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Twee---2.7.UNS-CRf.s

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%------------------------------------------------------------------------------
% File     : Twee---2.7
% Problem  : KLE044-10 : TPTP v9.3.1. Released v7.3.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : run_twee /export/starexec/sandbox2/benchmark/theBenchmark.p

% Computer : n026.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 : Tue Sep 29 11:39:42 AM UTC 2026

% Result   : Unsatisfiable 71.34s 9.41s
% Output   : CNFRefutation 72.12s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :   33
%            Number of leaves      :   17
% Syntax   : Number of clauses     :  238 ( 238 unt;   0 nHn;   3 RR)
%            Number of literals    :  238 ( 237 equ;   1 neg)
%            Maximal clause size   :    1 (   1 avg)
%            Maximal term depth    :    6 (   2 avg)
%            Number of predicates  :    2 (   0 usr;   1 prp; 0-2 aty)
%            Number of functors    :   12 (  12 usr;   4 con; 0-4 aty)
%            Number of variables   :  336 (   3 sgn)

% Comments : 
%------------------------------------------------------------------------------
cnf(c1,negated_conjecture,
    tuple(leq(star(addition(one,sK2_goals_X0)),star(sK2_goals_X0)),leq(star(sK1_goals_X0),star(addition(one,sK1_goals_X0)))) != tuple(true,true),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',goals) ).

cnf(c2,axiom,
    addition(A,B) = addition(B,A),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',additive_commutativity) ).

cnf(c3,plain,
    addition(X,one) = addition(one,X),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c4,plain,
    addition(one,X) = addition(X,one),
    inference(symmetry,[status(thm)],[c3]) ).

cnf(c5,plain,
    star(addition(one,X)) = star(addition(X,one)),
    inference(congruence,[status(thm)],[c4]) ).

cnf(c6,plain,
    leq(star(addition(one,X)),star(X)) = leq(star(addition(X,one)),star(X)),
    inference(congruence,[status(thm)],[c5]) ).

cnf(c7,axiom,
    ifeq(A2,A2,B2,C) = B2,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',ifeq_axiom_002) ).

cnf(c8,plain,
    ifeq(true,true,leq(star(addition(X,one)),star(X)),true) = leq(star(addition(X,one)),star(X)),
    inference(substitution,[status(thm)],[c7]) ).

cnf(c9,plain,
    leq(star(addition(X,one)),star(X)) = ifeq(true,true,leq(star(addition(X,one)),star(X)),true),
    inference(symmetry,[status(thm)],[c8]) ).

cnf(c10,axiom,
    ifeq3(A2,A2,B2,C2) = B2,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',ifeq_axiom) ).

cnf(c11,plain,
    ifeq3(X,X,leq(X,X),true) = leq(X,X),
    inference(substitution,[status(thm)],[c10]) ).

cnf(c12,plain,
    leq(X,X) = ifeq3(X,X,leq(X,X),true),
    inference(symmetry,[status(thm)],[c11]) ).

cnf(c13,axiom,
    addition(A2,A2) = A2,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',additive_idempotence) ).

cnf(c14,plain,
    addition(X,X) = X,
    inference(substitution,[status(thm)],[c13]) ).

cnf(c15,plain,
    X = addition(X,X),
    inference(symmetry,[status(thm)],[c14]) ).

cnf(c16,plain,
    ifeq3(X,X,leq(X,X),true) = ifeq3(addition(X,X),X,leq(X,X),true),
    inference(congruence,[status(thm)],[c15]) ).

cnf(c17,axiom,
    ifeq3(addition(A2,B2),B2,leq(A2,B2),true) = true,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',order) ).

cnf(c18,plain,
    ifeq3(addition(X,X),X,leq(X,X),true) = true,
    inference(substitution,[status(thm)],[c17]) ).

cnf(c19,plain,
    ifeq3(X,X,leq(X,X),true) = true,
    inference(transitivity,[status(thm)],[c16,c18]) ).

cnf(c20,plain,
    leq(X,X) = true,
    inference(transitivity,[status(thm)],[c12,c19]) ).

cnf(c21,plain,
    leq(star(X),star(X)) = true,
    inference(substitution,[status(thm)],[c20]) ).

cnf(c22,plain,
    true = leq(star(X),star(X)),
    inference(symmetry,[status(thm)],[c21]) ).

cnf(c23,plain,
    ifeq(true,true,leq(star(addition(X,one)),star(X)),true) = ifeq(leq(star(X),star(X)),true,leq(star(addition(X,one)),star(X)),true),
    inference(congruence,[status(thm)],[c22]) ).

cnf(c24,plain,
    addition(one,X) = addition(X,one),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c25,plain,
    addition(X,one) = addition(one,X),
    inference(symmetry,[status(thm)],[c24]) ).

cnf(c26,plain,
    multiplication(X2,addition(X,one)) = multiplication(X2,addition(one,X)),
    inference(congruence,[status(thm)],[c25]) ).

cnf(c27,axiom,
    multiplication(A2,addition(B2,C2)) = addition(multiplication(A2,B2),multiplication(A2,C2)),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',right_distributivity) ).

cnf(c28,plain,
    multiplication(X2,addition(one,X)) = addition(multiplication(X2,one),multiplication(X2,X)),
    inference(substitution,[status(thm)],[c27]) ).

cnf(c29,axiom,
    multiplication(A2,one) = A2,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',multiplicative_right_identity) ).

cnf(c30,plain,
    multiplication(X,one) = X,
    inference(substitution,[status(thm)],[c29]) ).

cnf(c31,plain,
    addition(multiplication(X2,one),multiplication(X2,X)) = addition(X2,multiplication(X2,X)),
    inference(congruence,[status(thm)],[c30]) ).

cnf(c32,plain,
    multiplication(X2,addition(one,X)) = addition(X2,multiplication(X2,X)),
    inference(transitivity,[status(thm)],[c28,c31]) ).

