TSTP Solution File: GRP438-1 by CSE_E---1.5

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : CSE_E---1.5
% Problem  : GRP438-1 : TPTP v8.1.2. Released v2.6.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : java -jar /export/starexec/sandbox/solver/bin/mcs_scs.jar %d %s

% Computer : n023.cluster.edu
% Model    : x86_64 x86_64
% CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory   : 8042.1875MB
% OS       : Linux 3.10.0-693.el7.x86_64
% CPULimit : 300s
% WCLimit  : 300s
% DateTime : Thu Aug 31 00:20:17 EDT 2023

% Result   : Unsatisfiable 0.67s 0.79s
% Output   : CNFRefutation 0.67s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :   39
%            Number of leaves      :    7
% Syntax   : Number of formulae    :   65 (  60 unt;   5 typ;   0 def)
%            Number of atoms       :   60 (  59 equ)
%            Maximal formula atoms :    1 (   1 avg)
%            Number of connectives :    2 (   2   ~;   0   |;   0   &)
%                                         (   0 <=>;   0  =>;   0  <=;   0 <~>)
%            Maximal formula depth :    2 (   1 avg)
%            Maximal term depth    :   12 (   3 avg)
%            Number of types       :    1 (   0 usr)
%            Number of type conns  :    3 (   2   >;   1   *;   0   +;   0  <<)
%            Number of predicates  :    2 (   0 usr;   1 prp; 0-2 aty)
%            Number of functors    :    5 (   5 usr;   3 con; 0-2 aty)
%            Number of variables   :  166 (   0 sgn;   0   !;   0   ?;   0   :)

% Comments : 
%------------------------------------------------------------------------------
tff(decl_22,type,
    inverse: $i > $i ).

tff(decl_23,type,
    multiply: ( $i * $i ) > $i ).

tff(decl_24,type,
    a3: $i ).

tff(decl_25,type,
    b3: $i ).

tff(decl_26,type,
    c3: $i ).

cnf(single_axiom,axiom,
    multiply(X1,inverse(multiply(X2,multiply(X3,multiply(multiply(inverse(X3),inverse(multiply(X4,X2))),X1))))) = X4,
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',single_axiom) ).

cnf(prove_these_axioms_3,negated_conjecture,
    multiply(multiply(a3,b3),c3) != multiply(a3,multiply(b3,c3)),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',prove_these_axioms_3) ).

cnf(c_0_2,axiom,
    multiply(X1,inverse(multiply(X2,multiply(X3,multiply(multiply(inverse(X3),inverse(multiply(X4,X2))),X1))))) = X4,
    single_axiom ).

cnf(c_0_3,plain,
    multiply(X1,inverse(multiply(multiply(X2,multiply(multiply(inverse(X2),inverse(multiply(X3,X4))),inverse(X5))),multiply(X5,multiply(X3,X1))))) = X4,
    inference(spm,[status(thm)],[c_0_2,c_0_2]) ).

cnf(c_0_4,plain,
    multiply(X1,inverse(multiply(multiply(X2,multiply(X3,inverse(X4))),multiply(X4,multiply(X5,X1))))) = multiply(X6,multiply(multiply(inverse(X6),inverse(multiply(X3,X5))),inverse(X2))),
    inference(spm,[status(thm)],[c_0_2,c_0_3]) ).

cnf(c_0_5,plain,
    multiply(inverse(multiply(X1,multiply(X2,multiply(multiply(inverse(X2),inverse(multiply(X3,X1))),multiply(inverse(X4),inverse(multiply(X5,X6))))))),inverse(multiply(X6,multiply(X4,X3)))) = X5,
    inference(spm,[status(thm)],[c_0_2,c_0_2]) ).

cnf(c_0_6,plain,
    multiply(X1,multiply(multiply(inverse(X1),inverse(multiply(X2,multiply(inverse(X3),inverse(multiply(X4,multiply(X5,multiply(X2,inverse(X3))))))))),inverse(X5))) = X4,
    inference(spm,[status(thm)],[c_0_2,c_0_4]) ).

cnf(c_0_7,plain,
    multiply(X1,inverse(multiply(inverse(multiply(X2,multiply(X3,X4))),multiply(X5,multiply(multiply(inverse(X5),inverse(X6)),X1))))) = inverse(multiply(X7,multiply(X8,multiply(multiply(inverse(X8),inverse(multiply(X4,X7))),multiply(inverse(X3),inverse(multiply(X6,X2))))))),
    inference(spm,[status(thm)],[c_0_2,c_0_5]) ).

cnf(c_0_8,plain,
    multiply(inverse(X1),inverse(multiply(multiply(inverse(X2),inverse(multiply(X3,multiply(X1,multiply(X4,inverse(X2)))))),X3))) = X4,
    inference(spm,[status(thm)],[c_0_2,c_0_6]) ).

