TSTP Solution File: CSR074+1 by Bliksem---1.12

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Bliksem---1.12
% Problem  : CSR074+1 : TPTP v8.1.0. Released v3.4.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : bliksem %s

% 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  : 0s
% DateTime : Fri Jul 15 02:01:46 EDT 2022

% Result   : Theorem 0.75s 1.13s
% Output   : Refutation 0.75s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.11/0.13  % Problem  : CSR074+1 : TPTP v8.1.0. Released v3.4.0.
% 0.11/0.13  % Command  : bliksem %s
% 0.15/0.35  % Computer : n026.cluster.edu
% 0.15/0.35  % Model    : x86_64 x86_64
% 0.15/0.35  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.15/0.35  % Memory   : 8042.1875MB
% 0.15/0.35  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.15/0.35  % CPULimit : 300
% 0.15/0.35  % DateTime : Fri Jun 10 23:43:34 EDT 2022
% 0.15/0.35  % CPUTime  : 
% 0.75/1.13  *** allocated 10000 integers for termspace/termends
% 0.75/1.13  *** allocated 10000 integers for clauses
% 0.75/1.13  *** allocated 10000 integers for justifications
% 0.75/1.13  Bliksem 1.12
% 0.75/1.13  
% 0.75/1.13  
% 0.75/1.13  Automatic Strategy Selection
% 0.75/1.13  
% 0.75/1.13  
% 0.75/1.13  Clauses:
% 0.75/1.13  
% 0.75/1.13  { genlmt( c_geographymt, c_basekb ) }.
% 0.75/1.13  { transitivebinarypredicate( c_inregion ) }.
% 0.75/1.13  { genlmt( c_worldgeographymt, c_geographymt ) }.
% 0.75/1.13  { genlinverse( c_geographicalsubregions, c_inregion ) }.
% 0.75/1.13  { ! geographicalsubregions( X, Y ), inregion( Y, X ) }.
% 0.75/1.13  { transitivebinarypredicate( c_genlmt ) }.
% 0.75/1.13  { genlmt( c_basekb, c_universalvocabularymt ) }.
% 0.75/1.13  { genlmt( c_tptpgeo_spindleheadmt, c_worldgeographymt ) }.
% 0.75/1.13  { genlmt( c_tptpgeo_member7_mt, c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  { ! mtvisible( c_worldgeographymt ), geolevel_3( c_georegion_l3_x17_y24 ) }
% 0.75/1.13    .
% 0.75/1.13  { ! mtvisible( c_tptpgeo_member7_mt ), geographicalsubregions( 
% 0.75/1.13    c_georegion_l3_x17_y24, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  { ! mtvisible( c_tptpgeo_member7_mt ), inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  { ! isa( X, Y ), ! isa( X, Z ), ! disjointwith( Y, Z ) }.
% 0.75/1.13  { ! genlinverse( X, Z ), ! genlinverse( Z, Y ), genlpreds( X, Y ) }.
% 0.75/1.13  { ! genlpreds( Y, X ), predicate( X ) }.
% 0.75/1.13  { ! genlpreds( Y, X ), predicate( X ) }.
% 0.75/1.13  { ! genlpreds( X, Y ), predicate( X ) }.
% 0.75/1.13  { ! genlpreds( X, Y ), predicate( X ) }.
% 0.75/1.13  { ! genlpreds( X, Z ), ! genlpreds( Z, Y ), genlpreds( X, Y ) }.
% 0.75/1.13  { ! predicate( X ), genlpreds( X, X ) }.
% 0.75/1.13  { ! predicate( X ), genlpreds( X, X ) }.
% 0.75/1.13  { ! disjointwith( Y, X ), collection( X ) }.
% 0.75/1.13  { ! disjointwith( X, Y ), collection( X ) }.
% 0.75/1.13  { ! disjointwith( X, Y ), disjointwith( Y, X ) }.
% 0.75/1.13  { ! disjointwith( X, Z ), ! genls( Y, Z ), disjointwith( X, Y ) }.
% 0.75/1.13  { ! disjointwith( Z, X ), ! genls( Y, Z ), disjointwith( Y, X ) }.
% 0.75/1.13  { ! isa( X, c_geolevel_3 ), geolevel_3( X ) }.
% 0.75/1.13  { ! geolevel_3( X ), isa( X, c_geolevel_3 ) }.
% 0.75/1.13  { ! geographicalsubregions( Y, X ), geographicalregion( X ) }.
% 0.75/1.13  { ! geographicalsubregions( X, Y ), geographicalregion( X ) }.
