TSTP Solution File: GEO197+3 by PyRes---1.3

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : PyRes---1.3
% Problem  : GEO197+3 : TPTP v8.1.0. Released v4.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : pyres-fof.py -tifbsVp -nlargest -HPickGiven5 %s

% Computer : n017.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 05:59:10 EDT 2022

% Result   : Theorem 15.16s 15.39s
% Output   : Refutation 15.16s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.08/0.13  % Problem  : GEO197+3 : TPTP v8.1.0. Released v4.0.0.
% 0.08/0.14  % Command  : pyres-fof.py -tifbsVp -nlargest -HPickGiven5 %s
% 0.13/0.35  % Computer : n017.cluster.edu
% 0.13/0.35  % Model    : x86_64 x86_64
% 0.13/0.35  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.13/0.35  % Memory   : 8042.1875MB
% 0.13/0.35  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.13/0.35  % CPULimit : 300
% 0.13/0.35  % WCLimit  : 600
% 0.13/0.35  % DateTime : Fri Jun 17 16:41:27 EDT 2022
% 0.13/0.36  % CPUTime  : 
% 15.16/15.39  # Version:  1.3
% 15.16/15.39  # SZS status Theorem
% 15.16/15.39  # SZS output start CNFRefutation
% 15.16/15.39  fof(con,conjecture,(![X]:(![Y]:(![Z]:((((convergent_lines(X,Y)&convergent_lines(Z,Y))&convergent_lines(X,Z))&incident_point_and_line(intersection_point(X,Y),Z))=>incident_point_and_line(intersection_point(Z,Y),X))))),input).
% 15.16/15.39  fof(c0,negated_conjecture,(~(![X]:(![Y]:(![Z]:((((convergent_lines(X,Y)&convergent_lines(Z,Y))&convergent_lines(X,Z))&incident_point_and_line(intersection_point(X,Y),Z))=>incident_point_and_line(intersection_point(Z,Y),X)))))),inference(assume_negation,status(cth),[con])).
% 15.16/15.39  fof(c1,negated_conjecture,(?[X]:(?[Y]:(?[Z]:((((convergent_lines(X,Y)&convergent_lines(Z,Y))&convergent_lines(X,Z))&incident_point_and_line(intersection_point(X,Y),Z))&~incident_point_and_line(intersection_point(Z,Y),X))))),inference(fof_nnf,status(thm),[c0])).
% 15.16/15.39  fof(c2,negated_conjecture,(?[X2]:(?[X3]:(?[X4]:((((convergent_lines(X2,X3)&convergent_lines(X4,X3))&convergent_lines(X2,X4))&incident_point_and_line(intersection_point(X2,X3),X4))&~incident_point_and_line(intersection_point(X4,X3),X2))))),inference(variable_rename,status(thm),[c1])).
% 15.16/15.39  fof(c3,negated_conjecture,((((convergent_lines(skolem0001,skolem0002)&convergent_lines(skolem0003,skolem0002))&convergent_lines(skolem0001,skolem0003))&incident_point_and_line(intersection_point(skolem0001,skolem0002),skolem0003))&~incident_point_and_line(intersection_point(skolem0003,skolem0002),skolem0001)),inference(skolemize,status(esa),[c2])).
% 15.16/15.39  cnf(c8,negated_conjecture,~incident_point_and_line(intersection_point(skolem0003,skolem0002),skolem0001),inference(split_conjunct,status(thm),[c3])).
% 15.16/15.39  fof(cp1,axiom,(![X]:(![Y]:(~convergent_lines(parallel_through_point(Y,X),Y)))),input).
% 15.16/15.39  fof(c100,axiom,(![X]:(![Y]:~convergent_lines(parallel_through_point(Y,X),Y))),inference(fof_simplification,status(thm),[cp1])).
% 15.16/15.39  fof(c101,axiom,(![X59]:(![X60]:~convergent_lines(parallel_through_point(X60,X59),X60))),inference(variable_rename,status(thm),[c100])).
