TSTP Solution File: GRP500-1 by SNARK---20120808r022

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : SNARK---20120808r022
% Problem  : GRP500-1 : TPTP v8.1.0. Released v2.6.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : run-snark %s %d

% Computer : n026.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  : 600s
% DateTime : Sat Jul 16 11:39:09 EDT 2022

% Result   : Unsatisfiable 2.20s 2.39s
% Output   : Refutation 2.23s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :   29
%            Number of leaves      :    3
% Syntax   : Number of clauses     :   79 (  79 unt;   0 nHn;   4 RR)
%            Number of literals    :   79 (  78 equ;   3 neg)
%            Maximal clause size   :    1 (   1 avg)
%            Maximal term depth    :   11 (   3 avg)
%            Number of predicates  :    2 (   0 usr;   1 prp; 0-2 aty)
%            Number of functors    :    5 (   5 usr;   2 con; 0-2 aty)
%            Number of variables   :  307 (   0 sgn)

% Comments : 
%------------------------------------------------------------------------------
cnf(single_axiom,axiom,
    double_divide(inverse(X),inverse(double_divide(inverse(double_divide(X,double_divide(Y,Z))),double_divide(U,double_divide(Y,U))))) = Z,
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',single_axiom) ).

cnf(multiply,axiom,
    multiply(X,Y) = inverse(double_divide(Y,X)),
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',multiply) ).

cnf(prove_these_axioms_2,negated_conjecture,
    multiply(multiply(inverse(b2),b2),a2) != a2,
    file('/export/starexec/sandbox/benchmark/theBenchmark.p',prove_these_axioms_2) ).

cnf(4,plain,
    inverse(double_divide(a2,inverse(double_divide(b2,inverse(b2))))) != a2,
    inference('REWRITE',[status(thm)],[prove_these_axioms_2,multiply,theory(equality)]) ).

cnf(5,plain,
    double_divide(inverse(X),inverse(double_divide(inverse(double_divide(X,Y)),double_divide(Z,double_divide(inverse(U),Z))))) = inverse(double_divide(inverse(double_divide(U,double_divide(V,Y))),double_divide(W,double_divide(V,W)))),
    inference('PARAMODULATE',[status(thm)],[single_axiom,single_axiom,theory(equality)]) ).

cnf(7,plain,
    inverse(double_divide(inverse(double_divide(X,double_divide(Y,double_divide(inverse(X),Z)))),double_divide(U,double_divide(Y,U)))) = Z,
    inference('PARAMODULATE',[status(thm)],[single_axiom,5,theory(equality)]) ).

cnf(8,plain,
    double_divide(inverse(X),double_divide(inverse(Y),inverse(double_divide(inverse(double_divide(Y,Z)),double_divide(U,double_divide(inverse(X),U)))))) = Z,
    inference('PARAMODULATE',[status(thm)],[single_axiom,5,theory(equality)]) ).

cnf(11,plain,
    double_divide(inverse(inverse(double_divide(X,double_divide(Y,Z)))),inverse(double_divide(double_divide(inverse(U),inverse(double_divide(inverse(double_divide(U,Z)),double_divide(V,double_divide(inverse(X),V))))),double_divide(W,double_divide(X1,W))))) = double_divide(Y,X1),
    inference('PARAMODULATE',[status(thm)],[single_axiom,5,theory(equality)]) ).

cnf(20,plain,
    double_divide(X,inverse(Y)) = inverse(double_divide(inverse(double_divide(Y,double_divide(Z,double_divide(U,double_divide(X,U))))),double_divide(V,double_divide(Z,V)))),
    inference('REWRITE',[status(thm)],[inference('PARAMODULATE',[status(thm)],[5,5,theory(equality)]),11,theory(equality)]) ).

cnf(26,plain,
    double_divide(inverse(inverse(double_divide(X,double_divide(Y,double_divide(inverse(X),Z))))),inverse(double_divide(Z,double_divide(U,double_divide(V,U))))) = double_divide(Y,V),
    inference('PARAMODULATE',[status(thm)],[single_axiom,7,theory(equality)]) ).