cnf(c_0_9,plain,
    multiply(multiply(a3,inverse(multiply(inverse(multiply(X1,multiply(X2,X3))),multiply(a3,multiply(multiply(inverse(a3),inverse(X4)),a3))))),inverse(multiply(X1,multiply(X2,X3)))) = X4,
    inference(rw,[status(thm)],[c_0_5,c_0_7]) ).

cnf(c_0_10,plain,
    multiply(X1,multiply(multiply(inverse(X1),inverse(multiply(multiply(inverse(X2),inverse(multiply(X3,X4))),X3))),inverse(X2))) = X4,
    inference(spm,[status(thm)],[c_0_6,c_0_2]) ).

cnf(c_0_11,plain,
    multiply(X1,inverse(multiply(X2,multiply(X3,multiply(X4,X1))))) = multiply(inverse(X5),inverse(multiply(X2,multiply(X3,multiply(X4,inverse(X5)))))),
    inference(spm,[status(thm)],[c_0_2,c_0_8]) ).

cnf(c_0_12,plain,
    multiply(multiply(a3,inverse(multiply(inverse(X1),multiply(a3,multiply(multiply(inverse(a3),inverse(X2)),a3))))),inverse(X1)) = X2,
    inference(spm,[status(thm)],[c_0_9,c_0_10]) ).

cnf(c_0_13,plain,
    multiply(X1,inverse(multiply(X2,multiply(X3,multiply(X4,X1))))) = multiply(X5,inverse(multiply(X2,multiply(X3,multiply(X4,X5))))),
    inference(spm,[status(thm)],[c_0_11,c_0_11]) ).

cnf(c_0_14,plain,
    multiply(X1,inverse(multiply(inverse(multiply(X2,multiply(X3,multiply(multiply(inverse(X3),inverse(multiply(X4,X2))),X5)))),multiply(X6,multiply(multiply(inverse(X6),inverse(X4)),X1))))) = X5,
    inference(spm,[status(thm)],[c_0_2,c_0_2]) ).

cnf(c_0_15,plain,
    multiply(multiply(X1,inverse(multiply(inverse(X2),multiply(a3,multiply(multiply(inverse(a3),inverse(X3)),X1))))),inverse(X2)) = X3,
    inference(spm,[status(thm)],[c_0_12,c_0_13]) ).

cnf(c_0_16,plain,
    multiply(X1,multiply(multiply(inverse(X1),inverse(X2)),inverse(X3))) = multiply(X4,multiply(multiply(inverse(X4),inverse(X2)),inverse(X3))),
    inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_10,c_0_14]),c_0_2]) ).

cnf(c_0_17,plain,
    multiply(inverse(X1),inverse(multiply(multiply(a3,multiply(multiply(inverse(a3),inverse(X2)),inverse(X3))),multiply(X3,X2)))) = inverse(X1),
    inference(spm,[status(thm)],[c_0_2,c_0_15]) ).

cnf(c_0_18,plain,
    multiply(X1,multiply(inverse(X1),inverse(X2))) = multiply(X3,multiply(inverse(X3),inverse(X2))),
    inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_16,c_0_17]),c_0_17]) ).

cnf(c_0_19,plain,
    multiply(X1,inverse(X1)) = multiply(X2,inverse(X2)),
    inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_18,c_0_17]),c_0_17]) ).

cnf(c_0_20,plain,
    multiply(X1,inverse(multiply(inverse(X2),multiply(X3,multiply(multiply(inverse(X3),inverse(multiply(X4,inverse(X4)))),X1))))) = X2,
    inference(spm,[status(thm)],[c_0_2,c_0_19]) ).

cnf(c_0_21,plain,
    multiply(inverse(X1),inverse(multiply(X2,multiply(X3,multiply(multiply(inverse(X3),inverse(multiply(X4,X2))),X4))))) = inverse(X1),
    inference(spm,[status(thm)],[c_0_17,c_0_10]) ).

cnf(c_0_22,plain,
    multiply(X1,multiply(X2,multiply(multiply(inverse(X2),inverse(multiply(multiply(X3,inverse(X3)),X1))),X4))) = X4,
    inference(spm,[status(thm)],[c_0_14,c_0_20]) ).

cnf(c_0_23,plain,
    multiply(inverse(X1),inverse(multiply(X2,inverse(X2)))) = inverse(X1),
    inference(spm,[status(thm)],[c_0_21,c_0_22]) ).

cnf(c_0_24,plain,
    multiply(X1,inverse(multiply(inverse(X2),multiply(X3,multiply(inverse(X3),X1))))) = X2,
    inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_14,c_0_23]),c_0_22]) ).