% 15.16/15.39  cnf(c102,axiom,~convergent_lines(parallel_through_point(X106,X105),X106),inference(split_conjunct,status(thm),[c101])).
% 15.16/15.39  fof(ax2,axiom,(![X]:(![Y]:(equal_lines(X,Y)<=>(~distinct_lines(X,Y))))),input).
% 15.16/15.39  fof(c30,axiom,(![X]:(![Y]:(equal_lines(X,Y)<=>~distinct_lines(X,Y)))),inference(fof_simplification,status(thm),[ax2])).
% 15.16/15.39  fof(c31,axiom,(![X]:(![Y]:((~equal_lines(X,Y)|~distinct_lines(X,Y))&(distinct_lines(X,Y)|equal_lines(X,Y))))),inference(fof_nnf,status(thm),[c30])).
% 15.16/15.39  fof(c32,axiom,((![X]:(![Y]:(~equal_lines(X,Y)|~distinct_lines(X,Y))))&(![X]:(![Y]:(distinct_lines(X,Y)|equal_lines(X,Y))))),inference(shift_quantors,status(thm),[c31])).
% 15.16/15.39  fof(c34,axiom,(![X17]:(![X18]:(![X19]:(![X20]:((~equal_lines(X17,X18)|~distinct_lines(X17,X18))&(distinct_lines(X19,X20)|equal_lines(X19,X20))))))),inference(shift_quantors,status(thm),[fof(c33,axiom,((![X17]:(![X18]:(~equal_lines(X17,X18)|~distinct_lines(X17,X18))))&(![X19]:(![X20]:(distinct_lines(X19,X20)|equal_lines(X19,X20))))),inference(variable_rename,status(thm),[c32])).])).
% 15.16/15.39  cnf(c36,axiom,distinct_lines(X131,X130)|equal_lines(X131,X130),inference(split_conjunct,status(thm),[c34])).
% 15.16/15.39  fof(p1,axiom,(![X]:(![Y]:(distinct_lines(X,Y)=>convergent_lines(X,Y)))),input).
% 15.16/15.39  fof(c103,axiom,(![X]:(![Y]:(~distinct_lines(X,Y)|convergent_lines(X,Y)))),inference(fof_nnf,status(thm),[p1])).
% 15.16/15.39  fof(c104,axiom,(![X61]:(![X62]:(~distinct_lines(X61,X62)|convergent_lines(X61,X62)))),inference(variable_rename,status(thm),[c103])).
% 15.16/15.39  cnf(c105,axiom,~distinct_lines(X163,X164)|convergent_lines(X163,X164),inference(split_conjunct,status(thm),[c104])).
% 15.16/15.39  cnf(c200,plain,convergent_lines(X190,X189)|equal_lines(X190,X189),inference(resolution,status(thm),[c105, c36])).
% 15.16/15.39  cnf(c217,plain,equal_lines(parallel_through_point(X193,X192),X193),inference(resolution,status(thm),[c200, c102])).
% 15.16/15.39  cnf(c35,axiom,~equal_lines(X128,X129)|~distinct_lines(X128,X129),inference(split_conjunct,status(thm),[c34])).
% 15.16/15.39  fof(apart3,axiom,(![X]:(~convergent_lines(X,X))),input).
% 15.16/15.39  fof(c155,axiom,(![X]:~convergent_lines(X,X)),inference(fof_simplification,status(thm),[apart3])).
% 15.16/15.39  fof(c156,axiom,(![X93]:~convergent_lines(X93,X93)),inference(variable_rename,status(thm),[c155])).
% 15.16/15.39  cnf(c157,axiom,~convergent_lines(X96,X96),inference(split_conjunct,status(thm),[c156])).
% 15.16/15.39  fof(ceq3,axiom,(![X]:(![Y]:(![Z]:(convergent_lines(X,Y)=>(distinct_lines(Y,Z)|convergent_lines(X,Z)))))),input).