cnf(36,plain,
    double_divide(X,double_divide(inverse(Y),inverse(double_divide(inverse(double_divide(Y,Z)),double_divide(U,double_divide(X,U)))))) = Z,
    inference('PARAMODULATE',[status(thm)],[8,7,theory(equality)]) ).

cnf(37,plain,
    inverse(double_divide(inverse(double_divide(X,Y)),double_divide(Z,double_divide(U,Z)))) = inverse(double_divide(inverse(double_divide(X,Y)),double_divide(V,double_divide(U,V)))),
    inference('PARAMODULATE',[status(thm)],[7,36,theory(equality)]) ).

cnf(42,plain,
    double_divide(X,double_divide(Y,X)) = double_divide(Z,double_divide(Y,Z)),
    inference('REWRITE',[status(thm)],[inference('PARAMODULATE',[status(thm)],[36,7,theory(equality)]),26,theory(equality)]) ).

cnf(56,plain,
    double_divide(X,double_divide(Y,X)) = double_divide(double_divide(Z,Y),double_divide(U,double_divide(Z,U))),
    inference('PARAMODULATE',[status(thm)],[42,42,theory(equality)]) ).

cnf(57,plain,
    double_divide(inverse(X),inverse(double_divide(inverse(double_divide(Y,double_divide(Z,Y))),double_divide(U,double_divide(Z,U))))) = X,
    inference('PARAMODULATE',[status(thm)],[single_axiom,42,theory(equality)]) ).

cnf(58,plain,
    inverse(double_divide(inverse(double_divide(X,double_divide(Y,double_divide(inverse(X),Y)))),double_divide(Z,double_divide(U,Z)))) = U,
    inference('PARAMODULATE',[status(thm)],[7,42,theory(equality)]) ).

cnf(73,plain,
    double_divide(X,double_divide(double_divide(Y,Z),X)) = double_divide(double_divide(U,double_divide(Y,U)),double_divide(V,double_divide(Z,V))),
    inference('PARAMODULATE',[status(thm)],[42,56,theory(equality)]) ).

cnf(82,plain,
    inverse(double_divide(inverse(double_divide(X,double_divide(Y,double_divide(Z,Y)))),double_divide(U,double_divide(double_divide(V,Z),U)))) = double_divide(V,inverse(X)),
    inference('PARAMODULATE',[status(thm)],[7,56,theory(equality)]) ).

cnf(146,plain,
    double_divide(inverse(X),double_divide(Y,inverse(double_divide(Z,double_divide(Y,Z))))) = X,
    inference('REWRITE',[status(thm)],[inference('PARAMODULATE',[status(thm)],[single_axiom,73,theory(equality)]),82,theory(equality)]) ).

cnf(173,plain,
    inverse(double_divide(inverse(double_divide(X,double_divide(Y,double_divide(double_divide(Z,double_divide(U,Z)),double_divide(V,double_divide(W,V)))))),double_divide(X1,double_divide(Y,X1)))) = double_divide(double_divide(U,W),inverse(X)),
    inference('PARAMODULATE',[status(thm)],[7,73,theory(equality)]) ).

cnf(189,plain,
    double_divide(X,double_divide(inverse(Y),X)) = double_divide(double_divide(Z,inverse(double_divide(U,double_divide(Z,U)))),Y),
    inference('PARAMODULATE',[status(thm)],[42,146,theory(equality)]) ).

cnf(190,plain,
    double_divide(inverse(X),double_divide(Y,inverse(double_divide(double_divide(Z,Y),double_divide(U,double_divide(Z,U)))))) = X,
    inference('PARAMODULATE',[status(thm)],[146,42,theory(equality)]) ).

cnf(368,plain,
    inverse(double_divide(inverse(double_divide(X,double_divide(Y,double_divide(inverse(X),Y)))),double_divide(inverse(double_divide(inverse(double_divide(Z,U)),double_divide(V,double_divide(inverse(W),V)))),inverse(double_divide(inverse(double_divide(W,double_divide(X1,U))),double_divide(Y1,double_divide(X1,Y1))))))) = inverse(Z),
    inference('PARAMODULATE',[status(thm)],[58,5,theory(equality)]) ).