cnf(c33,plain,
    multiplication(X2,addition(X,one)) = addition(X2,multiplication(X2,X)),
    inference(transitivity,[status(thm)],[c26,c32]) ).

cnf(c34,plain,
    multiplication(star(X),addition(X,one)) = addition(star(X),multiplication(star(X),X)),
    inference(substitution,[status(thm)],[c33]) ).

cnf(c35,plain,
    addition(one,multiplication(star(X),addition(X,one))) = addition(one,addition(star(X),multiplication(star(X),X))),
    inference(congruence,[status(thm)],[c34]) ).

cnf(c36,plain,
    addition(multiplication(star(X),X),star(X)) = addition(star(X),multiplication(star(X),X)),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c37,plain,
    addition(star(X),multiplication(star(X),X)) = addition(multiplication(star(X),X),star(X)),
    inference(symmetry,[status(thm)],[c36]) ).

cnf(c38,plain,
    addition(one,addition(star(X),multiplication(star(X),X))) = addition(one,addition(multiplication(star(X),X),star(X))),
    inference(congruence,[status(thm)],[c37]) ).

cnf(c39,axiom,
    addition(A2,addition(B2,C2)) = addition(addition(A2,B2),C2),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',additive_associativity) ).

cnf(c40,plain,
    addition(one,addition(multiplication(star(X),X),star(X))) = addition(addition(one,multiplication(star(X),X)),star(X)),
    inference(substitution,[status(thm)],[c39]) ).

cnf(c41,axiom,
    ifeq2(A2,A2,B2,C2) = B2,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',ifeq_axiom_001) ).

cnf(c42,plain,
    ifeq2(true,true,addition(addition(one,multiplication(star(X),X)),star(X)),star(X)) = addition(addition(one,multiplication(star(X),X)),star(X)),
    inference(substitution,[status(thm)],[c41]) ).

cnf(c43,plain,
    addition(addition(one,multiplication(star(X),X)),star(X)) = ifeq2(true,true,addition(addition(one,multiplication(star(X),X)),star(X)),star(X)),
    inference(symmetry,[status(thm)],[c42]) ).

cnf(c44,axiom,
    leq(addition(one,multiplication(star(A2),A2)),star(A2)) = true,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',star_unfold_left) ).

cnf(c45,plain,
    leq(addition(one,multiplication(star(X),X)),star(X)) = true,
    inference(substitution,[status(thm)],[c44]) ).

cnf(c46,plain,
    true = leq(addition(one,multiplication(star(X),X)),star(X)),
    inference(symmetry,[status(thm)],[c45]) ).

cnf(c47,plain,
    ifeq2(true,true,addition(addition(one,multiplication(star(X),X)),star(X)),star(X)) = ifeq2(leq(addition(one,multiplication(star(X),X)),star(X)),true,addition(addition(one,multiplication(star(X),X)),star(X)),star(X)),
    inference(congruence,[status(thm)],[c46]) ).

cnf(c48,axiom,
    ifeq2(leq(A2,B2),true,addition(A2,B2),B2) = B2,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',order_1) ).

cnf(c49,plain,
    ifeq2(leq(addition(one,multiplication(star(X),X)),star(X)),true,addition(addition(one,multiplication(star(X),X)),star(X)),star(X)) = star(X),
    inference(substitution,[status(thm)],[c48]) ).

cnf(c50,plain,
    ifeq2(true,true,addition(addition(one,multiplication(star(X),X)),star(X)),star(X)) = star(X),
    inference(transitivity,[status(thm)],[c47,c49]) ).

cnf(c51,plain,
    addition(addition(one,multiplication(star(X),X)),star(X)) = star(X),
    inference(transitivity,[status(thm)],[c43,c50]) ).

cnf(c52,plain,
    addition(one,addition(multiplication(star(X),X),star(X))) = star(X),
    inference(transitivity,[status(thm)],[c40,c51]) ).

cnf(c53,plain,
    addition(one,addition(star(X),multiplication(star(X),X))) = star(X),
    inference(transitivity,[status(thm)],[c38,c52]) ).

cnf(c54,plain,
    addition(one,multiplication(star(X),addition(X,one))) = star(X),
    inference(transitivity,[status(thm)],[c35,c53]) ).

cnf(c55,plain,
    star(X) = addition(one,multiplication(star(X),addition(X,one))),
    inference(symmetry,[status(thm)],[c54]) ).

cnf(c56,plain,
    leq(star(X),star(X)) = leq(addition(one,multiplication(star(X),addition(X,one))),star(X)),
    inference(congruence,[status(thm)],[c55]) ).

cnf(c57,plain,
    ifeq(leq(star(X),star(X)),true,leq(star(addition(X,one)),star(X)),true) = ifeq(leq(addition(one,multiplication(star(X),addition(X,one))),star(X)),true,leq(star(addition(X,one)),star(X)),true),
    inference(congruence,[status(thm)],[c56]) ).

cnf(c58,plain,
    addition(multiplication(X2,X),one) = addition(one,multiplication(X2,X)),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c59,plain,
    addition(one,multiplication(X2,X)) = addition(multiplication(X2,X),one),
    inference(symmetry,[status(thm)],[c58]) ).

cnf(c60,plain,
    leq(addition(one,multiplication(X2,X)),X2) = leq(addition(multiplication(X2,X),one),X2),
    inference(congruence,[status(thm)],[c59]) ).

cnf(c61,plain,
    ifeq(leq(addition(one,multiplication(X2,X)),X2),true,leq(star(X),X2),true) = ifeq(leq(addition(multiplication(X2,X),one),X2),true,leq(star(X),X2),true),
    inference(congruence,[status(thm)],[c60]) ).

cnf(c62,axiom,
    multiplication(one,A2) = A2,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',multiplicative_left_identity) ).