% 15.16/15.39  fof(c106,axiom,(![X]:(![Y]:(![Z]:(~convergent_lines(X,Y)|(distinct_lines(Y,Z)|convergent_lines(X,Z)))))),inference(fof_nnf,status(thm),[ceq3])).
% 15.16/15.39  fof(c107,axiom,(![X]:(![Y]:(~convergent_lines(X,Y)|(![Z]:(distinct_lines(Y,Z)|convergent_lines(X,Z)))))),inference(shift_quantors,status(thm),[c106])).
% 15.16/15.39  fof(c109,axiom,(![X63]:(![X64]:(![X65]:(~convergent_lines(X63,X64)|(distinct_lines(X64,X65)|convergent_lines(X63,X65)))))),inference(shift_quantors,status(thm),[fof(c108,axiom,(![X63]:(![X64]:(~convergent_lines(X63,X64)|(![X65]:(distinct_lines(X64,X65)|convergent_lines(X63,X65)))))),inference(variable_rename,status(thm),[c107])).])).
% 15.16/15.39  cnf(c110,axiom,~convergent_lines(X282,X283)|distinct_lines(X283,X281)|convergent_lines(X282,X281),inference(split_conjunct,status(thm),[c109])).
% 15.16/15.39  cnf(c371,plain,distinct_lines(X1023,X1025)|convergent_lines(X1024,X1025)|equal_lines(X1024,X1023),inference(resolution,status(thm),[c110, c200])).
% 15.16/15.39  cnf(c2016,plain,distinct_lines(X1031,X1030)|equal_lines(X1030,X1031),inference(resolution,status(thm),[c371, c157])).
% 15.16/15.39  cnf(c2050,plain,equal_lines(X1042,X1041)|~equal_lines(X1041,X1042),inference(resolution,status(thm),[c2016, c35])).
% 15.16/15.39  cnf(c2078,plain,equal_lines(X1045,parallel_through_point(X1045,X1044)),inference(resolution,status(thm),[c2050, c217])).
% 15.16/15.39  fof(cp2,axiom,(![X]:(![Y]:(~apart_point_and_line(X,parallel_through_point(Y,X))))),input).
% 15.16/15.39  fof(c97,axiom,(![X]:(![Y]:~apart_point_and_line(X,parallel_through_point(Y,X)))),inference(fof_simplification,status(thm),[cp2])).
% 15.16/15.39  fof(c98,axiom,(![X57]:(![X58]:~apart_point_and_line(X57,parallel_through_point(X58,X57)))),inference(variable_rename,status(thm),[c97])).
% 15.16/15.39  cnf(c99,axiom,~apart_point_and_line(X103,parallel_through_point(X104,X103)),inference(split_conjunct,status(thm),[c98])).
% 15.16/15.39  fof(a4,axiom,(![X]:(![Y]:(incident_point_and_line(X,Y)<=>(~apart_point_and_line(X,Y))))),input).
% 15.16/15.39  fof(c16,axiom,(![X]:(![Y]:(incident_point_and_line(X,Y)<=>~apart_point_and_line(X,Y)))),inference(fof_simplification,status(thm),[a4])).
% 15.16/15.39  fof(c17,axiom,(![X]:(![Y]:((~incident_point_and_line(X,Y)|~apart_point_and_line(X,Y))&(apart_point_and_line(X,Y)|incident_point_and_line(X,Y))))),inference(fof_nnf,status(thm),[c16])).
% 15.16/15.39  fof(c18,axiom,((![X]:(![Y]:(~incident_point_and_line(X,Y)|~apart_point_and_line(X,Y))))&(![X]:(![Y]:(apart_point_and_line(X,Y)|incident_point_and_line(X,Y))))),inference(shift_quantors,status(thm),[c17])).