% 0.75/1.13  { ! geographicalsubregions( X, Z ), ! geographicalsubregions( Z, Y ), 
% 0.75/1.13    geographicalsubregions( X, Y ) }.
% 0.75/1.13  { ! geographicalregion( X ), geographicalsubregions( X, X ) }.
% 0.75/1.13  { ! genlinverse( Y, X ), binarypredicate( X ) }.
% 0.75/1.13  { ! genlinverse( X, Y ), binarypredicate( X ) }.
% 0.75/1.13  { ! genlinverse( Z, X ), ! genlpreds( Y, Z ), genlinverse( Y, X ) }.
% 0.75/1.13  { ! genlinverse( X, Z ), ! genlpreds( Z, Y ), genlinverse( X, Y ) }.
% 0.75/1.13  { ! isa( X, c_transitivebinarypredicate ), transitivebinarypredicate( X ) }
% 0.75/1.13    .
% 0.75/1.13  { ! transitivebinarypredicate( X ), isa( X, c_transitivebinarypredicate ) }
% 0.75/1.13    .
% 0.75/1.13  { ! inregion( Y, X ), spatialthing_nonsituational( X ) }.
% 0.75/1.13  { ! inregion( X, Y ), spatialthing_nonsituational( X ) }.
% 0.75/1.13  { ! inregion( X, Z ), ! inregion( Z, Y ), inregion( X, Y ) }.
% 0.75/1.13  { ! spatialthing_nonsituational( X ), inregion( X, X ) }.
% 0.75/1.13  { ! isa( Y, X ), collection( X ) }.
% 0.75/1.13  { ! isa( Y, X ), collection( X ) }.
% 0.75/1.13  { ! isa( X, Y ), thing( X ) }.
% 0.75/1.13  { ! isa( X, Y ), thing( X ) }.
% 0.75/1.13  { ! isa( X, Z ), ! genls( Z, Y ), isa( X, Y ) }.
% 0.75/1.13  { mtvisible( c_universalvocabularymt ) }.
% 0.75/1.13  { ! mtvisible( Y ), ! genlmt( Y, X ), mtvisible( X ) }.
% 0.75/1.13  { ! genlmt( Y, X ), microtheory( X ) }.
% 0.75/1.13  { ! genlmt( Y, X ), microtheory( X ) }.
% 0.75/1.13  { ! genlmt( X, Y ), microtheory( X ) }.
% 0.75/1.13  { ! genlmt( X, Y ), microtheory( X ) }.
% 0.75/1.13  { ! genlmt( X, Z ), ! genlmt( Z, Y ), genlmt( X, Y ) }.
% 0.75/1.13  { ! microtheory( X ), genlmt( X, X ) }.
% 0.75/1.13  { ! microtheory( X ), genlmt( X, X ) }.
% 0.75/1.13  { mtvisible( c_basekb ) }.
% 0.75/1.13  { mtvisible( c_tptpgeo_member7_mt ) }.
% 0.75/1.13  { ! inregion( c_geolocation_x53_y74, c_georegion_l3_x17_y24 ), ! geolevel_3
% 0.75/1.13    ( c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  
% 0.75/1.13  percentage equality = 0.000000, percentage horn = 1.000000
% 0.75/1.13  This is a near-Horn, non-equality  problem
% 0.75/1.13  
% 0.75/1.13  
% 0.75/1.13  Options Used:
% 0.75/1.13  
% 0.75/1.13  useres =            1
% 0.75/1.13  useparamod =        0
% 0.75/1.13  useeqrefl =         0
% 0.75/1.13  useeqfact =         0
% 0.75/1.13  usefactor =         1
% 0.75/1.13  usesimpsplitting =  0
% 0.75/1.13  usesimpdemod =      0
% 0.75/1.13  usesimpres =        4
% 0.75/1.13  
% 0.75/1.13  resimpinuse      =  1000
% 0.75/1.13  resimpclauses =     20000
% 0.75/1.13  substype =          standard
% 0.75/1.13  backwardsubs =      1
% 0.75/1.13  selectoldest =      5
% 0.75/1.13  
% 0.75/1.13  litorderings [0] =  split
% 0.75/1.13  litorderings [1] =  liftord
% 0.75/1.13  
% 0.75/1.13  termordering =      none
% 0.75/1.13  
% 0.75/1.13  litapriori =        1
% 0.75/1.13  termapriori =       0
% 0.75/1.13  litaposteriori =    0
% 0.75/1.13  termaposteriori =   0
% 0.75/1.13  demodaposteriori =  0
% 0.75/1.13  ordereqreflfact =   0
% 0.75/1.13  
% 0.75/1.13  litselect =         negative
% 0.75/1.13  
% 0.75/1.13  maxweight =         30000
% 0.75/1.13  maxdepth =          30000
