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FindProof---0.1.THM-Prf.s

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%------------------------------------------------------------------------------
% File     : FindProof---0.1
% Problem  : KLE013+1 : TPTP v9.3.1. Released v4.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : run_findproof /export/starexec/sandbox2/benchmark/theBenchmark.p 300

% Computer : n014.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 : Fri Sep 25 01:51:21 PM UTC 2026

% Result   : Theorem 103.47s 14.91s
% Output   : Proof 103.47s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :   49
%            Number of leaves      :   17
% Syntax   : Number of formulae    :  314 ( 290 unt;   0 def)
%            Number of atoms       :  372 ( 322 equ)
%            Maximal formula atoms :    8 (   1 avg)
%            Number of connectives :  102 (  44   ~;  31   |;  20   &)
%                                         (   4 <=>;   3  =>;   0  <=;   0 <~>)
%            Maximal formula depth :    8 (   2 avg)
%            Maximal term depth    :    5 (   2 avg)
%            Number of predicates  :    5 (   3 usr;   1 prp; 0-2 aty)
%            Number of functors    :   12 (  12 usr;   6 con; 0-4 aty)
%            Number of variables   :  329 (  20 sgn  81   !;   4   ?)

% Comments : 
%------------------------------------------------------------------------------
fof(f1,axiom,
    ! [C,B,A] : addition(A,addition(B,C)) = addition(addition(A,B),C),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',additive_associativity) ).

fof(f1_nnf,plain,
    ! [C,B,A] : addition(A,addition(B,C)) = addition(addition(A,B),C),
    inference(nnf_transformation,[status(thm)],[f1]) ).

fof(f1_sk,plain,
    ! [A,B,C] : addition(A,addition(B,C)) = addition(addition(A,B),C),
    inference(skolemisation,[status(esa)],[f1_nnf]) ).

cnf(c1,plain,
    addition(X2,addition(X1,X0)) = addition(addition(X2,X1),X0),
    inference(cnf_transformation,[status(esa)],[f1_sk]) ).

cnf(t80,plain,
    addition(addition(X1,X2),X3) = addition(X1,addition(X2,X3)),
    inference(equality_encoding,[status(esa)],[c1]) ).

cnf(t395,plain,
    addition(addition(X1,X2),X3) = addition(X1,addition(X2,X3)),
    inference(orient,[status(thm)],[t80]) ).

fof(f11,axiom,
    ! [A,B] :
      ( leq(A,B)
    <=> addition(A,B) = B ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',order) ).

fof(f11_nnf,plain,
    ! [A,B] :
      ( ( addition(A,B) != B
        | leq(A,B) )
      & ( addition(A,B) = B
        | ~ leq(A,B) ) ),
    inference(nnf_transformation,[status(thm)],[f11]) ).

fof(f11_sk,plain,
    ! [A,B] :
      ( ( addition(A,B) != B
        | leq(A,B) )
      & ( addition(A,B) = B
        | ~ leq(A,B) ) ),
    inference(skolemisation,[status(esa)],[f11_nnf]) ).

cnf(c11,plain,
    ( addition(X0,X1) = X1
    | ~ leq(X0,X1) ),
    inference(cnf_transformation,[status(esa)],[f11_sk]) ).

cnf(t85,plain,
    ifeq(leq(X1,X2),true,addition(X1,X2),X2) = X2,
    inference(equality_encoding,[status(esa)],[c11]) ).

cnf(t264,plain,
    ifeq(leq(X1,X2),true,addition(X1,X2),X2) = X2,
    inference(orient,[status(thm)],[t85]) ).

cnf(c12,plain,
    ( addition(X0,X1) != X1
    | leq(X0,X1) ),
    inference(cnf_transformation,[status(esa)],[f11_sk]) ).

cnf(t81,plain,
    ifeq(addition(X1,X2),X2,leq(X1,X2),true) = true,
    inference(equality_encoding,[status(esa)],[c12]) ).

cnf(t476,plain,
    ifeq(addition(X1,X2),X2,leq(X1,X2),true) = true,
    inference(orient,[status(thm)],[t81]) ).

fof(f3,axiom,
    ! [A] : addition(A,A) = A,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',additive_idempotence) ).

fof(f3_nnf,plain,
    ! [A] : addition(A,A) = A,
    inference(nnf_transformation,[status(thm)],[f3]) ).

fof(f3_sk,plain,
    ! [A] : addition(A,A) = A,
    inference(skolemisation,[status(esa)],[f3_nnf]) ).

cnf(c3,plain,
    addition(X0,X0) = X0,
    inference(cnf_transformation,[status(esa)],[f3_sk]) ).

cnf(t2,plain,
    addition(X1,X1) = X1,
    inference(equality_encoding,[status(esa)],[c3]) ).

cnf(t260,plain,
    addition(X1,X1) = X1,
    inference(orient,[status(thm)],[t2]) ).

cnf(t398,plain,
    addition(X1,addition(X1,X2)) = addition(X1,X2),
    inference(cp,[status(thm)],[t395,t260]) ).

cnf(t621,plain,
    addition(X1,addition(X1,X2)) = addition(X1,X2),
    inference(orient,[status(thm)],[t398]) ).

cnf(t632,plain,
    true = ifeq(addition(X1,X2),addition(X1,X2),leq(X1,addition(X1,X2)),true),
    inference(cp,[status(thm)],[t476,t621]) ).

cnf(t14,plain,
    ifeq(X1,X1,X2,X3) = X2,
    introduced(definition) ).

cnf(t262,plain,
    ifeq(X1,X1,X2,X3) = X2,
    inference(orient,[status(thm)],[t14]) ).

cnf(t101297,plain,
    true = leq(X1,addition(X1,X2)),
    inference(step,[status(thm)],[t632,t262]) ).

cnf(t661,plain,
    leq(X1,addition(X1,X2)) = true,
    inference(orient,[status(thm)],[t101297]) ).

fof(f0,axiom,
    ! [A,B] : addition(A,B) = addition(B,A),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',additive_commutativity) ).

fof(f0_nnf,plain,
    ! [A,B] : addition(A,B) = addition(B,A),
    inference(nnf_transformation,[status(thm)],[f0]) ).

fof(f0_sk,plain,
    ! [A,B] : addition(A,B) = addition(B,A),
    inference(skolemisation,[status(esa)],[f0_nnf]) ).

cnf(c0,plain,
    addition(X0,X1) = addition(X1,X0),
    inference(cnf_transformation,[status(esa)],[f0_sk]) ).

cnf(t13,plain,
    addition(X1,X2) = addition(X2,X1),
    inference(equality_encoding,[status(esa)],[c0]) ).

cnf(t384,plain,
    addition(X1,X2) = addition(X2,X1),
    inference(orient,[status(thm)],[t13]) ).

cnf(t667,plain,
    true = leq(X1,addition(X2,X1)),
    inference(cp,[status(thm)],[t661,t384]) ).

cnf(t674,plain,
    leq(X1,addition(X2,X1)) = true,
    inference(orient,[status(thm)],[t667]) ).

