain,
( greater(zero,zero)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6340]) ).
cnf(c_6341,plain,
( sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5019,c_4978]) ).
cnf(c_5020,plain,
( growth_rate(first_movers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6341]) ).
cnf(c_6342,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_5020,c_3905]) ).
cnf(c_5023,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(growth_rate(efficient_producers,equilibrium(sk3)),zero)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6342]) ).
cnf(c_6343,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_5020,c_3897]) ).
cnf(c_5026,plain,
( greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6343]) ).
cnf(c_6344,plain,
( ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5023,c_3909]) ).
cnf(c_5038,plain,
( ~ greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6344]) ).
cnf(c_6345,plain,
( greater(zero,zero)
| greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_5020,c_5026]) ).
cnf(c_6346,plain,
( greater(zero,zero)
| greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6345]) ).
cnf(c_5046,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6346]) ).
cnf(c_6347,plain,
( sk1(sk3) = equilibrium(sk3)
| growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5046,c_4978]) ).
cnf(c_5047,plain,
( growth_rate(efficient_producers,equilibrium(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6347]) ).
cnf(c_6348,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_5047,c_3905]) ).
cnf(c_5050,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(zero,growth_rate(first_movers,equilibrium(sk3)))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6348]) ).
cnf(c_6349,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3)
| greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5050,c_5038]) ).
cnf(c_6350,plain,
( greater(sk1(sk3),equilibrium(sk3))
| greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6349]) ).
cnf(c_5072,plain,
( greater(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6350]) ).
cnf(c_5078,plain,
( greater_or_equal(sk1(sk3),equilibrium(sk3))
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5072,c_31]) ).
cnf(c_6351,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5078,c_4600]) ).
cnf(c_5079,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(first_movers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6351]) ).
cnf(c_6352,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| sk1(sk3) = equilibrium(sk3)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5079,c_4642]) ).
cnf(c_6353,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6352]) ).
cnf(c_5107,plain,
( greater(growth_rate(efficient_producers,sk1(sk3)),zero)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6353]) ).
cnf(c_6354,plain,
( sk1(sk3) = equilibrium(sk3)
| growth_rate(first_movers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5107,c_4987]) ).
cnf(c_5108,plain,
( growth_rate(first_movers,sk1(sk3)) = zero
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6354]) ).
cnf(c_6355,plain,
( greater(zero,zero)
| sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(paramod,[status(thm)],[c_5108,c_4953]) ).
cnf(c_5115,plain,
( greater(zero,zero)
| sk1(sk3) = equilibrium(sk3) ),
inference(copy,[status(thm)],[c_6355]) ).
cnf(c_6356,plain,
( sk1(sk3) = equilibrium(sk3)
| sk1(sk3) = equilibrium(sk3) ),
inference(resolve,[status(thm)],[c_5115,c_4978]) ).
cnf(c_5116,plain,
sk1(sk3) = equilibrium(sk3),
inference(copy,[status(thm)],[c_6356]) ).
cnf(c_6357,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3))))
| ~ greater_or_equal(sk4(equilibrium(sk3)),equilibrium(sk3)) ),
inference(paramod,[status(thm)],[c_5116,c_3026]) ).
cnf(c_5117,plain,
greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),growth_rate(first_movers,sk4(equilibrium(sk3)))),
inference(resolve,[status(thm)],[c_3030,c_6357]) ).
cnf(c_5122,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5117,c_3103]) ).
cnf(c_5123,plain,
( greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5117,c_3079]) ).
cnf(c_5128,plain,
( greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3))))
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5117,c_3095]) ).
cnf(c_6358,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_5123,c_3068]) ).
cnf(c_5136,plain,
( greater(zero,zero)
| growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero ),
inference(copy,[status(thm)],[c_6358]) ).
cnf(c_6359,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| ~ greater(zero,growth_rate(first_movers,sk4(equilibrium(sk3)))) ),
inference(resolve,[status(thm)],[c_3029,c_5122]) ).
cnf(c_6360,plain,
( growth_rate(first_movers,sk4(equilibrium(sk3))) = zero
| growth_rate(first_movers,sk4(equilibrium(sk3))) = zero ),
inference(resolve,[status(thm)],[c_6359,c_5128]) ).
cnf(c_5146,plain,
growth_rate(first_movers,sk4(equilibrium(sk3))) = zero,
inference(copy,[status(thm)],[c_6360]) ).
cnf(c_5151,plain,
greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero),
inference(paramod,[status(thm)],[c_5146,c_5117]) ).