% 0.75/1.13  maxlength =         115
% 0.75/1.13  maxnrvars =         195
% 0.75/1.13  excuselevel =       0
% 0.75/1.13  increasemaxweight = 0
% 0.75/1.13  
% 0.75/1.13  maxselected =       10000000
% 0.75/1.13  maxnrclauses =      10000000
% 0.75/1.13  
% 0.75/1.13  showgenerated =    0
% 0.75/1.13  showkept =         0
% 0.75/1.13  showselected =     0
% 0.75/1.13  showdeleted =      0
% 0.75/1.13  showresimp =       1
% 0.75/1.13  showstatus =       2000
% 0.75/1.13  
% 0.75/1.13  prologoutput =     0
% 0.75/1.13  nrgoals =          5000000
% 0.75/1.13  totalproof =       1
% 0.75/1.13  
% 0.75/1.13  Symbols occurring in the translation:
% 0.75/1.13  
% 0.75/1.13  {}  [0, 0]      (w:1, o:2, a:1, s:1, b:0), 
% 0.75/1.13  .  [1, 2]      (w:1, o:51, a:1, s:1, b:0), 
% 0.75/1.13  !  [4, 1]      (w:1, o:36, a:1, s:1, b:0), 
% 0.75/1.13  =  [13, 2]      (w:1, o:0, a:0, s:1, b:0), 
% 0.75/1.13  ==>  [14, 2]      (w:1, o:0, a:0, s:1, b:0), 
% 0.75/1.13  c_geographymt  [35, 0]      (w:1, o:7, a:1, s:1, b:0), 
% 0.75/1.13  c_basekb  [36, 0]      (w:1, o:8, a:1, s:1, b:0), 
% 0.75/1.13  genlmt  [37, 2]      (w:1, o:75, a:1, s:1, b:0), 
% 0.75/1.13  c_inregion  [38, 0]      (w:1, o:9, a:1, s:1, b:0), 
% 0.75/1.13  transitivebinarypredicate  [39, 1]      (w:1, o:42, a:1, s:1, b:0), 
% 0.75/1.13  c_worldgeographymt  [40, 0]      (w:1, o:10, a:1, s:1, b:0), 
% 0.75/1.13  c_geographicalsubregions  [41, 0]      (w:1, o:11, a:1, s:1, b:0), 
% 0.75/1.13  genlinverse  [42, 2]      (w:1, o:76, a:1, s:1, b:0), 
% 0.75/1.13  geographicalsubregions  [45, 2]      (w:1, o:79, a:1, s:1, b:0), 
% 0.75/1.13  inregion  [46, 2]      (w:1, o:80, a:1, s:1, b:0), 
% 0.75/1.13  c_genlmt  [47, 0]      (w:1, o:6, a:1, s:1, b:0), 
% 0.75/1.13  c_universalvocabularymt  [48, 0]      (w:1, o:17, a:1, s:1, b:0), 
% 0.75/1.13  c_tptpgeo_spindleheadmt  [49, 0]      (w:1, o:14, a:1, s:1, b:0), 
% 0.75/1.13  c_tptpgeo_member7_mt  [50, 0]      (w:1, o:15, a:1, s:1, b:0), 
% 0.75/1.13  mtvisible  [51, 1]      (w:1, o:43, a:1, s:1, b:0), 
% 0.75/1.13  c_georegion_l3_x17_y24  [52, 0]      (w:1, o:18, a:1, s:1, b:0), 
% 0.75/1.13  geolevel_3  [53, 1]      (w:1, o:44, a:1, s:1, b:0), 
% 0.75/1.13  c_georegion_l4_x53_y74  [54, 0]      (w:1, o:19, a:1, s:1, b:0), 
% 0.75/1.13  c_geolocation_x53_y74  [55, 0]      (w:1, o:20, a:1, s:1, b:0), 
% 0.75/1.13  isa  [59, 2]      (w:1, o:81, a:1, s:1, b:0), 
% 0.75/1.13  disjointwith  [60, 2]      (w:1, o:82, a:1, s:1, b:0), 
% 0.75/1.13  genlpreds  [64, 2]      (w:1, o:77, a:1, s:1, b:0), 
% 0.75/1.13  predicate  [66, 1]      (w:1, o:45, a:1, s:1, b:0), 
% 0.75/1.13  collection  [70, 1]      (w:1, o:47, a:1, s:1, b:0), 
% 0.75/1.13  genls  [73, 2]      (w:1, o:78, a:1, s:1, b:0), 
% 0.75/1.13  c_geolevel_3  [74, 0]      (w:1, o:33, a:1, s:1, b:0), 
% 0.75/1.13  geographicalregion  [75, 1]      (w:1, o:48, a:1, s:1, b:0), 
% 0.75/1.13  binarypredicate  [76, 1]      (w:1, o:46, a:1, s:1, b:0), 
% 0.75/1.13  c_transitivebinarypredicate  [77, 0]      (w:1, o:16, a:1, s:1, b:0), 
% 0.75/1.13  spatialthing_nonsituational  [78, 1]      (w:1, o:41, a:1, s:1, b:0), 
% 0.75/1.13  thing  [79, 1]      (w:1, o:49, a:1, s:1, b:0), 
% 0.75/1.13  microtheory  [82, 1]      (w:1, o:50, a:1, s:1, b:0).