cnf(c_0_25,plain,
    multiply(X1,multiply(X2,inverse(X2))) = multiply(X3,multiply(inverse(X3),inverse(inverse(X1)))),
    inference(spm,[status(thm)],[c_0_18,c_0_19]) ).

cnf(c_0_26,plain,
    multiply(inverse(inverse(X1)),inverse(multiply(inverse(X2),multiply(X1,multiply(a3,inverse(a3)))))) = X2,
    inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_24,c_0_25]),c_0_25]) ).

cnf(c_0_27,plain,
    multiply(X1,inverse(multiply(multiply(X2,X3),multiply(X4,multiply(inverse(X4),X1))))) = multiply(a3,multiply(multiply(inverse(a3),inverse(X3)),inverse(X2))),
    inference(spm,[status(thm)],[c_0_2,c_0_17]) ).

cnf(c_0_28,plain,
    multiply(X1,inverse(multiply(multiply(X2,multiply(a3,inverse(a3))),multiply(inverse(X2),multiply(X3,X1))))) = inverse(X3),
    inference(spm,[status(thm)],[c_0_2,c_0_26]) ).

cnf(c_0_29,plain,
    multiply(inverse(X1),inverse(multiply(multiply(X2,inverse(multiply(X3,multiply(X1,multiply(X4,X2))))),X3))) = X4,
    inference(spm,[status(thm)],[c_0_8,c_0_11]) ).

cnf(c_0_30,plain,
    multiply(a3,multiply(inverse(a3),inverse(X1))) = inverse(inverse(inverse(X1))),
    inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_27,c_0_28]),c_0_23]) ).

cnf(c_0_31,plain,
    multiply(X1,multiply(multiply(inverse(X1),inverse(multiply(X2,multiply(X3,inverse(multiply(X4,multiply(X5,multiply(X2,X3)))))))),inverse(X5))) = X4,
    inference(spm,[status(thm)],[c_0_10,c_0_29]) ).

cnf(c_0_32,plain,
    multiply(X1,multiply(inverse(X1),inverse(X2))) = inverse(inverse(inverse(X2))),
    inference(spm,[status(thm)],[c_0_18,c_0_30]) ).

cnf(c_0_33,plain,
    inverse(inverse(inverse(inverse(X1)))) = multiply(X1,multiply(a3,inverse(a3))),
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_31,c_0_28]),c_0_23]),c_0_32]) ).

cnf(c_0_34,plain,
    inverse(multiply(X1,multiply(a3,inverse(a3)))) = multiply(inverse(X1),multiply(a3,inverse(a3))),
    inference(spm,[status(thm)],[c_0_33,c_0_33]) ).

cnf(c_0_35,plain,
    multiply(inverse(multiply(X1,inverse(X1))),multiply(X2,multiply(inverse(X2),X3))) = X3,
    inference(spm,[status(thm)],[c_0_22,c_0_23]) ).

cnf(c_0_36,plain,
    multiply(X1,multiply(inverse(X1),multiply(X2,multiply(a3,inverse(a3))))) = multiply(inverse(inverse(X2)),multiply(a3,inverse(a3))),
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_32,c_0_33]),c_0_34]),c_0_34]) ).

cnf(c_0_37,plain,
    multiply(multiply(inverse(multiply(X1,inverse(X1))),multiply(a3,inverse(a3))),multiply(a3,inverse(a3))) = multiply(a3,inverse(a3)),
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_35,c_0_36]),c_0_33]),c_0_34]) ).

cnf(c_0_38,plain,
    inverse(multiply(X1,multiply(X2,inverse(X2)))) = multiply(inverse(X1),multiply(X2,inverse(X2))),
    inference(spm,[status(thm)],[c_0_34,c_0_19]) ).

cnf(c_0_39,plain,
    multiply(inverse(X1),multiply(multiply(a3,inverse(a3)),multiply(a3,inverse(a3)))) = inverse(X1),
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_17,c_0_37]),c_0_23]),c_0_38]),c_0_36]),c_0_33]),c_0_38]),c_0_38]),c_0_38]),c_0_37]) ).

cnf(c_0_40,plain,
    multiply(X1,inverse(X1)) = inverse(inverse(inverse(multiply(X2,inverse(X2))))),
    inference(spm,[status(thm)],[c_0_32,c_0_23]) ).

cnf(c_0_41,plain,
    multiply(inverse(inverse(multiply(a3,inverse(a3)))),inverse(inverse(X1))) = X1,
    inference(spm,[status(thm)],[c_0_26,c_0_39]) ).

cnf(c_0_42,plain,
    inverse(multiply(a3,inverse(a3))) = multiply(a3,inverse(a3)),
    inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_40,c_0_41]),c_0_40]) ).

cnf(c_0_43,plain,
    inverse(multiply(X1,inverse(X1))) = multiply(X1,inverse(X1)),
    inference(spm,[status(thm)],[c_0_42,c_0_19]) ).

