TSTP Solution File: GEO019-3 by Bliksem---1.12

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Bliksem---1.12
% Problem  : GEO019-3 : TPTP v8.1.0. Released v1.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : bliksem %s

% Computer : n004.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  : 0s
% DateTime : Sat Jul 16 02:50:55 EDT 2022

% Result   : Unsatisfiable 0.82s 1.25s
% Output   : Refutation 0.82s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.08/0.14  % Problem  : GEO019-3 : TPTP v8.1.0. Released v1.0.0.
% 0.08/0.15  % Command  : bliksem %s
% 0.14/0.37  % Computer : n004.cluster.edu
% 0.14/0.37  % Model    : x86_64 x86_64
% 0.14/0.37  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.14/0.37  % Memory   : 8042.1875MB
% 0.14/0.37  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.14/0.37  % CPULimit : 300
% 0.14/0.37  % DateTime : Sat Jun 18 04:13:38 EDT 2022
% 0.14/0.37  % CPUTime  : 
% 0.82/1.25  *** allocated 10000 integers for termspace/termends
% 0.82/1.25  *** allocated 10000 integers for clauses
% 0.82/1.25  *** allocated 10000 integers for justifications
% 0.82/1.25  Bliksem 1.12
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  Automatic Strategy Selection
% 0.82/1.25  
% 0.82/1.25  Clauses:
% 0.82/1.25  [
% 0.82/1.25     [ equidistant( X, Y, Y, X ) ],
% 0.82/1.25     [ ~( equidistant( X, Y, Z, T ) ), ~( equidistant( X, Y, U, W ) ), 
% 0.82/1.25    equidistant( Z, T, U, W ) ],
% 0.82/1.25     [ ~( equidistant( X, Y, Z, Z ) ), =( X, Y ) ],
% 0.82/1.25     [ between( X, Y, extension( X, Y, Z, T ) ) ],
% 0.82/1.25     [ equidistant( X, extension( Y, X, Z, T ), Z, T ) ],
% 0.82/1.25     [ ~( equidistant( X, Y, Z, T ) ), ~( equidistant( Y, U, T, W ) ), ~( 
% 0.82/1.25    equidistant( X, V0, Z, V1 ) ), ~( equidistant( Y, V0, T, V1 ) ), ~( 
% 0.82/1.25    between( X, Y, U ) ), ~( between( Z, T, W ) ), =( X, Y ), equidistant( U
% 0.82/1.25    , V0, W, V1 ) ],
% 0.82/1.25     [ ~( between( X, Y, X ) ), =( X, Y ) ],
% 0.82/1.25     [ ~( between( X, Y, Z ) ), ~( between( T, U, Z ) ), between( Y, 
% 0.82/1.25    'inner_pasch'( X, Y, Z, U, T ), T ) ],
% 0.82/1.25     [ ~( between( X, Y, Z ) ), ~( between( T, U, Z ) ), between( U, 
% 0.82/1.25    'inner_pasch'( X, Y, Z, U, T ), X ) ],
% 0.82/1.25     [ ~( between( 'lower_dimension_point_1', 'lower_dimension_point_2', 
% 0.82/1.25    'lower_dimension_point_3' ) ) ],
% 0.82/1.25     [ ~( between( 'lower_dimension_point_2', 'lower_dimension_point_3', 
% 0.82/1.25    'lower_dimension_point_1' ) ) ],
% 0.82/1.25     [ ~( between( 'lower_dimension_point_3', 'lower_dimension_point_1', 
% 0.82/1.25    'lower_dimension_point_2' ) ) ],
% 0.82/1.25     [ ~( equidistant( X, Y, X, Z ) ), ~( equidistant( T, Y, T, Z ) ), ~( 
% 0.82/1.25    equidistant( U, Y, U, Z ) ), between( X, T, U ), between( T, U, X ), 
% 0.82/1.25    between( U, X, T ), =( Y, Z ) ],
% 0.82/1.25     [ ~( between( X, Y, Z ) ), ~( between( T, Y, U ) ), =( X, Y ), between( 