cnf(t677,plain,
    true = leq(X1,addition(X2,addition(X3,X1))),
    inference(cp,[status(thm)],[t674,t395]) ).

cnf(t1955,plain,
    leq(X1,addition(X2,addition(X3,X1))) = true,
    inference(orient,[status(thm)],[t677]) ).

cnf(t1965,plain,
    true = leq(X1,addition(addition(X2,X1),X3)),
    inference(cp,[status(thm)],[t1955,t384]) ).

cnf(t101406,plain,
    true = leq(X1,addition(X2,addition(X1,X3))),
    inference(step,[status(thm)],[t1965,t395]) ).

cnf(t2487,plain,
    leq(X1,addition(X2,addition(X1,X3))) = true,
    inference(orient,[status(thm)],[t101406]) ).

cnf(t2514,plain,
    addition(X1,addition(X2,X3)) = ifeq(true,true,addition(X2,addition(X1,addition(X2,X3))),addition(X1,addition(X2,X3))),
    inference(cp,[status(thm)],[t264,t2487]) ).

cnf(t101612,plain,
    addition(X1,addition(X2,X3)) = addition(X2,addition(X1,addition(X2,X3))),
    inference(step,[status(thm)],[t2514,t262]) ).

cnf(t630,plain,
    addition(X1,X2) = addition(X1,addition(X2,X1)),
    inference(cp,[status(thm)],[t621,t384]) ).

cnf(t720,plain,
    addition(X1,addition(X2,X1)) = addition(X1,X2),
    inference(orient,[status(thm)],[t630]) ).

cnf(t734,plain,
    addition(X1,addition(addition(X2,X1),X3)) = addition(addition(X1,X2),X3),
    inference(cp,[status(thm)],[t395,t720]) ).

cnf(t101550,plain,
    addition(X1,addition(X2,addition(X1,X3))) = addition(addition(X1,X2),X3),
    inference(step,[status(thm)],[t734,t395]) ).

cnf(t101551,plain,
    addition(X1,addition(X2,addition(X1,X3))) = addition(X1,addition(X2,X3)),
    inference(step,[status(thm)],[t101550,t395]) ).

cnf(t4643,plain,
    addition(X1,addition(X2,addition(X1,X3))) = addition(X1,addition(X2,X3)),
    inference(orient,[status(thm)],[t101551]) ).

cnf(t101613,plain,
    addition(X1,addition(X2,X3)) = addition(X2,addition(X1,X3)),
    inference(step,[status(thm)],[t101612,t4643]) ).

cnf(t6989,plain,
    addition(X1,addition(X2,X3)) = addition(X2,addition(X1,X3)),
    inference(orient,[status(thm)],[t101613]) ).

fof(f8,axiom,
    ! [A,B,C] : multiplication(addition(A,B),C) = addition(multiplication(A,C),multiplication(B,C)),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',left_distributivity) ).

fof(f8_nnf,plain,
    ! [A,B,C] : multiplication(addition(A,B),C) = addition(multiplication(A,C),multiplication(B,C)),
    inference(nnf_transformation,[status(thm)],[f8]) ).

fof(f8_sk,plain,
    ! [A,B,C] : multiplication(addition(A,B),C) = addition(multiplication(A,C),multiplication(B,C)),
    inference(skolemisation,[status(esa)],[f8_nnf]) ).

cnf(c8,plain,
    multiplication(addition(X0,X1),X2) = addition(multiplication(X0,X2),multiplication(X1,X2)),
    inference(cnf_transformation,[status(esa)],[f8_sk]) ).

cnf(t115,plain,
    addition(multiplication(X1,X2),multiplication(X3,X2)) = multiplication(addition(X1,X3),X2),
    inference(equality_encoding,[status(esa)],[c8]) ).

cnf(t316,plain,
    addition(multiplication(X1,X2),multiplication(X3,X2)) = multiplication(addition(X1,X3),X2),
    inference(orient,[status(thm)],[t115]) ).

fof(f6,axiom,
    ! [A] : multiplication(one,A) = A,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',multiplicative_left_identity) ).

fof(f6_nnf,plain,
    ! [A] : multiplication(one,A) = A,
    inference(nnf_transformation,[status(thm)],[f6]) ).

fof(f6_sk,plain,
    ! [A] : multiplication(one,A) = A,
    inference(skolemisation,[status(esa)],[f6_nnf]) ).

cnf(c6,plain,
    multiplication(one,X0) = X0,
    inference(cnf_transformation,[status(esa)],[f6_sk]) ).

cnf(t7,plain,
    multiplication(one,X1) = X1,
    inference(equality_encoding,[status(esa)],[c6]) ).

cnf(t257,plain,
    multiplication(one,X1) = X1,
    inference(orient,[status(thm)],[t7]) ).

cnf(t328,plain,
    multiplication(addition(one,X1),X2) = addition(X2,multiplication(X1,X2)),
    inference(cp,[status(thm)],[t316,t257]) ).

cnf(t889,plain,
    addition(X1,multiplication(X2,X1)) = multiplication(addition(one,X2),X1),
    inference(orient,[status(thm)],[t328]) ).

fof(f7,axiom,
    ! [A,B,C] : multiplication(A,addition(B,C)) = addition(multiplication(A,B),multiplication(A,C)),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',right_distributivity) ).

fof(f7_nnf,plain,
    ! [A,B,C] : multiplication(A,addition(B,C)) = addition(multiplication(A,B),multiplication(A,C)),
    inference(nnf_transformation,[status(thm)],[f7]) ).

fof(f7_sk,plain,
    ! [A,B,C] : multiplication(A,addition(B,C)) = addition(multiplication(A,B),multiplication(A,C)),
    inference(skolemisation,[status(esa)],[f7_nnf]) ).

cnf(c7,plain,
    multiplication(X0,addition(X1,X2)) = addition(multiplication(X0,X1),multiplication(X0,X2)),
    inference(cnf_transformation,[status(esa)],[f7_sk]) ).

cnf(t114,plain,
    addition(multiplication(X1,X2),multiplication(X1,X3)) = multiplication(X1,addition(X2,X3)),
    inference(equality_encoding,[status(esa)],[c7]) ).

cnf(t269,plain,
    addition(multiplication(X1,X2),multiplication(X1,X3)) = multiplication(X1,addition(X2,X3)),
    inference(orient,[status(thm)],[t114]) ).

fof(f13,axiom,
    ! [X0,X1] :
      ( complement(X1,X0)
    <=> ( addition(X0,X1) = one
        & multiplication(X1,X0) = zero
        & multiplication(X0,X1) = zero ) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',test_2) ).

fof(f13_nnf,plain,
    ! [X0,X1] :
      ( ( addition(X0,X1) != one
        | multiplication(X1,X0) != zero
        | multiplication(X0,X1) != zero
        | complement(X1,X0) )
      & ( ( addition(X0,X1) = one
          & multiplication(X1,X0) = zero
          & multiplication(X0,X1) = zero )
        | ~ complement(X1,X0) ) ),
    inference(nnf_transformation,[status(thm)],[f13]) ).