cnf(437,plain,
    double_divide(X,double_divide(inverse(Y),inverse(double_divide(inverse(double_divide(double_divide(Z,inverse(double_divide(U,double_divide(Z,U)))),V)),double_divide(W,double_divide(X,W)))))) = double_divide(inverse(V),Y),
    inference('PARAMODULATE',[status(thm)],[36,189,theory(equality)]) ).

cnf(449,plain,
    inverse(double_divide(X,double_divide(Y,inverse(double_divide(Z,double_divide(Y,Z)))))) = X,
    inference('REWRITE',[status(thm)],[inference('PARAMODULATE',[status(thm)],[58,189,theory(equality)]),58,theory(equality)]) ).

cnf(467,plain,
    inverse(double_divide(X,double_divide(Y,X))) = inverse(double_divide(Z,double_divide(Y,Z))),
    inference('PARAMODULATE',[status(thm)],[449,42,theory(equality)]) ).

cnf(468,plain,
    inverse(double_divide(double_divide(X,Y),double_divide(Z,double_divide(X,Z)))) = inverse(double_divide(U,double_divide(Y,U))),
    inference('PARAMODULATE',[status(thm)],[449,56,theory(equality)]) ).

cnf(470,plain,
    inverse(double_divide(X,double_divide(Y,inverse(double_divide(double_divide(Z,Y),double_divide(U,double_divide(Z,U))))))) = X,
    inference('PARAMODULATE',[status(thm)],[449,42,theory(equality)]) ).

cnf(472,plain,
    inverse(double_divide(double_divide(X,inverse(double_divide(Y,double_divide(X,Y)))),Z)) = inverse(double_divide(U,double_divide(inverse(Z),U))),
    inference('PARAMODULATE',[status(thm)],[449,189,theory(equality)]) ).

cnf(559,plain,
    double_divide(double_divide(X,double_divide(Y,X)),inverse(Z)) = double_divide(double_divide(U,double_divide(Y,U)),inverse(Z)),
    inference('REWRITE',[status(thm)],[inference('PARAMODULATE',[status(thm)],[20,73,theory(equality)]),173,theory(equality)]) ).

cnf(619,plain,
    double_divide(double_divide(X,double_divide(Y,X)),Z) = double_divide(double_divide(U,double_divide(Y,U)),Z),
    inference('PARAMODULATE',[status(thm)],[559,7,theory(equality)]) ).

cnf(972,plain,
    inverse(double_divide(X,double_divide(Y,double_divide(Z,Y)))) = inverse(double_divide(X,double_divide(U,double_divide(Z,U)))),
    inference('PARAMODULATE',[status(thm)],[37,7,theory(equality)]) ).

cnf(974,plain,
    inverse(double_divide(X,double_divide(double_divide(Y,Z),double_divide(U,double_divide(Y,U))))) = inverse(double_divide(X,double_divide(V,double_divide(Z,V)))),
    inference('PARAMODULATE',[status(thm)],[972,42,theory(equality)]) ).

cnf(1015,plain,
    inverse(double_divide(X,double_divide(inverse(Y),X))) = inverse(double_divide(double_divide(Z,inverse(double_divide(double_divide(U,Z),double_divide(V,double_divide(U,V))))),Y)),
    inference('PARAMODULATE',[status(thm)],[467,190,theory(equality)]) ).

cnf(1058,plain,
    double_divide(X,double_divide(Y,X)) = double_divide(double_divide(Z,double_divide(inverse(Y),Z)),double_divide(U,double_divide(double_divide(V,inverse(double_divide(double_divide(W,V),double_divide(X1,double_divide(W,X1))))),U))),
    inference('PARAMODULATE',[status(thm)],[73,190,theory(equality)]) ).

cnf(1110,plain,
    inverse(double_divide(double_divide(X,inverse(Y)),double_divide(Z,double_divide(X,Z)))) = inverse(double_divide(double_divide(U,inverse(double_divide(double_divide(V,U),double_divide(W,double_divide(V,W))))),Y)),
    inference('PARAMODULATE',[status(thm)],[468,190,theory(equality)]) ).

