TSTP Solution File: GRP125-4.004 by FDP---0.9.16
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- Process Solution
%------------------------------------------------------------------------------
% File : FDP---0.9.16
% Problem : GRP125-4.004 : TPTP v5.0.0. Bugfixed v1.2.1.
% Transfm : add_equality
% Format : protein
% Command : fdp-casc %s %d
% Computer : art07.cs.miami.edu
% Model : i686 i686
% CPU : Intel(R) Pentium(R) 4 CPU 2.80GHz @ 2793MHz
% Memory : 2018MB
% OS : Linux 2.6.26.8-57.fc8
% CPULimit : 300s
% DateTime : Sun Jan 9 03:51:58 EST 2011
% Result : Satisfiable 3.79s
% Output : Assurance 3.79s
% Verified :
% SZS Type : None (Parsing solution fails)
% Syntax : Number of formulae : 0
% Comments :
%------------------------------------------------------------------------------
%----NO SOLUTION OUTPUT BY SYSTEM
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% FDPLL - A First-Order Davis-Putnam Theorem Prover
% Version 0.9.16 (26/06/2002)
% Proving /tmp/GRP125-4.004+noeq ...
% Done.
% Input File...............: /tmp/GRP125-4.004+noeq.tme
% System...................: Linux art07.cs.miami.edu 2.6.26.8-57.fc8 #1 SMP Thu Dec 18 19:19:45 EST 2008 i686 i686 i386 GNU/Linux
% Automatic mode...........: on
% Time limit...............: 300 seconds
% Current restart interval.: off
% Restart with =-axioms....: off
% Initial interpretation...: [+(_65264)]
% Clause set type..........: Non-Horn, without equality
% Equality transformation..: off
% Non-constant functions...: no
% Term depth settings......: 3/2 (Init/Increment)
% unit_extend..............: on
% splitting type...........: exact
% Final tree statistics:
% Tree for clause set......: as initially given
% # Restarts...............: 0
% Term depth limit.........: 3
% # Splits.................: 34
% # Commits................: 4
% # Unit extension steps...: 81
% # Unit back subsumptions.: 0
% # Branches closed........: 0
% # Level cuts.............: 0
% Time.....................: 3.57 seconds.
% Result...................: SATISFIABLE with model:
% +(product(e_1, e_1, e_1))
% +(product(e_2, e_2, e_2))
% +(product(e_4, e_4, e_4))
% +(product(e_3, e_3, e_3))
% -(product(e_4, e_3, e_3))
% -(product(e_3, e_4, e_4))
% -(product(e_3, e_4, e_3))
% -(product(e_4, e_3, e_4))
% -(product(e_3, e_3, e_4))
% -(product(e_4, e_4, e_3))
% -(product(e_4, e_2, e_2))
% -(product(e_2, e_4, e_4))
% -(product(e_2, e_4, e_2))
% -(product(e_4, e_2, e_4))
% -(product(e_2, e_2, e_4))
% -(product(e_4, e_4, e_2))
% -(product(e_3, e_2, e_2))
% -(product(e_2, e_3, e_3))
% -(product(e_2, e_3, e_2))
% -(product(e_3, e_2, e_3))
% -(product(e_2, e_2, e_3))
% -(product(e_3, e_3, e_2))
% -(product(e_4, e_1, e_1))
% -(product(e_1, e_4, e_4))
% -(product(e_1, e_4, e_1))
% -(product(e_4, e_1, e_4))
% -(product(e_1, e_1, e_4))
% -(product(e_4, e_4, e_1))
% -(product(e_3, e_1, e_1))
% -(product(e_1, e_3, e_3))
% -(product(e_1, e_3, e_1))
% -(product(e_3, e_1, e_3))
% -(product(e_1, e_1, e_3))
% -(product(e_3, e_3, e_1))
% -(product(e_2, e_1, e_1))
% -(product(e_1, e_2, e_2))
% -(product(e_1, e_2, e_1))
% -(product(e_2, e_1, e_2))
% -(product(e_1, e_1, e_2))
% -(product(e_2, e_2, e_1))
% +(equalish(X_65655, X_65655))
% -(equalish(e_4, e_3))
% -(equalish(e_4, e_2))
% -(equalish(e_4, e_1))
% -(equalish(e_3, e_4))
% -(equalish(e_3, e_2))
% -(equalish(e_3, e_1))
% -(equalish(e_2, e_4))
% -(equalish(e_2, e_3))
% -(equalish(e_2, e_1))
% -(equalish(e_1, e_4))
% -(equalish(e_1, e_3))
% -(equalish(e_1, e_2))
% +(product(X_65748, X_65748, X_65748))
% +(group_element(e_4))
% +(group_element(e_3))
% +(group_element(e_2))
% +(group_element(e_1))
% +(_65776)
% -(product(e_3, e_4, Z2_65802))
% -(product(e_4, e_3, Z2_65828))
% -(product(e_3, e_3, Z2_65854))
% -(product(e_4, e_4, Z2_65880))
% -(product(e_2, e_4, Z2_65906))
% -(product(e_4, e_2, Z2_65932))
% -(product(e_2, e_2, Z2_65958))
% -(product(e_2, e_3, Z2_65984))
% -(product(e_3, e_2, Z2_66010))
% -(product(e_1, e_4, Z2_66036))
% -(product(e_4, e_1, Z2_66062))
% -(product(e_1, e_1, Z2_66088))
% -(product(e_1, e_3, Z2_66114))
% -(product(e_3, e_1, Z2_66140))
% -(product(e_1, e_2, Z2_66166))
% -(product(e_2, e_1, Z2_66192))
% -(product(Z1_66218, e_3, e_3))
% -(product(Z1_66244, e_4, e_4))
% -(product(Z1_66270, e_2, e_2))
% -(product(Z1_66296, e_1, e_1))
% -(product(e_3, X_66322, Z2_66323))
% -(product(e_4, X_66349, Z2_66350))
% -(product(e_2, X_66376, Z2_66377))
% -(product(e_1, X_66403, Z2_66404))
% -(product(Y_66430, e_3, Z2_66431))
% -(product(Y_66457, e_4, Z2_66458))
% -(product(Y_66484, e_2, Z2_66485))
% -(product(Y_66511, e_1, Z2_66512))
% -(product(X_66538, Y_66539, e_3))
% -(product(X_66565, Y_66566, e_2))
% -(product(X_66592, Y_66593, e_1))
% -(product(Y_66619, X_66620, e_4))
% +(product(e_4, e_1, e_3))
% +(product(e_1, e_3, e_4))
% -(product(e_1, e_3, e_2))
% -(product(e_4, e_2, e_3))
% -(product(e_1, e_2, e_4))
% -(product(e_2, e_3, e_4))
% -(product(e_2, e_1, e_3))
% -(product(e_4, e_1, e_2))
% +(product(e_4, e_3, e_2))
% +(product(e_2, e_3, e_1))
% +(product(e_4, e_2, e_1))
% +(product(e_1, e_4, e_2))
% +(product(e_1, e_2, e_3))
% +(product(e_2, e_4, e_3))
% +(product(e_3, e_1, e_2))
% +(product(e_3, e_2, e_4))
% +(product(e_2, e_1, e_4))
% -(product(e_4, e_3, e_1))
% -(product(e_2, e_4, e_1))
% -(product(e_3, e_2, e_1))
% -(product(e_3, e_4, e_2))
% -(product(e_1, e_4, e_3))
% -(product(e_3, e_1, e_4))
% +(product(e_3, e_4, e_1))
% -(group_element(Y_66853))
%
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