% 0.82/1.25    X, T, euclid1( X, T, Y, U, Z ) ) ],
% 0.82/1.25     [ ~( between( X, Y, Z ) ), ~( between( T, Y, U ) ), =( X, Y ), between( 
% 0.82/1.25    X, U, euclid2( X, T, Y, U, Z ) ) ],
% 0.82/1.25     [ ~( between( X, Y, Z ) ), ~( between( T, Y, U ) ), =( X, Y ), between( 
% 0.82/1.25    euclid1( X, T, Y, U, Z ), Z, euclid2( X, T, Y, U, Z ) ) ],
% 0.82/1.25     [ ~( equidistant( X, Y, X, Z ) ), ~( equidistant( X, T, X, U ) ), ~( 
% 0.82/1.25    between( X, Y, T ) ), ~( between( Y, W, T ) ), between( Z, continuous( X
% 0.82/1.25    , Y, Z, W, T, U ), U ) ],
% 0.82/1.25     [ ~( equidistant( X, Y, X, Z ) ), ~( equidistant( X, T, X, U ) ), ~( 
% 0.82/1.25    between( X, Y, T ) ), ~( between( Y, W, T ) ), equidistant( X, W, X, 
% 0.82/1.25    continuous( X, Y, Z, W, T, U ) ) ],
% 0.82/1.25     [ equidistant( X, Y, X, Y ) ],
% 0.82/1.25     [ ~( equidistant( X, Y, Z, T ) ), equidistant( Z, T, X, Y ) ],
% 0.82/1.25     [ ~( equidistant( X, Y, Z, T ) ), equidistant( Y, X, Z, T ) ],
% 0.82/1.25     [ equidistant( u, v, w, x ) ],
% 0.82/1.25     [ ~( equidistant( w, x, v, u ) ) ]
% 0.82/1.25  ] .
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  percentage equality = 0.111111, percentage horn = 0.782609
% 0.82/1.25  This is a problem with some equality
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  Options Used:
% 0.82/1.25  
% 0.82/1.25  useres =            1
% 0.82/1.25  useparamod =        1
% 0.82/1.25  useeqrefl =         1
% 0.82/1.25  useeqfact =         1
% 0.82/1.25  usefactor =         1
% 0.82/1.25  usesimpsplitting =  0
% 0.82/1.25  usesimpdemod =      5
% 0.82/1.25  usesimpres =        3
% 0.82/1.25  
% 0.82/1.25  resimpinuse      =  1000
% 0.82/1.25  resimpclauses =     20000
% 0.82/1.25  substype =          eqrewr
% 0.82/1.25  backwardsubs =      1
% 0.82/1.25  selectoldest =      5
% 0.82/1.25  
% 0.82/1.25  litorderings [0] =  split
% 0.82/1.25  litorderings [1] =  extend the termordering, first sorting on arguments
% 0.82/1.25  
% 0.82/1.25  termordering =      kbo
% 0.82/1.25  
% 0.82/1.25  litapriori =        0
% 0.82/1.25  termapriori =       1
% 0.82/1.25  litaposteriori =    0
% 0.82/1.25  termaposteriori =   0
% 0.82/1.25  demodaposteriori =  0
% 0.82/1.25  ordereqreflfact =   0
% 0.82/1.25  
% 0.82/1.25  litselect =         negord
% 0.82/1.25  
% 0.82/1.25  maxweight =         15
% 0.82/1.25  maxdepth =          30000
% 0.82/1.25  maxlength =         115
% 0.82/1.25  maxnrvars =         195
% 0.82/1.25  excuselevel =       1
% 0.82/1.25  increasemaxweight = 1
% 0.82/1.25  
% 0.82/1.25  maxselected =       10000000
% 0.82/1.25  maxnrclauses =      10000000
% 0.82/1.25  
% 0.82/1.25  showgenerated =    0
% 0.82/1.25  showkept =         0
% 0.82/1.25  showselected =     0
% 0.82/1.25  showdeleted =      0
% 0.82/1.25  showresimp =       1
% 0.82/1.25  showstatus =       2000
% 0.82/1.25  
% 0.82/1.25  prologoutput =     1
% 0.82/1.25  nrgoals =          5000000
% 0.82/1.25  totalproof =       1