cnf(1156,plain,
    inverse(double_divide(double_divide(X,inverse(Y)),double_divide(Z,double_divide(X,Z)))) = inverse(double_divide(inverse(double_divide(inverse(double_divide(Y,U)),double_divide(V,double_divide(inverse(W),V)))),inverse(double_divide(inverse(double_divide(W,double_divide(X1,U))),double_divide(Y1,double_divide(X1,Y1)))))),
    inference('PARAMODULATE',[status(thm)],[468,5,theory(equality)]) ).

cnf(1661,plain,
    inverse(double_divide(X,double_divide(Y,double_divide(Z,double_divide(inverse(Y),Z))))) = inverse(double_divide(X,double_divide(U,double_divide(double_divide(V,inverse(double_divide(double_divide(W,V),double_divide(X1,double_divide(W,X1))))),U)))),
    inference('PARAMODULATE',[status(thm)],[974,190,theory(equality)]) ).

cnf(1689,plain,
    double_divide(X,Y) = inverse(double_divide(Z,double_divide(X,double_divide(inverse(Z),inverse(double_divide(U,double_divide(Y,U))))))),
    inference('PARAMODULATE',[status(thm)],[57,26,theory(equality)]) ).

cnf(1831,plain,
    double_divide(inverse(X),inverse(Y)) = inverse(double_divide(Y,X)),
    inference('PARAMODULATE',[status(thm)],[1689,146,theory(equality)]) ).

cnf(2051,plain,
    double_divide(X,inverse(double_divide(double_divide(inverse(double_divide(double_divide(Y,inverse(double_divide(Z,double_divide(Y,Z)))),U)),double_divide(V,double_divide(X,V))),W))) = double_divide(inverse(U),W),
    inference('REWRITE',[status(thm)],[437,1831,theory(equality)]) ).

cnf(2182,plain,
    double_divide(X,inverse(double_divide(double_divide(inverse(double_divide(Y,Z)),double_divide(U,double_divide(X,U))),Y))) = Z,
    inference('REWRITE',[status(thm)],[36,1831,theory(equality)]) ).

cnf(2205,plain,
    inverse(inverse(double_divide(double_divide(double_divide(inverse(double_divide(X,double_divide(Y,Z))),double_divide(U,double_divide(Y,U))),double_divide(inverse(double_divide(V,Z)),double_divide(W,double_divide(inverse(X),W)))),double_divide(X1,double_divide(Y1,double_divide(inverse(X1),Y1)))))) = inverse(V),
    inference('REWRITE',[status(thm)],[368,1831,theory(equality)]) ).

cnf(2214,plain,
    inverse(double_divide(double_divide(X,inverse(Y)),double_divide(Z,double_divide(X,Z)))) = inverse(inverse(double_divide(double_divide(inverse(double_divide(U,double_divide(V,W))),double_divide(X1,double_divide(V,X1))),double_divide(inverse(double_divide(Y,W)),double_divide(Y1,double_divide(inverse(U),Y1)))))),
    inference('REWRITE',[status(thm)],[1156,1831,theory(equality)]) ).

cnf(2252,plain,
    inverse(double_divide(double_divide(inverse(double_divide(X,double_divide(Y,Z))),double_divide(U,double_divide(Y,U))),X)) = Z,
    inference('REWRITE',[status(thm)],[single_axiom,1831,theory(equality)]) ).

cnf(2338,plain,
    double_divide(X,double_divide(inverse(Y),X)) = inverse(double_divide(double_divide(Z,Y),Z)),
    inference('REWRITE',[status(thm)],[inference('PARAMODULATE',[status(thm)],[42,1831,theory(equality)]),1831,theory(equality)]) ).

cnf(2371,plain,
    double_divide(inverse(X),Y) = inverse(double_divide(double_divide(Y,double_divide(Z,inverse(double_divide(U,double_divide(Z,U))))),X)),
    inference('PARAMODULATE',[status(thm)],[1831,449,theory(equality)]) ).