% 0.75/1.13  
% 0.75/1.13  
% 0.75/1.13  Starting Search:
% 0.75/1.13  
% 0.75/1.13  
% 0.75/1.13  Bliksems!, er is een bewijs:
% 0.75/1.13  % SZS status Theorem
% 0.75/1.13  % SZS output start Refutation
% 0.75/1.13  
% 0.75/1.13  (4) {G0,W7,D2,L2,V2,M1} I { inregion( Y, X ), ! geographicalsubregions( X, 
% 0.75/1.13    Y ) }.
% 0.75/1.13  (7) {G0,W3,D2,L1,V0,M1} I { genlmt( c_tptpgeo_spindleheadmt, 
% 0.75/1.13    c_worldgeographymt ) }.
% 0.75/1.13  (8) {G0,W3,D2,L1,V0,M1} I { genlmt( c_tptpgeo_member7_mt, 
% 0.75/1.13    c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  (9) {G0,W5,D2,L2,V0,M1} I { geolevel_3( c_georegion_l3_x17_y24 ), ! 
% 0.75/1.13    mtvisible( c_worldgeographymt ) }.
% 0.75/1.13  (10) {G0,W6,D2,L2,V0,M1} I { geographicalsubregions( c_georegion_l3_x17_y24
% 0.75/1.13    , c_georegion_l4_x53_y74 ), ! mtvisible( c_tptpgeo_member7_mt ) }.
% 0.75/1.13  (11) {G0,W6,D2,L2,V0,M1} I { inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l4_x53_y74 ), ! mtvisible( c_tptpgeo_member7_mt ) }.
% 0.75/1.13  (37) {G0,W11,D2,L3,V3,M1} I { ! inregion( X, Z ), inregion( X, Y ), ! 
% 0.75/1.13    inregion( Z, Y ) }.
% 0.75/1.13  (43) {G0,W9,D2,L3,V2,M1} I { ! mtvisible( Y ), mtvisible( X ), ! genlmt( Y
% 0.75/1.13    , X ) }.
% 0.75/1.13  (49) {G0,W2,D2,L1,V0,M1} I { mtvisible( c_tptpgeo_member7_mt ) }.
% 0.75/1.13  (50) {G0,W7,D2,L2,V0,M1} I { ! geolevel_3( c_georegion_l3_x17_y24 ), ! 
% 0.75/1.13    inregion( c_geolocation_x53_y74, c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  (59) {G1,W3,D2,L1,V0,M1} S(10);r(49) { geographicalsubregions( 
% 0.75/1.13    c_georegion_l3_x17_y24, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  (60) {G2,W3,D2,L1,V0,M1} R(59,4) { inregion( c_georegion_l4_x53_y74, 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  (61) {G1,W3,D2,L1,V0,M1} S(11);r(49) { inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  (93) {G1,W5,D2,L2,V0,M1} R(43,7) { mtvisible( c_worldgeographymt ), ! 
% 0.75/1.13    mtvisible( c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  (94) {G1,W2,D2,L1,V0,M1} R(43,8);r(49) { mtvisible( c_tptpgeo_spindleheadmt
% 0.75/1.13     ) }.
% 0.75/1.13  (96) {G3,W7,D2,L2,V1,M1} R(37,60) { inregion( X, c_georegion_l3_x17_y24 ), 
% 0.75/1.13    ! inregion( X, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  (97) {G2,W2,D2,L1,V0,M1} S(93);r(94) { mtvisible( c_worldgeographymt ) }.