% 0.82/1.25  
% 0.82/1.25  Symbols occurring in the translation:
% 0.82/1.25  
% 0.82/1.25  {}  [0, 0]      (w:1, o:2, a:1, s:1, b:0), 
% 0.82/1.25  .  [1, 2]      (w:1, o:32, a:1, s:1, b:0), 
% 0.82/1.25  !  [4, 1]      (w:0, o:27, a:1, s:1, b:0), 
% 0.82/1.25  =  [13, 2]      (w:1, o:0, a:0, s:1, b:0), 
% 0.82/1.25  ==>  [14, 2]      (w:1, o:0, a:0, s:1, b:0), 
% 0.82/1.25  equidistant  [41, 4]      (w:1, o:58, a:1, s:1, b:0), 
% 0.82/1.25  extension  [46, 4]      (w:1, o:59, a:1, s:1, b:0), 
% 0.82/1.25  between  [47, 3]      (w:1, o:57, a:1, s:1, b:0), 
% 0.82/1.25  'inner_pasch'  [53, 5]      (w:1, o:60, a:1, s:1, b:0), 
% 0.82/1.25  'lower_dimension_point_1'  [54, 0]      (w:1, o:20, a:1, s:1, b:0), 
% 0.82/1.25  'lower_dimension_point_2'  [55, 0]      (w:1, o:21, a:1, s:1, b:0), 
% 0.82/1.25  'lower_dimension_point_3'  [56, 0]      (w:1, o:22, a:1, s:1, b:0), 
% 0.82/1.25  euclid1  [57, 5]      (w:1, o:61, a:1, s:1, b:0), 
% 0.82/1.25  euclid2  [58, 5]      (w:1, o:62, a:1, s:1, b:0), 
% 0.82/1.25  continuous  [59, 6]      (w:1, o:63, a:1, s:1, b:0), 
% 0.82/1.25  u  [60, 0]      (w:1, o:23, a:1, s:1, b:0), 
% 0.82/1.25  v  [61, 0]      (w:1, o:24, a:1, s:1, b:0), 
% 0.82/1.25  w  [62, 0]      (w:1, o:25, a:1, s:1, b:0), 
% 0.82/1.25  x  [63, 0]      (w:1, o:26, a:1, s:1, b:0).
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  Starting Search:
% 0.82/1.25  
% 0.82/1.25  Resimplifying inuse:
% 0.82/1.25  Done
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  Bliksems!, er is een bewijs:
% 0.82/1.25  % SZS status Unsatisfiable
% 0.82/1.25  % SZS output start Refutation
% 0.82/1.25  
% 0.82/1.25  clause( 19, [ ~( equidistant( X, Y, Z, T ) ), equidistant( Z, T, X, Y ) ]
% 0.82/1.25     )
% 0.82/1.25  .
% 0.82/1.25  clause( 20, [ ~( equidistant( X, Y, Z, T ) ), equidistant( Y, X, Z, T ) ]
% 0.82/1.25     )
% 0.82/1.25  .
% 0.82/1.25  clause( 21, [ equidistant( u, v, w, x ) ] )
% 0.82/1.25  .
% 0.82/1.25  clause( 22, [ ~( equidistant( w, x, v, u ) ) ] )
% 0.82/1.25  .
% 0.82/1.25  clause( 986, [ ~( equidistant( v, u, w, x ) ) ] )
% 0.82/1.25  .
% 0.82/1.25  clause( 1034, [] )
% 0.82/1.25  .
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  % SZS output end Refutation
% 0.82/1.25  found a proof!
% 0.82/1.25  
% 0.82/1.25  % ABCDEFGHIJKLMNOPQRSTUVWXYZ
% 0.82/1.25  
% 0.82/1.25  initialclauses(
% 0.82/1.25  [ clause( 1036, [ equidistant( X, Y, Y, X ) ] )
% 0.82/1.25  , clause( 1037, [ ~( equidistant( X, Y, Z, T ) ), ~( equidistant( X, Y, U, 
% 0.82/1.25    W ) ), equidistant( Z, T, U, W ) ] )
% 0.82/1.25  , clause( 1038, [ ~( equidistant( X, Y, Z, Z ) ), =( X, Y ) ] )
% 0.82/1.25  , clause( 1039, [ between( X, Y, extension( X, Y, Z, T ) ) ] )
% 0.82/1.25  , clause( 1040, [ equidistant( X, extension( Y, X, Z, T ), Z, T ) ] )
% 0.82/1.25  , clause( 1041, [ ~( equidistant( X, Y, Z, T ) ), ~( equidistant( Y, U, T, 
% 0.82/1.25    W ) ), ~( equidistant( X, V0, Z, V1 ) ), ~( equidistant( Y, V0, T, V1 ) )