cnf(2412,plain,
    inverse(double_divide(double_divide(X,Y),X)) = inverse(double_divide(double_divide(Z,Y),Z)),
    inference('PARAMODULATE',[status(thm)],[2338,2338,theory(equality)]) ).

cnf(2521,plain,
    double_divide(X,double_divide(double_divide(Y,inverse(Z)),X)) = inverse(double_divide(double_divide(U,double_divide(inverse(double_divide(Z,double_divide(V,double_divide(W,double_divide(Y,W))))),double_divide(X1,double_divide(V,X1)))),U)),
    inference('PARAMODULATE',[status(thm)],[2338,20,theory(equality)]) ).

cnf(2540,plain,
    double_divide(double_divide(X,Y),X) = double_divide(double_divide(Z,Y),Z),
    inference('REWRITE',[status(thm)],[inference('PARAMODULATE',[status(thm)],[146,2412,theory(equality)]),146,theory(equality)]) ).

cnf(2543,plain,
    inverse(double_divide(X,inverse(X))) = double_divide(inverse(Y),Y),
    inference('REWRITE',[status(thm)],[inference('PARAMODULATE',[status(thm)],[2412,146,theory(equality)]),2371,theory(equality)]) ).

cnf(2575,plain,
    double_divide(double_divide(X,double_divide(Y,Z)),X) = double_divide(double_divide(U,double_divide(Y,U)),Z),
    inference('PARAMODULATE',[status(thm)],[619,2540,theory(equality)]) ).

cnf(2666,plain,
    double_divide(inverse(X),X) = double_divide(inverse(Y),Y),
    inference('PARAMODULATE',[status(thm)],[2543,2543,theory(equality)]) ).

cnf(2677,plain,
    double_divide(double_divide(inverse(X),X),inverse(Y)) = inverse(double_divide(Y,double_divide(Z,inverse(Z)))),
    inference('PARAMODULATE',[status(thm)],[1831,2543,theory(equality)]) ).

cnf(2680,plain,
    inverse(double_divide(X,double_divide(inverse(Y),X))) = inverse(double_divide(Y,inverse(double_divide(Z,inverse(Z))))),
    inference('PARAMODULATE',[status(thm)],[467,2543,theory(equality)]) ).

cnf(2746,plain,
    double_divide(X,inverse(double_divide(double_divide(inverse(inverse(double_divide(Y,inverse(Y)))),double_divide(Z,double_divide(X,Z))),inverse(U)))) = U,
    inference('PARAMODULATE',[status(thm)],[2182,2543,theory(equality)]) ).

cnf(2751,plain,
    inverse(double_divide(inverse(double_divide(X,inverse(double_divide(Y,inverse(Y))))),double_divide(Z,double_divide(inverse(double_divide(inverse(X),U)),Z)))) = U,
    inference('PARAMODULATE',[status(thm)],[7,2543,theory(equality)]) ).

cnf(2788,plain,
    inverse(double_divide(double_divide(inverse(X),X),Y)) = Y,
    inference('PARAMODULATE',[status(thm)],[2252,2666,theory(equality)]) ).

cnf(2791,plain,
    double_divide(double_divide(inverse(X),X),inverse(Y)) = double_divide(double_divide(Z,Y),Z),
    inference('PARAMODULATE',[status(thm)],[2540,2666,theory(equality)]) ).

cnf(2796,plain,
    inverse(X) = inverse(double_divide(double_divide(Y,X),Y)),
    inference('REWRITE',[status(thm)],[inference('PARAMODULATE',[status(thm)],[2412,2666,theory(equality)]),2788,theory(equality)]) ).

cnf(2801,plain,
    double_divide(X,double_divide(double_divide(Y,inverse(Z)),X)) = double_divide(Y,inverse(Z)),
    inference('REWRITE',[status(thm)],[2521,20,2796,theory(equality)]) ).

cnf(2805,plain,
    double_divide(X,double_divide(Y,X)) = double_divide(double_divide(Z,double_divide(inverse(Y),Z)),double_divide(U,inverse(double_divide(double_divide(V,U),double_divide(W,double_divide(V,W)))))),
    inference('REWRITE',[status(thm)],[1058,2801,theory(equality)]) ).