fof(f13_sk,plain,
    ! [X1,X0] :
      ( ( addition(X0,X1) != one
        | multiplication(X1,X0) != zero
        | multiplication(X0,X1) != zero
        | complement(X1,X0) )
      & ( ( addition(X0,X1) = one
          & multiplication(X1,X0) = zero
          & multiplication(X0,X1) = zero )
        | ~ complement(X1,X0) ) ),
    inference(skolemisation,[status(esa)],[f13_nnf]) ).

cnf(c16,plain,
    ( multiplication(X1,X0) = zero
    | ~ complement(X1,X0) ),
    inference(cnf_transformation,[status(esa)],[f13_sk]) ).

cnf(t83,plain,
    ifeq(complement(X1,X2),true,multiplication(X1,X2),zero) = zero,
    inference(equality_encoding,[status(esa)],[c16]) ).

cnf(t520,plain,
    ifeq(complement(X1,X2),true,multiplication(X1,X2),zero) = zero,
    inference(orient,[status(thm)],[t83]) ).

fof(f12,axiom,
    ! [X0] :
      ( test(X0)
    <=> ? [X1] : complement(X1,X0) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',test_1) ).

fof(f12_nnf,plain,
    ! [X0] :
      ( ( ! [X1] : ~ complement(X1,X0)
        | test(X0) )
      & ( ? [X1] : complement(X1,X0)
        | ~ test(X0) ) ),
    inference(nnf_transformation,[status(thm)],[f12]) ).

fof(f12_sk,plain,
    ! [X0,X1] :
      ( ( ~ complement(X1,X0)
        | test(X0) )
      & ( complement(sk0(X0),X0)
        | ~ test(X0) ) ),
    inference(skolemisation,[status(esa),new_symbols(skolem,[sk0])],[f12_nnf]) ).

cnf(c13,plain,
    ( complement(sk0(X0),X0)
    | ~ test(X0) ),
    inference(cnf_transformation,[status(esa)],[f12_sk]) ).

cnf(t86,plain,
    ifeq(test(X1),true,complement(sk0(X1),X1),true) = true,
    inference(equality_encoding,[status(esa)],[c13]) ).

cnf(t485,plain,
    ifeq(test(X1),true,complement(sk0(X1),X1),true) = true,
    inference(orient,[status(thm)],[t86]) ).

fof(f16,conjecture,
    ! [X0,X1] :
      ( ( test(X0)
        & test(X1) )
     => one = addition(addition(X0,X1),multiplication(c(X0),c(X1))) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',goals) ).

fof(f16_neg,negated_conjecture,
    ~ ! [X0,X1] :
        ( ( test(X0)
          & test(X1) )
       => one = addition(addition(X0,X1),multiplication(c(X0),c(X1))) ),
    inference(negated_conjecture,[status(cth)],[f16]) ).

fof(f16_nnf,plain,
    ? [X0,X1] :
      ( one != addition(addition(X0,X1),multiplication(c(X0),c(X1)))
      & test(X0)
      & test(X1) ),
    inference(nnf_transformation,[status(thm)],[f16_neg]) ).

fof(f16_sk,plain,
    ( one != addition(addition(sk1,sk2),multiplication(c(sk1),c(sk2)))
    & test(sk1)
    & test(sk2) ),
    inference(skolemisation,[status(esa),new_symbols(skolem,[sk1,sk2])],[f16_nnf]) ).

cnf(c23,plain,
    test(sk1),
    inference(cnf_transformation,[status(esa)],[f16_sk]) ).

cnf(t0,plain,
    test(sk1) = true,
    inference(equality_encoding,[status(esa)],[c23]) ).

cnf(t415,plain,
    test(sk1) = true,
    inference(orient,[status(thm)],[t0]) ).

cnf(t487,plain,
    true = ifeq(true,true,complement(sk0(sk1),sk1),true),
    inference(cp,[status(thm)],[t485,t415]) ).

cnf(t101266,plain,
    true = complement(sk0(sk1),sk1),
    inference(step,[status(thm)],[t487,t262]) ).

cnf(t558,plain,
    complement(sk0(sk1),sk1) = true,
    inference(orient,[status(thm)],[t101266]) ).

cnf(t559,plain,
    zero = ifeq(true,true,multiplication(sk0(sk1),sk1),zero),
    inference(cp,[status(thm)],[t520,t558]) ).

cnf(t101286,plain,
    zero = multiplication(sk0(sk1),sk1),
    inference(step,[status(thm)],[t559,t262]) ).

cnf(t599,plain,
    multiplication(sk0(sk1),sk1) = zero,
    inference(orient,[status(thm)],[t101286]) ).

cnf(t603,plain,
    multiplication(sk0(sk1),addition(sk1,X1)) = addition(zero,multiplication(sk0(sk1),X1)),
    inference(cp,[status(thm)],[t269,t599]) ).

fof(f2,axiom,
    ! [A] : addition(A,zero) = A,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',additive_identity) ).

fof(f2_nnf,plain,
    ! [A] : addition(A,zero) = A,
    inference(nnf_transformation,[status(thm)],[f2]) ).

fof(f2_sk,plain,
    ! [A] : addition(A,zero) = A,
    inference(skolemisation,[status(esa)],[f2_nnf]) ).

cnf(c2,plain,
    addition(X0,zero) = X0,
    inference(cnf_transformation,[status(esa)],[f2_sk]) ).

cnf(t3,plain,
    addition(X1,zero) = X1,
    inference(equality_encoding,[status(esa)],[c2]) ).

cnf(t261,plain,
    addition(X1,zero) = X1,
    inference(orient,[status(thm)],[t3]) ).

cnf(t385,plain,
    addition(zero,X1) = X1,
    inference(cp,[status(thm)],[t384,t261]) ).

cnf(t532,plain,
    addition(zero,X1) = X1,
    inference(orient,[status(thm)],[t385]) ).

cnf(t101431,plain,
    multiplication(sk0(sk1),addition(sk1,X1)) = multiplication(sk0(sk1),X1),
    inference(step,[status(thm)],[t603,t532]) ).

cnf(t2825,plain,
    multiplication(sk0(sk1),addition(sk1,X1)) = multiplication(sk0(sk1),X1),
    inference(orient,[status(thm)],[t101431]) ).

fof(f14,axiom,
    ! [X0,X1] :
      ( test(X0)
     => ( c(X0) = X1
      <=> complement(X0,X1) ) ),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',test_3) ).

fof(f14_nnf,plain,
    ! [X0,X1] :
      ( ( ( ~ complement(X0,X1)
          | c(X0) = X1 )
        & ( complement(X0,X1)
          | c(X0) != X1 ) )
      | ~ test(X0) ),
    inference(nnf_transformation,[status(thm)],[f14]) ).

fof(f14_sk,plain,
    ! [X0,X1] :
      ( ( ( ~ complement(X0,X1)
          | c(X0) = X1 )
        & ( complement(X0,X1)
          | c(X0) != X1 ) )
      | ~ test(X0) ),
    inference(skolemisation,[status(esa)],[f14_nnf]) ).