% 15.16/15.39  fof(c20,axiom,(![X9]:(![X10]:(![X11]:(![X12]:((~incident_point_and_line(X9,X10)|~apart_point_and_line(X9,X10))&(apart_point_and_line(X11,X12)|incident_point_and_line(X11,X12))))))),inference(shift_quantors,status(thm),[fof(c19,axiom,((![X9]:(![X10]:(~incident_point_and_line(X9,X10)|~apart_point_and_line(X9,X10))))&(![X11]:(![X12]:(apart_point_and_line(X11,X12)|incident_point_and_line(X11,X12))))),inference(variable_rename,status(thm),[c18])).])).
% 15.16/15.39  cnf(c22,axiom,apart_point_and_line(X115,X116)|incident_point_and_line(X115,X116),inference(split_conjunct,status(thm),[c20])).
% 15.16/15.39  fof(ceq2,axiom,(![X]:(![Y]:(![Z]:(apart_point_and_line(X,Y)=>(distinct_lines(Y,Z)|apart_point_and_line(X,Z)))))),input).
% 15.16/15.39  fof(c111,axiom,(![X]:(![Y]:(![Z]:(~apart_point_and_line(X,Y)|(distinct_lines(Y,Z)|apart_point_and_line(X,Z)))))),inference(fof_nnf,status(thm),[ceq2])).
% 15.16/15.39  fof(c112,axiom,(![X]:(![Y]:(~apart_point_and_line(X,Y)|(![Z]:(distinct_lines(Y,Z)|apart_point_and_line(X,Z)))))),inference(shift_quantors,status(thm),[c111])).
% 15.16/15.39  fof(c114,axiom,(![X66]:(![X67]:(![X68]:(~apart_point_and_line(X66,X67)|(distinct_lines(X67,X68)|apart_point_and_line(X66,X68)))))),inference(shift_quantors,status(thm),[fof(c113,axiom,(![X66]:(![X67]:(~apart_point_and_line(X66,X67)|(![X68]:(distinct_lines(X67,X68)|apart_point_and_line(X66,X68)))))),inference(variable_rename,status(thm),[c112])).])).
% 15.16/15.39  cnf(c115,axiom,~apart_point_and_line(X286,X287)|distinct_lines(X287,X285)|apart_point_and_line(X286,X285),inference(split_conjunct,status(thm),[c114])).
% 15.16/15.39  cnf(c396,plain,distinct_lines(X1409,X1410)|apart_point_and_line(X1408,X1410)|incident_point_and_line(X1408,X1409),inference(resolution,status(thm),[c115, c22])).
% 15.16/15.39  cnf(c5322,plain,distinct_lines(X3226,parallel_through_point(X3225,X3224))|incident_point_and_line(X3224,X3226),inference(resolution,status(thm),[c396, c99])).
% 15.16/15.39  cnf(c26774,plain,incident_point_and_line(X4035,X4034)|~equal_lines(X4034,parallel_through_point(X4036,X4035)),inference(resolution,status(thm),[c5322, c35])).
% 15.16/15.39  cnf(c32537,plain,incident_point_and_line(X4039,X4040),inference(resolution,status(thm),[c26774, c2078])).
% 15.16/15.39  cnf(c32774,plain,$false,inference(resolution,status(thm),[c32537, c8])).
% 15.16/15.39  # SZS output end CNFRefutation
% 15.16/15.39  
% 15.16/15.39  # Initial clauses    : 51
% 15.16/15.39  # Processed clauses  : 786
% 15.16/15.39  # Factors computed   : 124
% 15.16/15.39  # Resolvents computed: 32487
% 15.16/15.39  # Tautologies deleted: 12
% 15.16/15.39  # Forward subsumed   : 1843
% 15.16/15.39  # Backward subsumed  : 54
% 15.16/15.39  # -------- CPU Time ---------
% 15.16/15.39  # User time          : 14.929 s
% 15.16/15.39  # System time        : 0.099 s
% 15.16/15.39  # Total time         : 15.028 s
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