cnf(2807,plain,
    inverse(double_divide(X,double_divide(Y,double_divide(Z,double_divide(inverse(Y),Z))))) = X,
    inference('REWRITE',[status(thm)],[1661,470,2801,theory(equality)]) ).

cnf(2808,plain,
    inverse(double_divide(double_divide(inverse(double_divide(X,double_divide(Y,Z))),double_divide(U,double_divide(Y,U))),double_divide(inverse(double_divide(V,Z)),double_divide(W,double_divide(inverse(X),W))))) = inverse(V),
    inference('REWRITE',[status(thm)],[2205,2807,theory(equality)]) ).

cnf(2810,plain,
    inverse(double_divide(double_divide(X,inverse(Y)),double_divide(Z,double_divide(X,Z)))) = inverse(inverse(Y)),
    inference('REWRITE',[status(thm)],[2214,2808,theory(equality)]) ).

cnf(2820,plain,
    inverse(inverse(X)) = inverse(double_divide(double_divide(Y,inverse(double_divide(double_divide(Z,Y),double_divide(U,double_divide(Z,U))))),X)),
    inference('REWRITE',[status(thm)],[1110,2810,theory(equality)]) ).

cnf(2829,plain,
    inverse(double_divide(X,double_divide(inverse(Y),X))) = inverse(inverse(Y)),
    inference('REWRITE',[status(thm)],[1015,2820,theory(equality)]) ).

cnf(2844,plain,
    inverse(inverse(X)) = inverse(double_divide(X,inverse(double_divide(Y,inverse(Y))))),
    inference('REWRITE',[status(thm)],[2680,2829,theory(equality)]) ).

cnf(2846,plain,
    inverse(double_divide(inverse(inverse(X)),double_divide(Y,double_divide(inverse(double_divide(inverse(X),Z)),Y)))) = Z,
    inference('REWRITE',[status(thm)],[2751,2844,theory(equality)]) ).

cnf(2848,plain,
    inverse(inverse(a2)) != a2,
    inference('REWRITE',[status(thm)],[4,2844,theory(equality)]) ).

cnf(2854,plain,
    inverse(double_divide(double_divide(X,inverse(double_divide(Y,double_divide(X,Y)))),Z)) = inverse(inverse(Z)),
    inference('REWRITE',[status(thm)],[472,2829,theory(equality)]) ).

cnf(2862,plain,
    double_divide(X,inverse(double_divide(double_divide(inverse(inverse(Y)),double_divide(Z,double_divide(X,Z))),U))) = double_divide(inverse(Y),U),
    inference('REWRITE',[status(thm)],[2051,2854,theory(equality)]) ).

cnf(2864,plain,
    inverse(double_divide(X,double_divide(Y,inverse(Y)))) = X,
    inference('REWRITE',[status(thm)],[2746,1831,2862,theory(equality)]) ).

cnf(2865,plain,
    double_divide(double_divide(inverse(X),X),inverse(Y)) = Y,
    inference('REWRITE',[status(thm)],[2677,2864,theory(equality)]) ).

cnf(2866,plain,
    X = double_divide(double_divide(Y,X),Y),
    inference('REWRITE',[status(thm)],[2791,2865,theory(equality)]) ).

cnf(2880,plain,
    double_divide(X,Y) = double_divide(double_divide(Z,double_divide(X,Z)),Y),
    inference('REWRITE',[status(thm)],[2575,2866,theory(equality)]) ).

cnf(2881,plain,
    double_divide(X,double_divide(Y,X)) = Y,
    inference('REWRITE',[status(thm)],[2805,190,2880,theory(equality)]) ).

cnf(2882,plain,
    inverse(inverse(X)) = X,
    inference('REWRITE',[status(thm)],[2846,2866,1831,2881,theory(equality)]) ).