cnf(c63,plain,
    multiplication(one,star(X)) = star(X),
    inference(substitution,[status(thm)],[c62]) ).

cnf(c64,plain,
    star(X) = multiplication(one,star(X)),
    inference(symmetry,[status(thm)],[c63]) ).

cnf(c65,plain,
    leq(star(X),X2) = leq(multiplication(one,star(X)),X2),
    inference(congruence,[status(thm)],[c64]) ).

cnf(c66,plain,
    ifeq(leq(addition(multiplication(X2,X),one),X2),true,leq(star(X),X2),true) = ifeq(leq(addition(multiplication(X2,X),one),X2),true,leq(multiplication(one,star(X)),X2),true),
    inference(congruence,[status(thm)],[c65]) ).

cnf(c67,axiom,
    ifeq(leq(addition(multiplication(A2,B2),C2),A2),true,leq(multiplication(C2,star(B2)),A2),true) = true,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',star_induction_right) ).

cnf(c68,plain,
    ifeq(leq(addition(multiplication(X2,X),one),X2),true,leq(multiplication(one,star(X)),X2),true) = true,
    inference(substitution,[status(thm)],[c67]) ).

cnf(c69,plain,
    ifeq(leq(addition(multiplication(X2,X),one),X2),true,leq(star(X),X2),true) = true,
    inference(transitivity,[status(thm)],[c66,c68]) ).

cnf(c70,plain,
    ifeq(leq(addition(one,multiplication(X2,X)),X2),true,leq(star(X),X2),true) = true,
    inference(transitivity,[status(thm)],[c61,c69]) ).

cnf(c71,plain,
    ifeq(leq(addition(one,multiplication(star(X),addition(X,one))),star(X)),true,leq(star(addition(X,one)),star(X)),true) = true,
    inference(substitution,[status(thm)],[c70]) ).

cnf(c72,plain,
    ifeq(leq(star(X),star(X)),true,leq(star(addition(X,one)),star(X)),true) = true,
    inference(transitivity,[status(thm)],[c57,c71]) ).

cnf(c73,plain,
    ifeq(true,true,leq(star(addition(X,one)),star(X)),true) = true,
    inference(transitivity,[status(thm)],[c23,c72]) ).

cnf(c74,plain,
    leq(star(addition(X,one)),star(X)) = true,
    inference(transitivity,[status(thm)],[c9,c73]) ).

cnf(c75,plain,
    leq(star(addition(one,X)),star(X)) = true,
    inference(transitivity,[status(thm)],[c6,c74]) ).

cnf(c76,plain,
    tuple(leq(star(addition(one,X2)),star(X2)),leq(star(X),star(addition(one,X)))) = tuple(true,leq(star(X),star(addition(one,X)))),
    inference(congruence,[status(thm)],[c75]) ).

cnf(c77,plain,
    addition(multiplication(X,star(X)),star(X)) = addition(star(X),multiplication(X,star(X))),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c78,plain,
    addition(star(X),multiplication(X,star(X))) = addition(multiplication(X,star(X)),star(X)),
    inference(symmetry,[status(thm)],[c77]) ).

cnf(c79,plain,
    addition(X2,addition(X2,X)) = addition(addition(X2,X2),X),
    inference(substitution,[status(thm)],[c39]) ).

cnf(c80,plain,
    addition(X,X) = X,
    inference(substitution,[status(thm)],[c13]) ).

cnf(c81,plain,
    addition(addition(X2,X2),X) = addition(X2,X),
    inference(congruence,[status(thm)],[c80]) ).

cnf(c82,plain,
    addition(X2,addition(X2,X)) = addition(X2,X),
    inference(transitivity,[status(thm)],[c79,c81]) ).

cnf(c83,plain,
    addition(X,addition(X,X2)) = addition(X,X2),
    inference(substitution,[status(thm)],[c82]) ).

cnf(c84,plain,
    addition(X,X2) = addition(X,addition(X,X2)),
    inference(symmetry,[status(thm)],[c83]) ).

cnf(c85,plain,
    addition(X2,addition(X,X2)) = addition(X2,addition(X,addition(X,X2))),
    inference(congruence,[status(thm)],[c84]) ).

cnf(c86,plain,
    addition(X2,X) = addition(X,X2),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c87,plain,
    addition(X,X2) = addition(X2,X),
    inference(symmetry,[status(thm)],[c86]) ).

cnf(c88,plain,
    addition(X,addition(X,X2)) = addition(X,addition(X2,X)),
    inference(congruence,[status(thm)],[c87]) ).

cnf(c89,plain,
    addition(X2,addition(X,addition(X,X2))) = addition(X2,addition(X,addition(X2,X))),
    inference(congruence,[status(thm)],[c88]) ).

cnf(c90,plain,
    addition(X2,addition(X,addition(X2,X))) = addition(addition(X2,X),addition(X2,X)),
    inference(substitution,[status(thm)],[c39]) ).

cnf(c91,plain,
    addition(addition(X2,X),addition(X2,X)) = addition(X2,X),
    inference(substitution,[status(thm)],[c13]) ).

cnf(c92,plain,
    addition(X2,X) = addition(X,X2),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c93,plain,
    addition(addition(X2,X),addition(X2,X)) = addition(X,X2),
    inference(transitivity,[status(thm)],[c91,c92]) ).

cnf(c94,plain,
    addition(X2,addition(X,addition(X2,X))) = addition(X,X2),
    inference(transitivity,[status(thm)],[c90,c93]) ).

cnf(c95,plain,
    addition(X2,addition(X,addition(X,X2))) = addition(X,X2),
    inference(transitivity,[status(thm)],[c89,c94]) ).

cnf(c96,plain,
    addition(X2,addition(X,X2)) = addition(X,X2),
    inference(transitivity,[status(thm)],[c85,c95]) ).

cnf(c97,plain,
    addition(star(X),addition(multiplication(X,star(X)),star(X))) = addition(multiplication(X,star(X)),star(X)),
    inference(substitution,[status(thm)],[c96]) ).