cnf(c19,plain,
    ( complement(X0,X1)
    | c(X0) != X1
    | ~ test(X0) ),
    inference(cnf_transformation,[status(esa)],[f14_sk]) ).

cnf(hi19,axiom,
    ifeq(test(X0),true,ifeq(c(X0),X1,complement(X0,X1),true),true) = true,
    inference(equality_encoding,[status(esa)],[c19]) ).

cnf(hi23,negated_conjecture,
    test(sk1) = true,
    inference(equality_encoding,[status(esa)],[c23]) ).

fof(f5,axiom,
    ! [A] : multiplication(A,one) = A,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',multiplicative_right_identity) ).

fof(f5_nnf,plain,
    ! [A] : multiplication(A,one) = A,
    inference(nnf_transformation,[status(thm)],[f5]) ).

fof(f5_sk,plain,
    ! [A] : multiplication(A,one) = A,
    inference(skolemisation,[status(esa)],[f5_nnf]) ).

cnf(c5,plain,
    multiplication(X0,one) = X0,
    inference(cnf_transformation,[status(esa)],[f5_sk]) ).

cnf(hi5,axiom,
    multiplication(X0,one) = X0,
    inference(equality_encoding,[status(esa)],[c5]) ).

cnf(h8,plain,
    complement(sk1,multiplication(c(sk1),one)) = true,
    inference(hyper_resolution,[status(thm)],[hi19,hi23,hi5]) ).

cnf(c17,plain,
    ( addition(X0,X1) = one
    | ~ complement(X1,X0) ),
    inference(cnf_transformation,[status(esa)],[f13_sk]) ).

cnf(hi17,axiom,
    ifeq(complement(X0,X1),true,addition(X1,X0),one) = one,
    inference(equality_encoding,[status(esa)],[c17]) ).

cnf(t25,plain,
    addition(multiplication(c(sk1),one),sk1) = one,
    inference(hyper_resolution,[status(thm)],[hi17,h8]) ).

cnf(t5,plain,
    multiplication(X1,one) = X1,
    inference(equality_encoding,[status(esa)],[c5]) ).

cnf(t256,plain,
    multiplication(X1,one) = X1,
    inference(orient,[status(thm)],[t5]) ).

cnf(t101219,plain,
    addition(c(sk1),sk1) = one,
    inference(step,[status(thm)],[t25,t256]) ).

cnf(t356,plain,
    addition(c(sk1),sk1) = one,
    inference(orient,[status(thm)],[t101219]) ).

cnf(t391,plain,
    addition(c(sk1),sk1) = one,
    inference(rw,[status(thm)],[t356]) ).

cnf(t101264,plain,
    addition(sk1,c(sk1)) = one,
    inference(step,[status(thm)],[t391,t384]) ).

cnf(t545,plain,
    addition(sk1,c(sk1)) = one,
    inference(orient,[status(thm)],[t101264]) ).

cnf(t2831,plain,
    multiplication(sk0(sk1),c(sk1)) = multiplication(sk0(sk1),one),
    inference(cp,[status(thm)],[t2825,t545]) ).

cnf(t101432,plain,
    multiplication(sk0(sk1),c(sk1)) = sk0(sk1),
    inference(step,[status(thm)],[t2831,t256]) ).

cnf(t2846,plain,
    multiplication(sk0(sk1),c(sk1)) = sk0(sk1),
    inference(orient,[status(thm)],[t101432]) ).

cnf(t2847,plain,
    multiplication(addition(one,sk0(sk1)),c(sk1)) = addition(c(sk1),sk0(sk1)),
    inference(cp,[status(thm)],[t889,t2846]) ).

cnf(t82,plain,
    ifeq(complement(X1,X2),true,addition(X2,X1),one) = one,
    inference(equality_encoding,[status(esa)],[c17]) ).

cnf(t368,plain,
    ifeq(complement(X1,X2),true,addition(X2,X1),one) = one,
    inference(orient,[status(thm)],[t82]) ).

cnf(t561,plain,
    one = ifeq(true,true,addition(sk1,sk0(sk1)),one),
    inference(cp,[status(thm)],[t368,t558]) ).

cnf(t101288,plain,
    one = addition(sk1,sk0(sk1)),
    inference(step,[status(thm)],[t561,t262]) ).

cnf(t617,plain,
    addition(sk1,sk0(sk1)) = one,
    inference(orient,[status(thm)],[t101288]) ).

cnf(t675,plain,
    true = leq(sk0(sk1),one),
    inference(cp,[status(thm)],[t674,t617]) ).

cnf(t684,plain,
    leq(sk0(sk1),one) = true,
    inference(orient,[status(thm)],[t675]) ).

cnf(t685,plain,
    one = ifeq(true,true,addition(sk0(sk1),one),one),
    inference(cp,[status(thm)],[t264,t684]) ).

cnf(t101298,plain,
    one = addition(sk0(sk1),one),
    inference(step,[status(thm)],[t685,t262]) ).

cnf(t101299,plain,
    one = addition(one,sk0(sk1)),
    inference(step,[status(thm)],[t101298,t384]) ).

cnf(t690,plain,
    addition(one,sk0(sk1)) = one,
    inference(orient,[status(thm)],[t101299]) ).

cnf(t101434,plain,
    multiplication(one,c(sk1)) = addition(c(sk1),sk0(sk1)),
    inference(step,[status(thm)],[t2847,t690]) ).

cnf(t101435,plain,
    c(sk1) = addition(c(sk1),sk0(sk1)),
    inference(step,[status(thm)],[t101434,t257]) ).

cnf(t101436,plain,
    c(sk1) = addition(sk0(sk1),c(sk1)),
    inference(step,[status(thm)],[t101435,t384]) ).

cnf(c15,plain,
    ( multiplication(X0,X1) = zero
    | ~ complement(X1,X0) ),
    inference(cnf_transformation,[status(esa)],[f13_sk]) ).

cnf(hi15,axiom,
    ifeq(complement(X0,X1),true,multiplication(X1,X0),zero) = zero,
    inference(equality_encoding,[status(esa)],[c15]) ).

cnf(t37,plain,
    multiplication(multiplication(c(sk1),one),sk1) = zero,
    inference(hyper_resolution,[status(thm)],[hi15,h8]) ).

fof(f4,axiom,
    ! [A,B,C] : multiplication(A,multiplication(B,C)) = multiplication(multiplication(A,B),C),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',multiplicative_associativity) ).

fof(f4_nnf,plain,
    ! [A,B,C] : multiplication(A,multiplication(B,C)) = multiplication(multiplication(A,B),C),
    inference(nnf_transformation,[status(thm)],[f4]) ).

fof(f4_sk,plain,
    ! [A,B,C] : multiplication(A,multiplication(B,C)) = multiplication(multiplication(A,B),C),
    inference(skolemisation,[status(esa)],[f4_nnf]) ).

cnf(c4,plain,
    multiplication(X0,multiplication(X1,X2)) = multiplication(multiplication(X0,X1),X2),
    inference(cnf_transformation,[status(esa)],[f4_sk]) ).