cnf(2887,plain,
    $false,
    inference('REWRITE',[status(thm)],[2848,2882,theory(equality)]) ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.03/0.13  % Problem  : GRP500-1 : TPTP v8.1.0. Released v2.6.0.
% 0.03/0.14  % Command  : run-snark %s %d
% 0.14/0.35  % Computer : n026.cluster.edu
% 0.14/0.35  % Model    : x86_64 x86_64
% 0.14/0.35  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.14/0.35  % Memory   : 8042.1875MB
% 0.14/0.35  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.14/0.35  % CPULimit : 300
% 0.14/0.35  % WCLimit  : 600
% 0.14/0.35  % DateTime : Mon Jun 13 09:52:05 EDT 2022
% 0.14/0.36  % CPUTime  : 
% 0.21/0.48  /export/starexec/sandbox/benchmark/theBenchmark.p
% 0.21/0.49  * 
% 0.21/0.49  * 
% 0.21/0.50  #<PACKAGE "SNARK-USER">
% 0.21/0.50  * 
% 0.21/0.50  SNARK-TPTP-OPTIONS
% 0.21/0.50  * 
% 0.21/0.50  ((AGENDA-LENGTH-LIMIT NIL) (AGENDA-LENGTH-BEFORE-SIMPLIFICATION-LIMIT NIL)
% 0.21/0.50   (USE-HYPERRESOLUTION T) (USE-UR-RESOLUTION T) (USE-PARAMODULATION T)
% 0.21/0.50   (USE-FACTORING :POS)
% 0.21/0.50   (USE-LITERAL-ORDERING-WITH-HYPERRESOLUTION 'LITERAL-ORDERING-P)
% 0.21/0.50   (USE-LITERAL-ORDERING-WITH-PARAMODULATION 'LITERAL-ORDERING-P)
% 0.21/0.50   (ORDERING-FUNCTIONS>CONSTANTS T) (ASSERT-CONTEXT :CURRENT)
% 0.21/0.50   (RUN-TIME-LIMIT 300) (LISTEN-FOR-COMMANDS NIL)
% 0.21/0.50   (USE-CLOSURE-WHEN-SATISFIABLE T) (PRINT-ROWS-WHEN-GIVEN NIL)
% 0.21/0.50   (PRINT-ROWS-WHEN-DERIVED NIL) (PRINT-UNORIENTABLE-ROWS NIL)
% 0.21/0.50   (PRINT-ROW-WFFS-PRETTILY NIL) (PRINT-FINAL-ROWS :TPTP)
% 0.21/0.50   (PRINT-OPTIONS-WHEN-STARTING NIL) (USE-VARIABLE-NAME-SORTS NIL)
% 0.21/0.50   (USE-PURITY-TEST T) (USE-RELEVANCE-TEST T) (DECLARE-TPTP-SYMBOLS1)
% 0.21/0.50   (DECLARE-TPTP-SYMBOLS2))
% 0.21/0.50  * 
% 0.21/0.50  "."
% 0.21/0.50  * 
% 0.21/0.50  ; Begin refute-file /export/starexec/sandbox/benchmark/theBenchmark.p 2022-06-13T09:52:06
% 0.21/0.50  ; Running SNARK from /davis/home/graph/tptp/Systems/SNARK---20120808r022/Source/snark-system.lisp in SBCL 1.0.12 on n026.cluster.edu at 2022-06-13T09:52:06
% 2.20/2.39  
% 2.20/2.39  
% 2.20/2.39  #||
% 2.20/2.39  % SZS status Unsatisfiable for /export/starexec/sandbox/benchmark/theBenchmark.p
% 2.20/2.39  % SZS output start Refutation
% See solution above
% 2.23/2.41  ||#
% 2.23/2.41  
% 2.23/2.41  ; Summary of computation:
% 2.23/2.41  ;     11026 formulas have been input or derived (from 47 formulas).
% 2.23/2.41  ;      2887 (26%) were retained.  Of these,
% 2.23/2.41  ;         2863 (99%) were simplified or subsumed later,
% 2.23/2.41  ;           24 ( 1%) are still being kept.
% 2.23/2.41  ; 
% 2.23/2.41  ; Run time in seconds excluding printing time:
% 2.23/2.41  ;     0.001   0%   Read assertion file          (1 call)
% 2.23/2.41  ;     0.000   0%   Assert                       (3 calls)
% 2.23/2.41  ;     0.409  22%   Process new row              (8,515 calls)
% 2.23/2.41  ;     0.008   0%   Resolution                   (92 calls)
% 2.23/2.41  ;     0.203  11%   Paramodulation               (46 calls)