cnf(c98,plain,
    addition(multiplication(X,star(X)),star(X)) = addition(star(X),addition(multiplication(X,star(X)),star(X))),
    inference(symmetry,[status(thm)],[c97]) ).

cnf(c99,plain,
    addition(star(X),addition(multiplication(X,star(X)),star(X))) = addition(addition(star(X),multiplication(X,star(X))),star(X)),
    inference(substitution,[status(thm)],[c39]) ).

cnf(c100,plain,
    addition(multiplication(X,star(X)),star(X)) = addition(star(X),multiplication(X,star(X))),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c101,plain,
    addition(star(X),multiplication(X,star(X))) = addition(multiplication(X,star(X)),star(X)),
    inference(symmetry,[status(thm)],[c100]) ).

cnf(c102,plain,
    addition(one,addition(star(X),multiplication(X,star(X)))) = addition(one,addition(multiplication(X,star(X)),star(X))),
    inference(congruence,[status(thm)],[c101]) ).

cnf(c103,plain,
    addition(one,addition(multiplication(X,star(X)),star(X))) = addition(addition(one,multiplication(X,star(X))),star(X)),
    inference(substitution,[status(thm)],[c39]) ).

cnf(c104,plain,
    ifeq2(true,true,addition(addition(one,multiplication(X,star(X))),star(X)),star(X)) = addition(addition(one,multiplication(X,star(X))),star(X)),
    inference(substitution,[status(thm)],[c41]) ).

cnf(c105,plain,
    addition(addition(one,multiplication(X,star(X))),star(X)) = ifeq2(true,true,addition(addition(one,multiplication(X,star(X))),star(X)),star(X)),
    inference(symmetry,[status(thm)],[c104]) ).

cnf(c106,axiom,
    leq(addition(one,multiplication(A2,star(A2))),star(A2)) = true,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',star_unfold_right) ).

cnf(c107,plain,
    leq(addition(one,multiplication(X,star(X))),star(X)) = true,
    inference(substitution,[status(thm)],[c106]) ).

cnf(c108,plain,
    true = leq(addition(one,multiplication(X,star(X))),star(X)),
    inference(symmetry,[status(thm)],[c107]) ).

cnf(c109,plain,
    ifeq2(true,true,addition(addition(one,multiplication(X,star(X))),star(X)),star(X)) = ifeq2(leq(addition(one,multiplication(X,star(X))),star(X)),true,addition(addition(one,multiplication(X,star(X))),star(X)),star(X)),
    inference(congruence,[status(thm)],[c108]) ).

cnf(c110,plain,
    ifeq2(leq(addition(one,multiplication(X,star(X))),star(X)),true,addition(addition(one,multiplication(X,star(X))),star(X)),star(X)) = star(X),
    inference(substitution,[status(thm)],[c48]) ).

cnf(c111,plain,
    ifeq2(true,true,addition(addition(one,multiplication(X,star(X))),star(X)),star(X)) = star(X),
    inference(transitivity,[status(thm)],[c109,c110]) ).

cnf(c112,plain,
    addition(addition(one,multiplication(X,star(X))),star(X)) = star(X),
    inference(transitivity,[status(thm)],[c105,c111]) ).

cnf(c113,plain,
    addition(one,addition(multiplication(X,star(X)),star(X))) = star(X),
    inference(transitivity,[status(thm)],[c103,c112]) ).

cnf(c114,plain,
    addition(one,addition(star(X),multiplication(X,star(X)))) = star(X),
    inference(transitivity,[status(thm)],[c102,c113]) ).

cnf(c115,plain,
    star(X) = addition(one,addition(star(X),multiplication(X,star(X)))),
    inference(symmetry,[status(thm)],[c114]) ).

cnf(c116,plain,
    addition(addition(star(X),multiplication(X,star(X))),star(X)) = addition(addition(star(X),multiplication(X,star(X))),addition(one,addition(star(X),multiplication(X,star(X))))),
    inference(congruence,[status(thm)],[c115]) ).

cnf(c117,plain,
    addition(addition(star(X),multiplication(X,star(X))),addition(one,addition(star(X),multiplication(X,star(X))))) = addition(one,addition(star(X),multiplication(X,star(X)))),
    inference(substitution,[status(thm)],[c96]) ).

cnf(c118,plain,
    addition(addition(star(X),multiplication(X,star(X))),addition(one,addition(star(X),multiplication(X,star(X))))) = star(X),
    inference(transitivity,[status(thm)],[c117,c114]) ).

cnf(c119,plain,
    addition(addition(star(X),multiplication(X,star(X))),star(X)) = star(X),
    inference(transitivity,[status(thm)],[c116,c118]) ).

cnf(c120,plain,
    addition(star(X),addition(multiplication(X,star(X)),star(X))) = star(X),
    inference(transitivity,[status(thm)],[c99,c119]) ).

cnf(c121,plain,
    addition(multiplication(X,star(X)),star(X)) = star(X),
    inference(transitivity,[status(thm)],[c98,c120]) ).

cnf(c122,plain,
    addition(star(X),multiplication(X,star(X))) = star(X),
    inference(transitivity,[status(thm)],[c78,c121]) ).

cnf(c123,plain,
    star(X) = addition(star(X),multiplication(X,star(X))),
    inference(symmetry,[status(thm)],[c122]) ).

cnf(c124,plain,
    multiplication(star(X),X2) = multiplication(addition(star(X),multiplication(X,star(X))),X2),
    inference(congruence,[status(thm)],[c123]) ).

cnf(c125,plain,
    addition(X2,multiplication(star(X),X2)) = addition(X2,multiplication(addition(star(X),multiplication(X,star(X))),X2)),
    inference(congruence,[status(thm)],[c124]) ).