cnf(t87,plain,
    multiplication(multiplication(X1,X2),X3) = multiplication(X1,multiplication(X2,X3)),
    inference(equality_encoding,[status(esa)],[c4]) ).

cnf(t268,plain,
    multiplication(multiplication(X1,X2),X3) = multiplication(X1,multiplication(X2,X3)),
    inference(orient,[status(thm)],[t87]) ).

cnf(t101189,plain,
    multiplication(c(sk1),multiplication(one,sk1)) = zero,
    inference(step,[status(thm)],[t37,t268]) ).

cnf(t101190,plain,
    multiplication(c(sk1),sk1) = zero,
    inference(step,[status(thm)],[t101189,t257]) ).

cnf(t276,plain,
    multiplication(c(sk1),sk1) = zero,
    inference(orient,[status(thm)],[t101190]) ).

cnf(t277,plain,
    multiplication(c(sk1),addition(sk1,X1)) = addition(zero,multiplication(c(sk1),X1)),
    inference(cp,[status(thm)],[t269,t276]) ).

cnf(t101374,plain,
    multiplication(c(sk1),addition(sk1,X1)) = multiplication(c(sk1),X1),
    inference(step,[status(thm)],[t277,t532]) ).

cnf(t2013,plain,
    multiplication(c(sk1),addition(sk1,X1)) = multiplication(c(sk1),X1),
    inference(orient,[status(thm)],[t101374]) ).

cnf(t2020,plain,
    multiplication(c(sk1),sk0(sk1)) = multiplication(c(sk1),one),
    inference(cp,[status(thm)],[t2013,t617]) ).

cnf(t101376,plain,
    multiplication(c(sk1),sk0(sk1)) = c(sk1),
    inference(step,[status(thm)],[t2020,t256]) ).

cnf(t2047,plain,
    multiplication(c(sk1),sk0(sk1)) = c(sk1),
    inference(orient,[status(thm)],[t101376]) ).

cnf(t2048,plain,
    multiplication(addition(one,c(sk1)),sk0(sk1)) = addition(sk0(sk1),c(sk1)),
    inference(cp,[status(thm)],[t889,t2047]) ).

cnf(hi28,axiom,
    or(X0,false) = X0,
    introduced(definition) ).

cnf(h15,plain,
    complement(sk1,or(c(sk1),false)) = true,
    inference(hyper_resolution,[status(thm)],[hi19,hi23,hi28]) ).

cnf(c14,plain,
    ( ~ complement(X1,X0)
    | test(X0) ),
    inference(cnf_transformation,[status(esa)],[f12_sk]) ).

cnf(hi14,axiom,
    ifeq(complement(X0,X1),true,test(X1),true) = true,
    inference(equality_encoding,[status(esa)],[c14]) ).

cnf(h89,plain,
    test(or(c(sk1),false)) = true,
    inference(hyper_resolution,[status(thm)],[hi14,h15]) ).

cnf(hi13,axiom,
    ifeq(test(X0),true,complement(sk0(X0),X0),true) = true,
    inference(equality_encoding,[status(esa)],[c13]) ).

cnf(h206,plain,
    complement(sk0(or(c(sk1),false)),or(c(sk1),false)) = true,
    inference(hyper_resolution,[status(thm)],[hi13,h89]) ).

cnf(t94,plain,
    addition(or(c(sk1),false),sk0(or(c(sk1),false))) = one,
    inference(hyper_resolution,[status(thm)],[hi17,h206]) ).

cnf(t9,plain,
    or(X1,false) = X1,
    introduced(definition) ).

cnf(t258,plain,
    or(X1,false) = X1,
    inference(orient,[status(thm)],[t9]) ).

cnf(t101224,plain,
    addition(c(sk1),sk0(or(c(sk1),false))) = one,
    inference(step,[status(thm)],[t94,t258]) ).

cnf(t101225,plain,
    addition(c(sk1),sk0(c(sk1))) = one,
    inference(step,[status(thm)],[t101224,t258]) ).

cnf(t362,plain,
    addition(c(sk1),sk0(c(sk1))) = one,
    inference(orient,[status(thm)],[t101225]) ).

cnf(t628,plain,
    addition(c(sk1),sk0(c(sk1))) = addition(c(sk1),one),
    inference(cp,[status(thm)],[t621,t362]) ).

cnf(t101293,plain,
    one = addition(c(sk1),one),
    inference(step,[status(thm)],[t628,t362]) ).

cnf(t101294,plain,
    one = addition(one,c(sk1)),
    inference(step,[status(thm)],[t101293,t384]) ).

cnf(t649,plain,
    addition(one,c(sk1)) = one,
    inference(orient,[status(thm)],[t101294]) ).

cnf(t101377,plain,
    multiplication(one,sk0(sk1)) = addition(sk0(sk1),c(sk1)),
    inference(step,[status(thm)],[t2048,t649]) ).

cnf(t101378,plain,
    sk0(sk1) = addition(sk0(sk1),c(sk1)),
    inference(step,[status(thm)],[t101377,t257]) ).

cnf(t2061,plain,
    addition(sk0(sk1),c(sk1)) = sk0(sk1),
    inference(orient,[status(thm)],[t101378]) ).

cnf(t101437,plain,
    c(sk1) = sk0(sk1),
    inference(step,[status(thm)],[t101436,t2061]) ).

cnf(t2873,plain,
    c(sk1) = sk0(sk1),
    inference(orient,[status(thm)],[t101437]) ).

cnf(c22,plain,
    test(sk2),
    inference(cnf_transformation,[status(esa)],[f16_sk]) ).

cnf(hi22,negated_conjecture,
    test(sk2) = true,
    inference(equality_encoding,[status(esa)],[c22]) ).

cnf(h9,plain,
    complement(sk2,multiplication(c(sk2),one)) = true,
    inference(hyper_resolution,[status(thm)],[hi19,hi22,hi5]) ).

cnf(t38,plain,
    multiplication(multiplication(c(sk2),one),sk2) = zero,
    inference(hyper_resolution,[status(thm)],[hi15,h9]) ).

cnf(t101194,plain,
    multiplication(c(sk2),multiplication(one,sk2)) = zero,
    inference(step,[status(thm)],[t38,t268]) ).

cnf(t101195,plain,
    multiplication(c(sk2),sk2) = zero,
    inference(step,[status(thm)],[t101194,t257]) ).

cnf(t284,plain,
    multiplication(c(sk2),sk2) = zero,
    inference(orient,[status(thm)],[t101195]) ).

cnf(t285,plain,
    multiplication(c(sk2),addition(sk2,X1)) = addition(zero,multiplication(c(sk2),X1)),
    inference(cp,[status(thm)],[t269,t284]) ).

cnf(t101465,plain,
    multiplication(c(sk2),addition(sk2,X1)) = multiplication(c(sk2),X1),
    inference(step,[status(thm)],[t285,t532]) ).

cnf(t2939,plain,
    multiplication(c(sk2),addition(sk2,X1)) = multiplication(c(sk2),X1),
    inference(orient,[status(thm)],[t101465]) ).

cnf(t1,plain,
    test(sk2) = true,
    inference(equality_encoding,[status(esa)],[c22]) ).