% 0.82/1.25    , ~( between( X, Y, U ) ), ~( between( Z, T, W ) ), =( X, Y ), 
% 0.82/1.25    equidistant( U, V0, W, V1 ) ] )
% 0.82/1.25  , clause( 1042, [ ~( between( X, Y, X ) ), =( X, Y ) ] )
% 0.82/1.25  , clause( 1043, [ ~( between( X, Y, Z ) ), ~( between( T, U, Z ) ), between( 
% 0.82/1.25    Y, 'inner_pasch'( X, Y, Z, U, T ), T ) ] )
% 0.82/1.25  , clause( 1044, [ ~( between( X, Y, Z ) ), ~( between( T, U, Z ) ), between( 
% 0.82/1.25    U, 'inner_pasch'( X, Y, Z, U, T ), X ) ] )
% 0.82/1.25  , clause( 1045, [ ~( between( 'lower_dimension_point_1', 
% 0.82/1.25    'lower_dimension_point_2', 'lower_dimension_point_3' ) ) ] )
% 0.82/1.25  , clause( 1046, [ ~( between( 'lower_dimension_point_2', 
% 0.82/1.25    'lower_dimension_point_3', 'lower_dimension_point_1' ) ) ] )
% 0.82/1.25  , clause( 1047, [ ~( between( 'lower_dimension_point_3', 
% 0.82/1.25    'lower_dimension_point_1', 'lower_dimension_point_2' ) ) ] )
% 0.82/1.25  , clause( 1048, [ ~( equidistant( X, Y, X, Z ) ), ~( equidistant( T, Y, T, 
% 0.82/1.25    Z ) ), ~( equidistant( U, Y, U, Z ) ), between( X, T, U ), between( T, U
% 0.82/1.25    , X ), between( U, X, T ), =( Y, Z ) ] )
% 0.82/1.25  , clause( 1049, [ ~( between( X, Y, Z ) ), ~( between( T, Y, U ) ), =( X, Y
% 0.82/1.25     ), between( X, T, euclid1( X, T, Y, U, Z ) ) ] )
% 0.82/1.25  , clause( 1050, [ ~( between( X, Y, Z ) ), ~( between( T, Y, U ) ), =( X, Y
% 0.82/1.25     ), between( X, U, euclid2( X, T, Y, U, Z ) ) ] )
% 0.82/1.25  , clause( 1051, [ ~( between( X, Y, Z ) ), ~( between( T, Y, U ) ), =( X, Y
% 0.82/1.25     ), between( euclid1( X, T, Y, U, Z ), Z, euclid2( X, T, Y, U, Z ) ) ] )
% 0.82/1.25  , clause( 1052, [ ~( equidistant( X, Y, X, Z ) ), ~( equidistant( X, T, X, 
% 0.82/1.25    U ) ), ~( between( X, Y, T ) ), ~( between( Y, W, T ) ), between( Z, 
% 0.82/1.25    continuous( X, Y, Z, W, T, U ), U ) ] )
% 0.82/1.25  , clause( 1053, [ ~( equidistant( X, Y, X, Z ) ), ~( equidistant( X, T, X, 
% 0.82/1.25    U ) ), ~( between( X, Y, T ) ), ~( between( Y, W, T ) ), equidistant( X, 
% 0.82/1.25    W, X, continuous( X, Y, Z, W, T, U ) ) ] )
% 0.82/1.25  , clause( 1054, [ equidistant( X, Y, X, Y ) ] )
% 0.82/1.25  , clause( 1055, [ ~( equidistant( X, Y, Z, T ) ), equidistant( Z, T, X, Y )
% 0.82/1.25     ] )
% 0.82/1.25  , clause( 1056, [ ~( equidistant( X, Y, Z, T ) ), equidistant( Y, X, Z, T )
% 0.82/1.25     ] )
% 0.82/1.25  , clause( 1057, [ equidistant( u, v, w, x ) ] )
% 0.82/1.25  , clause( 1058, [ ~( equidistant( w, x, v, u ) ) ] )
% 0.82/1.25  ] ).
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  subsumption(
% 0.82/1.25  clause( 19, [ ~( equidistant( X, Y, Z, T ) ), equidistant( Z, T, X, Y ) ]
% 0.82/1.25     )
% 0.82/1.25  , clause( 1055, [ ~( equidistant( X, Y, Z, T ) ), equidistant( Z, T, X, Y )
% 0.82/1.25     ] )
% 0.82/1.25  , substitution( 0, [ :=( X, X ), :=( Y, Y ), :=( Z, Z ), :=( T, T )] ), 
% 0.82/1.25    permutation( 0, [ ==>( 0, 0 ), ==>( 1, 1 )] ) ).