cnf(c126,plain,
    addition(X,one) = addition(one,X),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c127,plain,
    addition(one,X) = addition(X,one),
    inference(symmetry,[status(thm)],[c126]) ).

cnf(c128,plain,
    multiplication(addition(one,X),X2) = multiplication(addition(X,one),X2),
    inference(congruence,[status(thm)],[c127]) ).

cnf(c129,plain,
    addition(one,X) = addition(X,one),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c130,plain,
    addition(X,one) = addition(one,X),
    inference(symmetry,[status(thm)],[c129]) ).

cnf(c131,plain,
    multiplication(addition(X2,one),X) = multiplication(addition(one,X2),X),
    inference(congruence,[status(thm)],[c130]) ).

cnf(c132,axiom,
    multiplication(addition(A2,B2),C2) = addition(multiplication(A2,C2),multiplication(B2,C2)),
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',left_distributivity) ).

cnf(c133,plain,
    multiplication(addition(one,X2),X) = addition(multiplication(one,X),multiplication(X2,X)),
    inference(substitution,[status(thm)],[c132]) ).

cnf(c134,plain,
    multiplication(one,X) = X,
    inference(substitution,[status(thm)],[c62]) ).

cnf(c135,plain,
    addition(multiplication(one,X),multiplication(X2,X)) = addition(X,multiplication(X2,X)),
    inference(congruence,[status(thm)],[c134]) ).

cnf(c136,plain,
    multiplication(addition(one,X2),X) = addition(X,multiplication(X2,X)),
    inference(transitivity,[status(thm)],[c133,c135]) ).

cnf(c137,plain,
    multiplication(addition(X2,one),X) = addition(X,multiplication(X2,X)),
    inference(transitivity,[status(thm)],[c131,c136]) ).

cnf(c138,plain,
    multiplication(addition(X,one),X2) = addition(X2,multiplication(X,X2)),
    inference(substitution,[status(thm)],[c137]) ).

cnf(c139,plain,
    multiplication(addition(one,X),X2) = addition(X2,multiplication(X,X2)),
    inference(transitivity,[status(thm)],[c128,c138]) ).

cnf(c140,plain,
    multiplication(addition(one,addition(star(X),multiplication(X,star(X)))),X2) = addition(X2,multiplication(addition(star(X),multiplication(X,star(X))),X2)),
    inference(substitution,[status(thm)],[c139]) ).

cnf(c141,plain,
    addition(X2,multiplication(addition(star(X),multiplication(X,star(X))),X2)) = multiplication(addition(one,addition(star(X),multiplication(X,star(X)))),X2),
    inference(symmetry,[status(thm)],[c140]) ).

cnf(c142,plain,
    multiplication(addition(one,addition(star(X),multiplication(X,star(X)))),X2) = multiplication(star(X),X2),
    inference(congruence,[status(thm)],[c114]) ).

cnf(c143,plain,
    addition(X2,multiplication(addition(star(X),multiplication(X,star(X))),X2)) = multiplication(star(X),X2),
    inference(transitivity,[status(thm)],[c141,c142]) ).

cnf(c144,plain,
    addition(X2,multiplication(star(X),X2)) = multiplication(star(X),X2),
    inference(transitivity,[status(thm)],[c125,c143]) ).

cnf(c145,plain,
    addition(star(X),multiplication(star(addition(one,X)),star(X))) = multiplication(star(addition(one,X)),star(X)),
    inference(substitution,[status(thm)],[c144]) ).

cnf(c146,plain,
    multiplication(star(addition(one,X)),star(X)) = addition(star(X),multiplication(star(addition(one,X)),star(X))),
    inference(symmetry,[status(thm)],[c145]) ).

cnf(c147,plain,
    ifeq2(true,true,addition(star(X),multiplication(star(addition(one,X)),star(X))),star(X)) = addition(star(X),multiplication(star(addition(one,X)),star(X))),
    inference(substitution,[status(thm)],[c41]) ).

cnf(c148,plain,
    addition(star(X),multiplication(star(addition(one,X)),star(X))) = ifeq2(true,true,addition(star(X),multiplication(star(addition(one,X)),star(X))),star(X)),
    inference(symmetry,[status(thm)],[c147]) ).

cnf(c149,plain,
    multiplication(addition(one,X),star(X)) = addition(star(X),multiplication(X,star(X))),
    inference(substitution,[status(thm)],[c139]) ).

cnf(c150,plain,
    multiplication(addition(one,X),star(X)) = star(X),
    inference(transitivity,[status(thm)],[c149,c122]) ).

cnf(c151,plain,
    star(X) = multiplication(addition(one,X),star(X)),
    inference(symmetry,[status(thm)],[c150]) ).

cnf(c152,plain,
    multiplication(star(addition(one,X)),star(X)) = multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),
    inference(congruence,[status(thm)],[c151]) ).

cnf(c153,plain,
    leq(multiplication(star(addition(one,X)),star(X)),star(X)) = leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)),
    inference(congruence,[status(thm)],[c152]) ).

cnf(c154,plain,
    ifeq(true,true,leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)),true) = leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)),
    inference(substitution,[status(thm)],[c7]) ).

cnf(c155,plain,
    leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)) = ifeq(true,true,leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)),true),
    inference(symmetry,[status(thm)],[c154]) ).

cnf(c156,plain,
    leq(star(X),star(X)) = true,
    inference(substitution,[status(thm)],[c20]) ).

cnf(c157,plain,
    true = leq(star(X),star(X)),
    inference(symmetry,[status(thm)],[c156]) ).

cnf(c158,plain,
    ifeq(true,true,leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)),true) = ifeq(leq(star(X),star(X)),true,leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)),true),
    inference(congruence,[status(thm)],[c157]) ).

cnf(c159,plain,
    star(X) = multiplication(addition(one,X),star(X)),
    inference(symmetry,[status(thm)],[c150]) ).