cnf(t417,plain,
    test(sk2) = true,
    inference(orient,[status(thm)],[t1]) ).

cnf(t486,plain,
    true = ifeq(true,true,complement(sk0(sk2),sk2),true),
    inference(cp,[status(thm)],[t485,t417]) ).

cnf(t101265,plain,
    true = complement(sk0(sk2),sk2),
    inference(step,[status(thm)],[t486,t262]) ).

cnf(t551,plain,
    complement(sk0(sk2),sk2) = true,
    inference(orient,[status(thm)],[t101265]) ).

cnf(t554,plain,
    one = ifeq(true,true,addition(sk2,sk0(sk2)),one),
    inference(cp,[status(thm)],[t368,t551]) ).

cnf(t101285,plain,
    one = addition(sk2,sk0(sk2)),
    inference(step,[status(thm)],[t554,t262]) ).

cnf(t595,plain,
    addition(sk2,sk0(sk2)) = one,
    inference(orient,[status(thm)],[t101285]) ).

cnf(t2946,plain,
    multiplication(c(sk2),sk0(sk2)) = multiplication(c(sk2),one),
    inference(cp,[status(thm)],[t2939,t595]) ).

cnf(t84,plain,
    ifeq(complement(X1,X2),true,multiplication(X2,X1),zero) = zero,
    inference(equality_encoding,[status(esa)],[c15]) ).

cnf(t508,plain,
    ifeq(complement(X1,X2),true,multiplication(X2,X1),zero) = zero,
    inference(orient,[status(thm)],[t84]) ).

cnf(t553,plain,
    zero = ifeq(true,true,multiplication(sk2,sk0(sk2)),zero),
    inference(cp,[status(thm)],[t508,t551]) ).

cnf(t101284,plain,
    zero = multiplication(sk2,sk0(sk2)),
    inference(step,[status(thm)],[t553,t262]) ).

cnf(t586,plain,
    multiplication(sk2,sk0(sk2)) = zero,
    inference(orient,[status(thm)],[t101284]) ).

cnf(t588,plain,
    multiplication(addition(sk2,X1),sk0(sk2)) = addition(zero,multiplication(X1,sk0(sk2))),
    inference(cp,[status(thm)],[t316,t586]) ).

cnf(t101428,plain,
    multiplication(addition(sk2,X1),sk0(sk2)) = multiplication(X1,sk0(sk2)),
    inference(step,[status(thm)],[t588,t532]) ).

cnf(t2775,plain,
    multiplication(addition(sk2,X1),sk0(sk2)) = multiplication(X1,sk0(sk2)),
    inference(orient,[status(thm)],[t101428]) ).

cnf(t26,plain,
    addition(multiplication(c(sk2),one),sk2) = one,
    inference(hyper_resolution,[status(thm)],[hi17,h9]) ).

cnf(t101220,plain,
    addition(c(sk2),sk2) = one,
    inference(step,[status(thm)],[t26,t256]) ).

cnf(t358,plain,
    addition(c(sk2),sk2) = one,
    inference(orient,[status(thm)],[t101220]) ).

cnf(t390,plain,
    addition(c(sk2),sk2) = one,
    inference(rw,[status(thm)],[t358]) ).

cnf(t101263,plain,
    addition(sk2,c(sk2)) = one,
    inference(step,[status(thm)],[t390,t384]) ).

cnf(t539,plain,
    addition(sk2,c(sk2)) = one,
    inference(orient,[status(thm)],[t101263]) ).

cnf(t2781,plain,
    multiplication(c(sk2),sk0(sk2)) = multiplication(one,sk0(sk2)),
    inference(cp,[status(thm)],[t2775,t539]) ).

cnf(t101429,plain,
    multiplication(c(sk2),sk0(sk2)) = sk0(sk2),
    inference(step,[status(thm)],[t2781,t257]) ).

cnf(t2796,plain,
    multiplication(c(sk2),sk0(sk2)) = sk0(sk2),
    inference(orient,[status(thm)],[t101429]) ).

cnf(t101466,plain,
    sk0(sk2) = multiplication(c(sk2),one),
    inference(step,[status(thm)],[t2946,t2796]) ).

cnf(t101467,plain,
    sk0(sk2) = c(sk2),
    inference(step,[status(thm)],[t101466,t256]) ).

cnf(t2958,plain,
    c(sk2) = sk0(sk2),
    inference(orient,[status(thm)],[t101467]) ).

cnf(t402,plain,
    addition(multiplication(X1,X2),addition(multiplication(X1,X3),Y3)) = addition(multiplication(X1,addition(X2,X3)),Y3),
    inference(cp,[status(thm)],[t395,t269]) ).

cnf(t12389,plain,
    addition(multiplication(X1,X2),addition(multiplication(X1,X3),Y3)) = addition(multiplication(X1,addition(X2,X3)),Y3),
    inference(orient,[status(thm)],[t402]) ).

cnf(t560,plain,
    zero = ifeq(true,true,multiplication(sk1,sk0(sk1)),zero),
    inference(cp,[status(thm)],[t508,t558]) ).

cnf(t101287,plain,
    zero = multiplication(sk1,sk0(sk1)),
    inference(step,[status(thm)],[t560,t262]) ).

cnf(t608,plain,
    multiplication(sk1,sk0(sk1)) = zero,
    inference(orient,[status(thm)],[t101287]) ).

cnf(t612,plain,
    multiplication(sk1,addition(sk0(sk1),X1)) = addition(zero,multiplication(sk1,X1)),
    inference(cp,[status(thm)],[t269,t608]) ).

cnf(t101346,plain,
    multiplication(sk1,addition(sk0(sk1),X1)) = multiplication(sk1,X1),
    inference(step,[status(thm)],[t612,t532]) ).

cnf(t1553,plain,
    multiplication(sk1,addition(sk0(sk1),X1)) = multiplication(sk1,X1),
    inference(orient,[status(thm)],[t101346]) ).

cnf(t620,plain,
    addition(sk1,addition(sk0(sk1),X1)) = addition(one,X1),
    inference(cp,[status(thm)],[t395,t617]) ).

cnf(t1585,plain,
    addition(sk1,addition(sk0(sk1),X1)) = addition(one,X1),
    inference(orient,[status(thm)],[t620]) ).

cnf(t1594,plain,
    addition(addition(sk0(sk1),X1),sk1) = addition(addition(sk0(sk1),X1),addition(one,X1)),
    inference(cp,[status(thm)],[t720,t1585]) ).

cnf(t101537,plain,
    addition(sk0(sk1),addition(X1,sk1)) = addition(addition(sk0(sk1),X1),addition(one,X1)),
    inference(step,[status(thm)],[t1594,t395]) ).

cnf(t101538,plain,
    addition(sk0(sk1),addition(X1,sk1)) = addition(sk0(sk1),addition(X1,addition(one,X1))),
    inference(step,[status(thm)],[t101537,t395]) ).

cnf(t101539,plain,
    addition(sk0(sk1),addition(X1,sk1)) = addition(sk0(sk1),addition(X1,one)),
    inference(step,[status(thm)],[t101538,t720]) ).