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  subsumption(
% 0.82/1.25  clause( 20, [ ~( equidistant( X, Y, Z, T ) ), equidistant( Y, X, Z, T ) ]
% 0.82/1.25     )
% 0.82/1.25  , clause( 1056, [ ~( equidistant( X, Y, Z, T ) ), equidistant( Y, X, Z, T )
% 0.82/1.25     ] )
% 0.82/1.25  , substitution( 0, [ :=( X, X ), :=( Y, Y ), :=( Z, Z ), :=( T, T )] ), 
% 0.82/1.25    permutation( 0, [ ==>( 0, 0 ), ==>( 1, 1 )] ) ).
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  subsumption(
% 0.82/1.25  clause( 21, [ equidistant( u, v, w, x ) ] )
% 0.82/1.25  , clause( 1057, [ equidistant( u, v, w, x ) ] )
% 0.82/1.25  , substitution( 0, [] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  subsumption(
% 0.82/1.25  clause( 22, [ ~( equidistant( w, x, v, u ) ) ] )
% 0.82/1.25  , clause( 1058, [ ~( equidistant( w, x, v, u ) ) ] )
% 0.82/1.25  , substitution( 0, [] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  resolution(
% 0.82/1.25  clause( 1291, [ ~( equidistant( v, u, w, x ) ) ] )
% 0.82/1.25  , clause( 22, [ ~( equidistant( w, x, v, u ) ) ] )
% 0.82/1.25  , 0, clause( 19, [ ~( equidistant( X, Y, Z, T ) ), equidistant( Z, T, X, Y
% 0.82/1.25     ) ] )
% 0.82/1.25  , 1, substitution( 0, [] ), substitution( 1, [ :=( X, v ), :=( Y, u ), :=( 
% 0.82/1.25    Z, w ), :=( T, x )] )).
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  subsumption(
% 0.82/1.25  clause( 986, [ ~( equidistant( v, u, w, x ) ) ] )
% 0.82/1.25  , clause( 1291, [ ~( equidistant( v, u, w, x ) ) ] )
% 0.82/1.25  , substitution( 0, [] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  resolution(
% 0.82/1.25  clause( 1292, [ equidistant( v, u, w, x ) ] )
% 0.82/1.25  , clause( 20, [ ~( equidistant( X, Y, Z, T ) ), equidistant( Y, X, Z, T ) ]
% 0.82/1.25     )
% 0.82/1.25  , 0, clause( 21, [ equidistant( u, v, w, x ) ] )
% 0.82/1.25  , 0, substitution( 0, [ :=( X, u ), :=( Y, v ), :=( Z, w ), :=( T, x )] ), 
% 0.82/1.25    substitution( 1, [] )).
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  resolution(
% 0.82/1.25  clause( 1293, [] )
% 0.82/1.25  , clause( 986, [ ~( equidistant( v, u, w, x ) ) ] )
% 0.82/1.25  , 0, clause( 1292, [ equidistant( v, u, w, x ) ] )
% 0.82/1.25  , 0, substitution( 0, [] ), substitution( 1, [] )).
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  subsumption(
% 0.82/1.25  clause( 1034, [] )
% 0.82/1.25  , clause( 1293, [] )
% 0.82/1.25  , substitution( 0, [] ), permutation( 0, [] ) ).
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  end.
% 0.82/1.25  
% 0.82/1.25  % ABCDEFGHIJKLMNOPQRSTUVWXYZ
% 0.82/1.25  
% 0.82/1.25  Memory use:
% 0.82/1.25  
% 0.82/1.25  space for terms:        30116
% 0.82/1.25  space for clauses:      52704
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  clauses generated:      5742
% 0.82/1.25  clauses kept:           1035
% 0.82/1.25  clauses selected:       71
% 0.82/1.25  clauses deleted:        0
% 0.82/1.25  clauses inuse deleted:  0
% 0.82/1.25  
% 0.82/1.25  subsentry:          14957
% 0.82/1.25  literals s-matched: 11564
% 0.82/1.25  literals matched:   9756
% 0.82/1.25  full subsumption:   8226
% 0.82/1.25  
% 0.82/1.25  checksum:           459484399
% 0.82/1.25  
% 0.82/1.25  
% 0.82/1.25  Bliksem ended
%------------------------------------------------------------------------------