cnf(c160,plain,
    leq(star(X),star(X)) = leq(multiplication(addition(one,X),star(X)),star(X)),
    inference(congruence,[status(thm)],[c159]) ).

cnf(c161,plain,
    ifeq(leq(star(X),star(X)),true,leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)),true) = ifeq(leq(multiplication(addition(one,X),star(X)),star(X)),true,leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)),true),
    inference(congruence,[status(thm)],[c160]) ).

cnf(c162,plain,
    addition(multiplication(X2,X),multiplication(X2,X)) = multiplication(X2,X),
    inference(substitution,[status(thm)],[c13]) ).

cnf(c163,plain,
    multiplication(X2,X) = addition(multiplication(X2,X),multiplication(X2,X)),
    inference(symmetry,[status(thm)],[c162]) ).

cnf(c164,plain,
    leq(multiplication(X2,X),X) = leq(addition(multiplication(X2,X),multiplication(X2,X)),X),
    inference(congruence,[status(thm)],[c163]) ).

cnf(c165,plain,
    ifeq(leq(multiplication(X2,X),X),true,leq(multiplication(star(X2),multiplication(X2,X)),X),true) = ifeq(leq(addition(multiplication(X2,X),multiplication(X2,X)),X),true,leq(multiplication(star(X2),multiplication(X2,X)),X),true),
    inference(congruence,[status(thm)],[c164]) ).

cnf(c166,axiom,
    ifeq(leq(addition(multiplication(A2,B2),C2),B2),true,leq(multiplication(star(A2),C2),B2),true) = true,
    file('/export/starexec/sandbox2/benchmark/theBenchmark.p',star_induction_left) ).

cnf(c167,plain,
    ifeq(leq(addition(multiplication(X2,X),multiplication(X2,X)),X),true,leq(multiplication(star(X2),multiplication(X2,X)),X),true) = true,
    inference(substitution,[status(thm)],[c166]) ).

cnf(c168,plain,
    ifeq(leq(multiplication(X2,X),X),true,leq(multiplication(star(X2),multiplication(X2,X)),X),true) = true,
    inference(transitivity,[status(thm)],[c165,c167]) ).

cnf(c169,plain,
    ifeq(leq(multiplication(addition(one,X),star(X)),star(X)),true,leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)),true) = true,
    inference(substitution,[status(thm)],[c168]) ).

cnf(c170,plain,
    ifeq(leq(star(X),star(X)),true,leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)),true) = true,
    inference(transitivity,[status(thm)],[c161,c169]) ).

cnf(c171,plain,
    ifeq(true,true,leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)),true) = true,
    inference(transitivity,[status(thm)],[c158,c170]) ).

cnf(c172,plain,
    leq(multiplication(star(addition(one,X)),multiplication(addition(one,X),star(X))),star(X)) = true,
    inference(transitivity,[status(thm)],[c155,c171]) ).

cnf(c173,plain,
    leq(multiplication(star(addition(one,X)),star(X)),star(X)) = true,
    inference(transitivity,[status(thm)],[c153,c172]) ).

cnf(c174,plain,
    true = leq(multiplication(star(addition(one,X)),star(X)),star(X)),
    inference(symmetry,[status(thm)],[c173]) ).

cnf(c175,plain,
    ifeq2(true,true,addition(star(X),multiplication(star(addition(one,X)),star(X))),star(X)) = ifeq2(leq(multiplication(star(addition(one,X)),star(X)),star(X)),true,addition(star(X),multiplication(star(addition(one,X)),star(X))),star(X)),
    inference(congruence,[status(thm)],[c174]) ).

cnf(c176,plain,
    addition(X2,X) = addition(X,X2),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c177,plain,
    addition(X,X2) = addition(X2,X),
    inference(symmetry,[status(thm)],[c176]) ).

cnf(c178,plain,
    ifeq2(leq(X2,X),true,addition(X,X2),X) = ifeq2(leq(X2,X),true,addition(X2,X),X),
    inference(congruence,[status(thm)],[c177]) ).

cnf(c179,plain,
    ifeq2(leq(X2,X),true,addition(X2,X),X) = X,
    inference(substitution,[status(thm)],[c48]) ).

cnf(c180,plain,
    ifeq2(leq(X2,X),true,addition(X,X2),X) = X,
    inference(transitivity,[status(thm)],[c178,c179]) ).

cnf(c181,plain,
    ifeq2(leq(multiplication(star(addition(one,X)),star(X)),star(X)),true,addition(star(X),multiplication(star(addition(one,X)),star(X))),star(X)) = star(X),
    inference(substitution,[status(thm)],[c180]) ).

cnf(c182,plain,
    ifeq2(true,true,addition(star(X),multiplication(star(addition(one,X)),star(X))),star(X)) = star(X),
    inference(transitivity,[status(thm)],[c175,c181]) ).

cnf(c183,plain,
    addition(star(X),multiplication(star(addition(one,X)),star(X))) = star(X),
    inference(transitivity,[status(thm)],[c148,c182]) ).

cnf(c184,plain,
    multiplication(star(addition(one,X)),star(X)) = star(X),
    inference(transitivity,[status(thm)],[c146,c183]) ).

cnf(c185,plain,
    star(X) = multiplication(star(addition(one,X)),star(X)),
    inference(symmetry,[status(thm)],[c184]) ).

cnf(c186,plain,
    leq(star(X),star(addition(one,X))) = leq(multiplication(star(addition(one,X)),star(X)),star(addition(one,X))),
    inference(congruence,[status(thm)],[c185]) ).

cnf(c187,plain,
    ifeq(true,true,leq(multiplication(star(addition(one,X)),star(X)),star(addition(one,X))),true) = leq(multiplication(star(addition(one,X)),star(X)),star(addition(one,X))),
    inference(substitution,[status(thm)],[c7]) ).