cnf(t1983,plain,
    true = leq(sk0(sk1),addition(X1,one)),
    inference(cp,[status(thm)],[t1955,t690]) ).

cnf(t2085,plain,
    leq(sk0(sk1),addition(X1,one)) = true,
    inference(orient,[status(thm)],[t1983]) ).

cnf(t2087,plain,
    addition(X1,one) = ifeq(true,true,addition(sk0(sk1),addition(X1,one)),addition(X1,one)),
    inference(cp,[status(thm)],[t264,t2085]) ).

cnf(t101383,plain,
    addition(X1,one) = addition(sk0(sk1),addition(X1,one)),
    inference(step,[status(thm)],[t2087,t262]) ).

cnf(t2157,plain,
    addition(sk0(sk1),addition(X1,one)) = addition(X1,one),
    inference(orient,[status(thm)],[t101383]) ).

cnf(t101540,plain,
    addition(sk0(sk1),addition(X1,sk1)) = addition(X1,one),
    inference(step,[status(thm)],[t101539,t2157]) ).

cnf(t4100,plain,
    addition(sk0(sk1),addition(X1,sk1)) = addition(X1,one),
    inference(orient,[status(thm)],[t101540]) ).

cnf(t4112,plain,
    multiplication(sk1,addition(X1,sk1)) = multiplication(sk1,addition(X1,one)),
    inference(cp,[status(thm)],[t1553,t4100]) ).

cnf(t4116,plain,
    multiplication(sk1,addition(X1,one)) = multiplication(sk1,addition(X1,sk1)),
    inference(orient,[status(thm)],[t4112]) ).

cnf(t625,plain,
    addition(sk2,c(sk2)) = addition(sk2,one),
    inference(cp,[status(thm)],[t621,t539]) ).

cnf(t101290,plain,
    one = addition(sk2,one),
    inference(step,[status(thm)],[t625,t539]) ).

cnf(t641,plain,
    addition(sk2,one) = one,
    inference(orient,[status(thm)],[t101290]) ).

cnf(t4117,plain,
    multiplication(sk1,addition(sk2,sk1)) = multiplication(sk1,one),
    inference(cp,[status(thm)],[t4116,t641]) ).

cnf(t101541,plain,
    multiplication(sk1,addition(sk2,sk1)) = sk1,
    inference(step,[status(thm)],[t4117,t256]) ).

cnf(t4136,plain,
    multiplication(sk1,addition(sk2,sk1)) = sk1,
    inference(orient,[status(thm)],[t101541]) ).

cnf(t12488,plain,
    addition(multiplication(sk1,addition(addition(sk2,sk1),X1)),X2) = addition(sk1,addition(multiplication(sk1,X1),X2)),
    inference(cp,[status(thm)],[t12389,t4136]) ).

cnf(t102235,plain,
    addition(multiplication(sk1,addition(sk2,addition(sk1,X1))),X2) = addition(sk1,addition(multiplication(sk1,X1),X2)),
    inference(step,[status(thm)],[t12488,t395]) ).

cnf(t4143,plain,
    multiplication(sk1,addition(addition(sk2,sk1),X1)) = addition(sk1,multiplication(sk1,X1)),
    inference(cp,[status(thm)],[t269,t4136]) ).

cnf(t101650,plain,
    multiplication(sk1,addition(sk2,addition(sk1,X1))) = addition(sk1,multiplication(sk1,X1)),
    inference(step,[status(thm)],[t4143,t395]) ).

cnf(t270,plain,
    multiplication(X1,addition(one,X2)) = addition(X1,multiplication(X1,X2)),
    inference(cp,[status(thm)],[t269,t256]) ).

cnf(t868,plain,
    addition(X1,multiplication(X1,X2)) = multiplication(X1,addition(one,X2)),
    inference(orient,[status(thm)],[t270]) ).

cnf(t101651,plain,
    multiplication(sk1,addition(sk2,addition(sk1,X1))) = multiplication(sk1,addition(one,X1)),
    inference(step,[status(thm)],[t101650,t868]) ).

cnf(hi16,axiom,
    ifeq(complement(X0,X1),true,multiplication(X0,X1),zero) = zero,
    inference(equality_encoding,[status(esa)],[c16]) ).

cnf(t41,plain,
    multiplication(sk1,multiplication(c(sk1),one)) = zero,
    inference(hyper_resolution,[status(thm)],[hi16,h8]) ).

cnf(t101207,plain,
    multiplication(sk1,c(sk1)) = zero,
    inference(step,[status(thm)],[t41,t256]) ).

cnf(t300,plain,
    multiplication(sk1,c(sk1)) = zero,
    inference(orient,[status(thm)],[t101207]) ).

cnf(t302,plain,
    multiplication(sk1,addition(X1,c(sk1))) = addition(multiplication(sk1,X1),zero),
    inference(cp,[status(thm)],[t269,t300]) ).

cnf(t101320,plain,
    multiplication(sk1,addition(X1,c(sk1))) = multiplication(sk1,X1),
    inference(step,[status(thm)],[t302,t261]) ).

cnf(t959,plain,
    multiplication(sk1,addition(X1,c(sk1))) = multiplication(sk1,X1),
    inference(orient,[status(thm)],[t101320]) ).

cnf(t960,plain,
    multiplication(sk1,sk1) = multiplication(sk1,one),
    inference(cp,[status(thm)],[t959,t545]) ).

cnf(t101321,plain,
    multiplication(sk1,sk1) = sk1,
    inference(step,[status(thm)],[t960,t256]) ).

cnf(t974,plain,
    multiplication(sk1,sk1) = sk1,
    inference(orient,[status(thm)],[t101321]) ).

cnf(t981,plain,
    multiplication(sk1,addition(sk1,X1)) = addition(sk1,multiplication(sk1,X1)),
    inference(cp,[status(thm)],[t269,t974]) ).

cnf(t101325,plain,
    multiplication(sk1,addition(sk1,X1)) = multiplication(sk1,addition(one,X1)),
    inference(step,[status(thm)],[t981,t868]) ).

cnf(t1038,plain,
    multiplication(sk1,addition(one,X1)) = multiplication(sk1,addition(sk1,X1)),
    inference(orient,[status(thm)],[t101325]) ).

cnf(t101652,plain,
    multiplication(sk1,addition(sk2,addition(sk1,X1))) = multiplication(sk1,addition(sk1,X1)),
    inference(step,[status(thm)],[t101651,t1038]) ).

cnf(t7895,plain,
    multiplication(sk1,addition(sk2,addition(sk1,X1))) = multiplication(sk1,addition(sk1,X1)),
    inference(orient,[status(thm)],[t101652]) ).

cnf(t102236,plain,
    addition(multiplication(sk1,addition(sk1,X1)),X2) = addition(sk1,addition(multiplication(sk1,X1),X2)),
    inference(step,[status(thm)],[t102235,t7895]) ).

cnf(t44380,plain,
    addition(multiplication(sk1,addition(sk1,X1)),X2) = addition(sk1,addition(multiplication(sk1,X1),X2)),
    inference(orient,[status(thm)],[t102236]) ).