cnf(c_0_44,plain,
    multiply(inverse(X1),multiply(X2,inverse(X2))) = inverse(X1),
    inference(rw,[status(thm)],[c_0_23,c_0_43]) ).

cnf(c_0_45,plain,
    multiply(X1,multiply(a3,inverse(a3))) = X1,
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_27,c_0_44]),c_0_24]),c_0_23]),c_0_32]),c_0_33]) ).

cnf(c_0_46,plain,
    inverse(inverse(inverse(inverse(X1)))) = X1,
    inference(rw,[status(thm)],[c_0_33,c_0_45]) ).

cnf(c_0_47,plain,
    multiply(multiply(a3,inverse(a3)),X1) = inverse(inverse(X1)),
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_41,c_0_46]),c_0_43]),c_0_43]) ).

cnf(c_0_48,plain,
    inverse(inverse(inverse(X1))) = inverse(X1),
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_32,c_0_47]),c_0_43]),c_0_47]),c_0_33]),c_0_45]) ).

cnf(c_0_49,plain,
    multiply(X1,multiply(X2,inverse(X2))) = X1,
    inference(spm,[status(thm)],[c_0_45,c_0_19]) ).

cnf(c_0_50,plain,
    inverse(inverse(X1)) = X1,
    inference(rw,[status(thm)],[c_0_46,c_0_48]) ).

cnf(c_0_51,plain,
    multiply(multiply(X1,inverse(X1)),X2) = X2,
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_20,c_0_49]),c_0_23]),c_0_44]),c_0_50]) ).

cnf(c_0_52,plain,
    multiply(X1,multiply(inverse(X1),X2)) = X2,
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_22,c_0_51]),c_0_43]),c_0_51]),c_0_51]) ).

cnf(c_0_53,plain,
    multiply(inverse(multiply(inverse(X1),inverse(multiply(X2,X3)))),inverse(multiply(X3,multiply(X1,multiply(X4,inverse(X4)))))) = X2,
    inference(spm,[status(thm)],[c_0_2,c_0_19]) ).

cnf(c_0_54,plain,
    inverse(multiply(X1,inverse(X2))) = multiply(X2,inverse(X1)),
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_52,c_0_28]),c_0_45]),c_0_52]) ).

cnf(c_0_55,plain,
    multiply(multiply(X1,X2),inverse(X2)) = X1,
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_53,c_0_51]),c_0_43]),c_0_51]),c_0_50]),c_0_49]) ).

cnf(c_0_56,plain,
    multiply(multiply(multiply(X1,X2),X3),inverse(multiply(X2,X3))) = X1,
    inference(rw,[status(thm)],[inference(rw,[status(thm)],[inference(rw,[status(thm)],[c_0_53,c_0_54]),c_0_50]),c_0_49]) ).

cnf(c_0_57,negated_conjecture,
    multiply(multiply(a3,b3),c3) != multiply(a3,multiply(b3,c3)),
    prove_these_axioms_3 ).

cnf(c_0_58,plain,
    multiply(multiply(X1,X2),X3) = multiply(X1,multiply(X2,X3)),
    inference(rw,[status(thm)],[inference(spm,[status(thm)],[c_0_55,c_0_56]),c_0_50]) ).

cnf(c_0_59,negated_conjecture,
    $false,
    inference(cn,[status(thm)],[inference(rw,[status(thm)],[c_0_57,c_0_58])]),
    [proof] ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.11/0.11  % Problem    : GRP438-1 : TPTP v8.1.2. Released v2.6.0.
% 0.11/0.12  % Command    : java -jar /export/starexec/sandbox/solver/bin/mcs_scs.jar %d %s
% 0.12/0.33  % Computer : n023.cluster.edu
% 0.12/0.33  % Model    : x86_64 x86_64
% 0.12/0.33  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.12/0.33  % Memory   : 8042.1875MB
% 0.12/0.33  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.12/0.33  % CPULimit   : 300
% 0.12/0.33  % WCLimit    : 300
% 0.12/0.33  % DateTime   : Mon Aug 28 23:19:40 EDT 2023
% 0.12/0.33  % CPUTime  : 
% 0.18/0.54  start to proof: theBenchmark
% 0.67/0.79  % Version  : CSE_E---1.5
% 0.67/0.79  % Problem  : theBenchmark.p
% 0.67/0.79  % Proof found
% 0.67/0.79  % SZS status Theorem for theBenchmark.p
% 0.67/0.79  % SZS output start Proof
% See solution above
% 0.67/0.79  % Total time : 0.234000 s
% 0.67/0.79  % SZS output end Proof
% 0.67/0.79  % Total time : 0.236000 s
%------------------------------------------------------------------------------