cnf(c188,plain,
    leq(multiplication(star(addition(one,X)),star(X)),star(addition(one,X))) = ifeq(true,true,leq(multiplication(star(addition(one,X)),star(X)),star(addition(one,X))),true),
    inference(symmetry,[status(thm)],[c187]) ).

cnf(c189,plain,
    ifeq3(star(X),star(X),leq(multiplication(star(X),X),star(X)),true) = leq(multiplication(star(X),X),star(X)),
    inference(substitution,[status(thm)],[c10]) ).

cnf(c190,plain,
    leq(multiplication(star(X),X),star(X)) = ifeq3(star(X),star(X),leq(multiplication(star(X),X),star(X)),true),
    inference(symmetry,[status(thm)],[c189]) ).

cnf(c191,plain,
    addition(multiplication(star(X),X),star(X)) = addition(star(X),multiplication(star(X),X)),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c192,plain,
    addition(star(X),multiplication(star(X),X)) = addition(multiplication(star(X),X),star(X)),
    inference(symmetry,[status(thm)],[c191]) ).

cnf(c193,plain,
    addition(star(X),addition(multiplication(star(X),X),star(X))) = addition(multiplication(star(X),X),star(X)),
    inference(substitution,[status(thm)],[c96]) ).

cnf(c194,plain,
    addition(multiplication(star(X),X),star(X)) = addition(star(X),addition(multiplication(star(X),X),star(X))),
    inference(symmetry,[status(thm)],[c193]) ).

cnf(c195,plain,
    addition(star(X),addition(multiplication(star(X),X),star(X))) = addition(addition(star(X),multiplication(star(X),X)),star(X)),
    inference(substitution,[status(thm)],[c39]) ).

cnf(c196,plain,
    star(X) = addition(one,addition(star(X),multiplication(star(X),X))),
    inference(symmetry,[status(thm)],[c53]) ).

cnf(c197,plain,
    addition(addition(star(X),multiplication(star(X),X)),star(X)) = addition(addition(star(X),multiplication(star(X),X)),addition(one,addition(star(X),multiplication(star(X),X)))),
    inference(congruence,[status(thm)],[c196]) ).

cnf(c198,plain,
    addition(addition(star(X),multiplication(star(X),X)),addition(one,addition(star(X),multiplication(star(X),X)))) = addition(one,addition(star(X),multiplication(star(X),X))),
    inference(substitution,[status(thm)],[c96]) ).

cnf(c199,plain,
    addition(addition(star(X),multiplication(star(X),X)),addition(one,addition(star(X),multiplication(star(X),X)))) = star(X),
    inference(transitivity,[status(thm)],[c198,c53]) ).

cnf(c200,plain,
    addition(addition(star(X),multiplication(star(X),X)),star(X)) = star(X),
    inference(transitivity,[status(thm)],[c197,c199]) ).

cnf(c201,plain,
    addition(star(X),addition(multiplication(star(X),X),star(X))) = star(X),
    inference(transitivity,[status(thm)],[c195,c200]) ).

cnf(c202,plain,
    addition(multiplication(star(X),X),star(X)) = star(X),
    inference(transitivity,[status(thm)],[c194,c201]) ).

cnf(c203,plain,
    addition(star(X),multiplication(star(X),X)) = star(X),
    inference(transitivity,[status(thm)],[c192,c202]) ).

cnf(c204,plain,
    star(X) = addition(star(X),multiplication(star(X),X)),
    inference(symmetry,[status(thm)],[c203]) ).

cnf(c205,plain,
    ifeq3(star(X),star(X),leq(multiplication(star(X),X),star(X)),true) = ifeq3(addition(star(X),multiplication(star(X),X)),star(X),leq(multiplication(star(X),X),star(X)),true),
    inference(congruence,[status(thm)],[c204]) ).

cnf(c206,plain,
    addition(X,X2) = addition(X2,X),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c207,plain,
    addition(X2,X) = addition(X,X2),
    inference(symmetry,[status(thm)],[c206]) ).

cnf(c208,plain,
    ifeq3(addition(X2,X),X2,leq(X,X2),true) = ifeq3(addition(X,X2),X2,leq(X,X2),true),
    inference(congruence,[status(thm)],[c207]) ).

cnf(c209,plain,
    ifeq3(addition(X,X2),X2,leq(X,X2),true) = true,
    inference(substitution,[status(thm)],[c17]) ).

cnf(c210,plain,
    ifeq3(addition(X2,X),X2,leq(X,X2),true) = true,
    inference(transitivity,[status(thm)],[c208,c209]) ).

cnf(c211,plain,
    ifeq3(addition(star(X),multiplication(star(X),X)),star(X),leq(multiplication(star(X),X),star(X)),true) = true,
    inference(substitution,[status(thm)],[c210]) ).

cnf(c212,plain,
    ifeq3(star(X),star(X),leq(multiplication(star(X),X),star(X)),true) = true,
    inference(transitivity,[status(thm)],[c205,c211]) ).

cnf(c213,plain,
    leq(multiplication(star(X),X),star(X)) = true,
    inference(transitivity,[status(thm)],[c190,c212]) ).

cnf(c214,plain,
    leq(multiplication(star(addition(one,X)),addition(one,X)),star(addition(one,X))) = true,
    inference(substitution,[status(thm)],[c213]) ).

cnf(c215,plain,
    true = leq(multiplication(star(addition(one,X)),addition(one,X)),star(addition(one,X))),
    inference(symmetry,[status(thm)],[c214]) ).

cnf(c216,plain,
    ifeq(true,true,leq(multiplication(star(addition(one,X)),star(X)),star(addition(one,X))),true) = ifeq(leq(multiplication(star(addition(one,X)),addition(one,X)),star(addition(one,X))),true,leq(multiplication(star(addition(one,X)),star(X)),star(addition(one,X))),true),
    inference(congruence,[status(thm)],[c215]) ).