% 2.23/2.41  ;     0.596  32%   Forward simplification       (7,767 calls)
% 2.23/2.41  ;     0.589  31%   Backward simplification      (2,886 calls)
% 2.23/2.41  ;     0.032   2%   Ordering                     (14,558 calls)
% 2.23/2.41  ;     0.000   0%   Sortal reasoning             (32 calls)
% 2.23/2.41  ;     0.000   0%   Purity testing               (1 call)
% 2.23/2.41  ;     0.049   3%   Other
% 2.23/2.41  ;     1.887        Total
% 2.23/2.41  ;     1.914        Real time
% 2.23/2.41  ; 
% 2.23/2.41  ; Term-hash-array has 11,480 terms in all.
% 2.23/2.41  ; Feature-vector-row-index has 0 entries (0 at peak, 0 added, 0 deleted).
% 2.23/2.41  ; Feature-vector-row-index has 1 node (1 at peak, 1 added, 0 deleted).
% 2.23/2.41  ; Path-index has 95 entries (9,171 at peak, 12,136 added, 12,041 deleted).
% 2.23/2.41  ; Path-index has 9,635 nodes (13,649 at peak, 15,232 added, 5,597 deleted).
% 2.23/2.41  ; Trie-index has 95 entries (9,171 at peak, 12,136 added, 12,041 deleted).
% 2.23/2.41  ; Trie-index has 487 nodes (52,247 at peak, 70,221 added, 69,734 deleted).
% 2.23/2.41  ; Retrieved 21,137 generalization terms in 70,298 calls.
% 2.23/2.41  ; Retrieved 27,768 instance terms in 2,907 calls.
% 2.23/2.41  ; Retrieved 75,194 unifiable terms in 487 calls.
% 2.23/2.41  ; 
% 2.23/2.41  ; The agenda of backward simplifiable rows to process has 2217 entries:
% 2.23/2.41  ;  2217 with value 0
% 2.23/2.41  ; The agenda of rows to process has 209 entries:
% 2.23/2.41  ;     7 with value 33             24 with value 38              18 with value 43
% 2.23/2.41  ;     4 with value 34             36 with value 39              10 with value 44
% 2.23/2.41  ;    28 with value 35             42 with value 40               6 with value 45
% 2.23/2.41  ;     6 with value 36              8 with value 41               2 with value 46
% 2.23/2.41  ;     4 with value 37             12 with value 42               2 with value 47
% 2.23/2.41  ; The agenda of rows to give has 19 entries:
% 2.23/2.41  ;     1 with value (4 19)          1 with value (4 26)           1 with value (4 32)
% 2.23/2.41  ;     1 with value (4 20)          3 with value (4 27)           1 with value (4 35)
% 2.23/2.41  ;     1 with value (4 23)          2 with value (4 28)           2 with value (4 40)
% 2.23/2.41  ;     1 with value (4 24)          2 with value (4 31)           2 with value (4 41)
% 2.23/2.41  ;     1 with value (4 25)
% 2.23/2.41  Evaluation took:
% 2.23/2.41    1.915 seconds of real time
% 2.23/2.41    1.798964 seconds of user run time
% 2.23/2.41    0.115955 seconds of system run time
% 2.23/2.41    [Run times include 0.296 seconds GC run time.]
% 2.23/2.41    0 calls to %EVAL
% 2.23/2.41    0 page faults and
% 2.23/2.41    133,266,424 bytes consed.
% 2.23/2.41  :PROOF-FOUND
% 2.23/2.41  ; End refute-file /export/starexec/sandbox/benchmark/theBenchmark.p 2022-06-13T09:52:07
% 2.23/2.41  :PROOF-FOUND
% 2.23/2.41  * 
%------------------------------------------------------------------------------