cnf(t676,plain,
    true = leq(sk0(sk2),one),
    inference(cp,[status(thm)],[t674,t595]) ).

cnf(t687,plain,
    leq(sk0(sk2),one) = true,
    inference(orient,[status(thm)],[t676]) ).

cnf(t688,plain,
    one = ifeq(true,true,addition(sk0(sk2),one),one),
    inference(cp,[status(thm)],[t264,t687]) ).

cnf(t101300,plain,
    one = addition(sk0(sk2),one),
    inference(step,[status(thm)],[t688,t262]) ).

cnf(t101301,plain,
    one = addition(one,sk0(sk2)),
    inference(step,[status(thm)],[t101300,t384]) ).

cnf(t696,plain,
    addition(one,sk0(sk2)) = one,
    inference(orient,[status(thm)],[t101301]) ).

cnf(t1043,plain,
    multiplication(sk1,addition(sk1,sk0(sk2))) = multiplication(sk1,one),
    inference(cp,[status(thm)],[t1038,t696]) ).

cnf(t101326,plain,
    multiplication(sk1,addition(sk1,sk0(sk2))) = sk1,
    inference(step,[status(thm)],[t1043,t256]) ).

cnf(t1055,plain,
    multiplication(sk1,addition(sk1,sk0(sk2))) = sk1,
    inference(orient,[status(thm)],[t101326]) ).

cnf(t44406,plain,
    addition(sk1,addition(multiplication(sk1,sk0(sk2)),X1)) = addition(sk1,X1),
    inference(cp,[status(thm)],[t44380,t1055]) ).

cnf(t44727,plain,
    addition(sk1,addition(multiplication(sk1,sk0(sk2)),X1)) = addition(sk1,X1),
    inference(orient,[status(thm)],[t44406]) ).

cnf(t44734,plain,
    addition(sk1,multiplication(X1,sk0(sk2))) = addition(sk1,multiplication(addition(sk1,X1),sk0(sk2))),
    inference(cp,[status(thm)],[t44727,t316]) ).

cnf(t100949,plain,
    addition(sk1,multiplication(addition(sk1,X1),sk0(sk2))) = addition(sk1,multiplication(X1,sk0(sk2))),
    inference(orient,[status(thm)],[t44734]) ).

cnf(t100965,plain,
    addition(sk1,multiplication(sk0(sk1),sk0(sk2))) = addition(sk1,multiplication(one,sk0(sk2))),
    inference(cp,[status(thm)],[t100949,t617]) ).

cnf(t102744,plain,
    addition(sk1,multiplication(sk0(sk1),sk0(sk2))) = addition(sk1,sk0(sk2)),
    inference(step,[status(thm)],[t100965,t257]) ).

cnf(t101098,plain,
    addition(sk1,multiplication(sk0(sk1),sk0(sk2))) = addition(sk1,sk0(sk2)),
    inference(orient,[status(thm)],[t102744]) ).

cnf(t598,plain,
    addition(sk2,addition(sk0(sk2),X1)) = addition(one,X1),
    inference(cp,[status(thm)],[t395,t595]) ).

cnf(t1327,plain,
    addition(sk2,addition(sk0(sk2),X1)) = addition(one,X1),
    inference(orient,[status(thm)],[t598]) ).

cnf(t1333,plain,
    addition(one,X1) = addition(sk2,addition(X1,sk0(sk2))),
    inference(cp,[status(thm)],[t1327,t384]) ).

cnf(t1860,plain,
    addition(sk2,addition(X1,sk0(sk2))) = addition(one,X1),
    inference(orient,[status(thm)],[t1333]) ).

cnf(t623,plain,
    addition(sk1,c(sk1)) = addition(sk1,one),
    inference(cp,[status(thm)],[t621,t545]) ).

cnf(t101289,plain,
    one = addition(sk1,one),
    inference(step,[status(thm)],[t623,t545]) ).

cnf(t635,plain,
    addition(sk1,one) = one,
    inference(orient,[status(thm)],[t101289]) ).

cnf(c24,plain,
    one != addition(addition(sk1,sk2),multiplication(c(sk1),c(sk2))),
    inference(cnf_transformation,[status(esa)],[f16_sk]) ).

cnf(goal_0,negated_conjecture,
    addition(addition(sk1,sk2),multiplication(c(sk1),c(sk2))) != one,
    inference(equality_encoding,[status(esa)],[c24]) ).

cnf(g0_0,plain,
    addition(sk1,addition(sk2,multiplication(c(sk1),c(sk2)))) != one,
    inference(rw,[status(thm)],[goal_0,t395]) ).

cnf(g0_1,plain,
    addition(sk2,addition(sk1,multiplication(c(sk1),c(sk2)))) != one,
    inference(rw,[status(thm)],[g0_0,t6989]) ).

cnf(g0_2,plain,
    addition(sk2,addition(sk1,multiplication(sk0(sk1),c(sk2)))) != one,
    inference(rw,[status(thm)],[g0_1,t2873]) ).

cnf(g0_3,plain,
    addition(sk2,addition(sk1,multiplication(sk0(sk1),sk0(sk2)))) != one,
    inference(rw,[status(thm)],[g0_2,t2958]) ).

cnf(g0_4,plain,
    addition(sk2,addition(sk1,sk0(sk2))) != one,
    inference(rw,[status(thm)],[g0_3,t101098]) ).

cnf(g0_5,plain,
    addition(one,sk1) != one,
    inference(rw,[status(thm)],[g0_4,t1860]) ).

cnf(g0_6,plain,
    addition(sk1,one) != one,
    inference(rw,[status(thm)],[g0_5,t384]) ).

cnf(g0_7,plain,
    one != one,
    inference(rw,[status(thm)],[g0_6,t635]) ).

cnf(contradiction_0,plain,
    $false,
    inference(trivial_inequality_removal,[status(thm)],[g0_7]) ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.03  % Problem  : KLE013+1 : TPTP v9.3.1. Released v4.0.0.
% 0.00/0.04  % Command  : run_findproof /export/starexec/sandbox2/benchmark/theBenchmark.p 300
% 0.10/0.37  % Computer : n014.cluster.edu
% 0.10/0.37  % Model    : x86_64 x86_64
% 0.10/0.37  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.10/0.37  % Memory   : 8046.5625MB
% 0.10/0.37  % OS       : Linux 6.8.0-71-generic
% 0.10/0.37  % CPULimit : 300
% 0.10/0.37  % WCLimit  : 300
% 0.10/0.37  % DateTime : Wed Sep 23 18:35:35 UTC 2026
% 0.10/0.37  % CPUTime  : 
% 0.10/0.37  Running run_findproof /export/starexec/sandbox2/benchmark/theBenchmark.p 300
% 103.47/14.91  % SZS status Theorem for /export/starexec/sandbox2/benchmark/theBenchmark.p
% 103.47/14.91  % SZS output start Proof for /export/starexec/sandbox2/benchmark/theBenchmark.p
% See solution above
%------------------------------------------------------------------------------