cnf(c217,plain,
    addition(X,one) = addition(one,X),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c218,plain,
    addition(one,X) = addition(X,one),
    inference(symmetry,[status(thm)],[c217]) ).

cnf(c219,plain,
    multiplication(X2,addition(one,X)) = multiplication(X2,addition(X,one)),
    inference(congruence,[status(thm)],[c218]) ).

cnf(c220,plain,
    multiplication(X2,addition(one,X)) = addition(X2,multiplication(X2,X)),
    inference(transitivity,[status(thm)],[c219,c33]) ).

cnf(c221,plain,
    leq(multiplication(X2,addition(one,X)),X2) = leq(addition(X2,multiplication(X2,X)),X2),
    inference(congruence,[status(thm)],[c220]) ).

cnf(c222,plain,
    ifeq(leq(multiplication(X2,addition(one,X)),X2),true,leq(multiplication(X2,star(X)),X2),true) = ifeq(leq(addition(X2,multiplication(X2,X)),X2),true,leq(multiplication(X2,star(X)),X2),true),
    inference(congruence,[status(thm)],[c221]) ).

cnf(c223,plain,
    addition(multiplication(X,X3),X2) = addition(X2,multiplication(X,X3)),
    inference(substitution,[status(thm)],[c2]) ).

cnf(c224,plain,
    addition(X3,multiplication(X2,X)) = addition(multiplication(X2,X),X3),
    inference(symmetry,[status(thm)],[c223]) ).

cnf(c225,plain,
    leq(addition(X3,multiplication(X2,X)),X2) = leq(addition(multiplication(X2,X),X3),X2),
    inference(congruence,[status(thm)],[c224]) ).

cnf(c226,plain,
    ifeq(leq(addition(X3,multiplication(X2,X)),X2),true,leq(multiplication(X3,star(X)),X2),true) = ifeq(leq(addition(multiplication(X2,X),X3),X2),true,leq(multiplication(X3,star(X)),X2),true),
    inference(congruence,[status(thm)],[c225]) ).

cnf(c227,plain,
    ifeq(leq(addition(multiplication(X2,X),X3),X2),true,leq(multiplication(X3,star(X)),X2),true) = true,
    inference(substitution,[status(thm)],[c67]) ).

cnf(c228,plain,
    ifeq(leq(addition(X3,multiplication(X2,X)),X2),true,leq(multiplication(X3,star(X)),X2),true) = true,
    inference(transitivity,[status(thm)],[c226,c227]) ).

cnf(c229,plain,
    ifeq(leq(addition(X2,multiplication(X2,X)),X2),true,leq(multiplication(X2,star(X)),X2),true) = true,
    inference(substitution,[status(thm)],[c228]) ).

cnf(c230,plain,
    ifeq(leq(multiplication(X2,addition(one,X)),X2),true,leq(multiplication(X2,star(X)),X2),true) = true,
    inference(transitivity,[status(thm)],[c222,c229]) ).

cnf(c231,plain,
    ifeq(leq(multiplication(star(addition(one,X)),addition(one,X)),star(addition(one,X))),true,leq(multiplication(star(addition(one,X)),star(X)),star(addition(one,X))),true) = true,
    inference(substitution,[status(thm)],[c230]) ).

cnf(c232,plain,
    ifeq(true,true,leq(multiplication(star(addition(one,X)),star(X)),star(addition(one,X))),true) = true,
    inference(transitivity,[status(thm)],[c216,c231]) ).

cnf(c233,plain,
    leq(multiplication(star(addition(one,X)),star(X)),star(addition(one,X))) = true,
    inference(transitivity,[status(thm)],[c188,c232]) ).

cnf(c234,plain,
    leq(star(X),star(addition(one,X))) = true,
    inference(transitivity,[status(thm)],[c186,c233]) ).

cnf(c235,plain,
    tuple(true,leq(star(X),star(addition(one,X)))) = tuple(true,true),
    inference(congruence,[status(thm)],[c234]) ).

cnf(c236,plain,
    tuple(leq(star(addition(one,X2)),star(X2)),leq(star(X),star(addition(one,X)))) = tuple(true,true),
    inference(transitivity,[status(thm)],[c76,c235]) ).

cnf(c237,plain,
    tuple(leq(star(addition(one,sK2_goals_X0)),star(sK2_goals_X0)),leq(star(sK1_goals_X0),star(addition(one,sK1_goals_X0)))) = tuple(true,true),
    inference(substitution,[status(thm)],[c236]) ).

cnf(c238,plain,
    $false,
    inference(resolution,[status(thm)],[c1,c237]) ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.03  % Problem  : KLE044-10 : TPTP v9.3.1. Released v7.3.0.
% 0.00/0.04  % Command  : run_twee /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.07/0.34  % Computer : n026.cluster.edu
% 0.07/0.34  % Model    : x86_64 x86_64
% 0.07/0.34  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.07/0.34  % Memory   : 8046.5625MB
% 0.07/0.34  % OS       : Linux 6.8.0-71-generic
% 0.07/0.34  % CPULimit : 300
% 0.07/0.34  % WCLimit  : 300
% 0.07/0.34  % DateTime : Sun Sep 27 13:09:41 UTC 2026
% 0.07/0.35  % CPUTime  : 
% 0.07/0.35  Running run_twee /export/starexec/sandbox2/benchmark/theBenchmark.p
% 71.34/9.41  Command-line arguments: --lhs-weight 1 --flip-ordering --normalise-queue-percent 10 --cp-renormalise-threshold 10 --complete-subsets --ground-joining-incomplete-limit 15 --flatten-every 2
% 71.34/9.41  
% 71.34/9.41  % SZS status Unsatisfiable
% 71.34/9.41  
% 71.34/9.43  % SZS output start CNFRefutation
% See solution above
% 72.12/9.55  
% 72.12/9.55  RESULT: Unsatisfiable (the axioms are contradictory).
%------------------------------------------------------------------------------