cnf(c_6361,plain,
( ~ greater(zero,zero)
| ~ greater(growth_rate(efficient_producers,sk4(equilibrium(sk3))),zero) ),
inference(paramod,[status(thm)],[c_5146,c_3029]) ).
cnf(c_5152,plain,
~ greater(zero,zero),
inference(resolve,[status(thm)],[c_5151,c_6361]) ).
cnf(c_5153,plain,
growth_rate(efficient_producers,sk4(equilibrium(sk3))) = zero,
inference(resolve,[status(thm)],[c_5152,c_5136]) ).
cnf(c_6362,plain,
greater(zero,zero),
inference(paramod,[status(thm)],[c_5153,c_5151]) ).
cnf(c_5154,plain,
$false,
inference(resolve,[status(thm)],[c_5152,c_6362]) ).
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.05 % Problem : MGT029-1 : TPTP v9.3.1. Released v2.4.0.
% 0.00/0.06 % Command : prover9 -casc 300 -f /export/starexec/sandbox/benchmark/theBenchmark.p
% 0.16/0.43 % Computer : n006.cluster.edu
% 0.16/0.43 % Model : x86_64 x86_64
% 0.16/0.43 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.16/0.43 % Memory : 8046.5625MB
% 0.16/0.43 % OS : Linux 6.8.0-71-generic
% 0.16/0.43 % CPULimit : 300
% 0.16/0.43 % WCLimit : 300
% 0.16/0.43 % DateTime : Sat Sep 26 00:04:41 UTC 2026
% 0.16/0.44 % CPUTime :
% 0.16/0.44 % Prover9 (64) version 2026-6A, July 2026, CASC-J13.
% 0.16/0.44 % Process 4075045 was started by sandbox on n006,
% 0.16/0.44 % Sat Sep 26 00:04:41 2026
% 0.16/0.44 % The command was "/export/starexec/sandbox/solver/bin/prover9 -casc 300 -f /export/starexec/sandbox/benchmark/theBenchmark.p".
% 0.16/0.45
% 0.16/0.45 % From the command line: assign(max_seconds, 300).
% 34.76/4.97
% 34.76/4.97 % given #500 (A,wt=56): 628 sk2(sk3) = equilibrium(sk3) | sk2(sk3) = sk1(sk3) | sk4(sk1(sk3)) = sk1(sk3) | growth_rate(efficient_producers,sk4(sk2(sk3))) = zero | greater(growth_rate(first_movers,sk2(sk3)),zero) | greater(zero,growth_rate(first_movers,sk4(sk2(sk3)))). [para(527(a,1),534(e,1,2)),merge(d),merge(e),merge(f)].
% 34.76/4.97
% 34.76/4.97 % given #1000 (T,wt=37): 2139 sk2(sk3) = equilibrium(sk3) | sk2(sk3) = sk1(sk3) | growth_rate(first_movers,sk2(sk3)) = zero | growth_rate(first_movers,sk1(sk3)) = zero. [resolve(2131,e,2106,e),merge(e),merge(f),merge(g),merge(h)].
% 34.76/4.97
% 34.76/4.97 % given #1500 (W,wt=55): 3371 sk1(sk3) = equilibrium(sk3) | sk4(sk1(sk3)) = sk1(sk3) | sk4(equilibrium(sk3)) = equilibrium(sk3) | growth_rate(first_movers,sk4(equilibrium(sk3))) = zero | greater_or_equal(growth_rate(efficient_producers,sk4(sk1(sk3))),growth_rate(efficient_producers,sk4(equilibrium(sk3)))). [resolve(3359,e,31,a)].
% 34.76/4.97
% 34.76/4.97 % given #2000 (T,wt=21): 4577 sk1(sk3) = equilibrium(sk3) | subpopulations(first_movers,efficient_producers,sk3,sk1(sk3)). [para(4574(b,1),46(a,4))].
% 34.76/4.97
% 34.76/4.97 % SZS status Unsatisfiable for theBenchmark
% 34.76/4.97
% 34.76/4.97 % Proof 1 at 3.52 (+ 0.75) seconds.
% 34.76/4.97 % Length of proof is 705.
% 34.76/4.97 % Level of proof is 301.
% 34.76/4.97 % Maximum clause weight is 70.000.
% 34.76/4.97 % Given clauses 2188.
% 34.76/4.97
% 34.76/4.97 % SZS output start CNFRefutation for theBenchmark
% See solution above
%------------------------------------------------------------------------------