% 0.75/1.13  (99) {G3,W2,D2,L1,V0,M1} R(97,9) { geolevel_3( c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  (119) {G4,W3,D2,L1,V0,M1} R(96,61) { inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  (121) {G5,W0,D0,L0,V0,M0} R(119,50);r(99) {  }.
% 0.75/1.13  
% 0.75/1.13  
% 0.75/1.13  % SZS output end Refutation
% 0.75/1.13  found a proof!
% 0.75/1.13  
% 0.75/1.13  
% 0.75/1.13  Unprocessed initial clauses:
% 0.75/1.13  
% 0.75/1.13  (123) {G0,W3,D2,L1,V0,M1}  { genlmt( c_geographymt, c_basekb ) }.
% 0.75/1.13  (124) {G0,W2,D2,L1,V0,M1}  { transitivebinarypredicate( c_inregion ) }.
% 0.75/1.13  (125) {G0,W3,D2,L1,V0,M1}  { genlmt( c_worldgeographymt, c_geographymt )
% 0.75/1.13     }.
% 0.75/1.13  (126) {G0,W3,D2,L1,V0,M1}  { genlinverse( c_geographicalsubregions, 
% 0.75/1.13    c_inregion ) }.
% 0.75/1.13  (127) {G0,W7,D2,L2,V2,M2}  { ! geographicalsubregions( X, Y ), inregion( Y
% 0.75/1.13    , X ) }.
% 0.75/1.13  (128) {G0,W2,D2,L1,V0,M1}  { transitivebinarypredicate( c_genlmt ) }.
% 0.75/1.13  (129) {G0,W3,D2,L1,V0,M1}  { genlmt( c_basekb, c_universalvocabularymt )
% 0.75/1.13     }.
% 0.75/1.13  (130) {G0,W3,D2,L1,V0,M1}  { genlmt( c_tptpgeo_spindleheadmt, 
% 0.75/1.13    c_worldgeographymt ) }.
% 0.75/1.13  (131) {G0,W3,D2,L1,V0,M1}  { genlmt( c_tptpgeo_member7_mt, 
% 0.75/1.13    c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  (132) {G0,W5,D2,L2,V0,M2}  { ! mtvisible( c_worldgeographymt ), geolevel_3
% 0.75/1.13    ( c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  (133) {G0,W6,D2,L2,V0,M2}  { ! mtvisible( c_tptpgeo_member7_mt ), 
% 0.75/1.13    geographicalsubregions( c_georegion_l3_x17_y24, c_georegion_l4_x53_y74 )
% 0.75/1.13     }.
% 0.75/1.13  (134) {G0,W6,D2,L2,V0,M2}  { ! mtvisible( c_tptpgeo_member7_mt ), inregion
% 0.75/1.13    ( c_geolocation_x53_y74, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  (135) {G0,W12,D2,L3,V3,M3}  { ! isa( X, Y ), ! isa( X, Z ), ! disjointwith
% 0.75/1.13    ( Y, Z ) }.
% 0.75/1.13  (136) {G0,W11,D2,L3,V3,M3}  { ! genlinverse( X, Z ), ! genlinverse( Z, Y )
% 0.75/1.13    , genlpreds( X, Y ) }.
% 0.75/1.13  (137) {G0,W6,D2,L2,V2,M2}  { ! genlpreds( Y, X ), predicate( X ) }.
% 0.75/1.13  (138) {G0,W6,D2,L2,V2,M2}  { ! genlpreds( Y, X ), predicate( X ) }.
% 0.75/1.13  (139) {G0,W6,D2,L2,V2,M2}  { ! genlpreds( X, Y ), predicate( X ) }.
% 0.75/1.13  (140) {G0,W6,D2,L2,V2,M2}  { ! genlpreds( X, Y ), predicate( X ) }.
% 0.75/1.13  (141) {G0,W11,D2,L3,V3,M3}  { ! genlpreds( X, Z ), ! genlpreds( Z, Y ), 
% 0.75/1.13    genlpreds( X, Y ) }.
% 0.75/1.13  (142) {G0,W6,D2,L2,V1,M2}  { ! predicate( X ), genlpreds( X, X ) }.
% 0.75/1.13  (143) {G0,W6,D2,L2,V1,M2}  { ! predicate( X ), genlpreds( X, X ) }.
% 0.75/1.13  (144) {G0,W6,D2,L2,V2,M2}  { ! disjointwith( Y, X ), collection( X ) }.
% 0.75/1.13  (145) {G0,W6,D2,L2,V2,M2}  { ! disjointwith( X, Y ), collection( X ) }.
% 0.75/1.13  (146) {G0,W7,D2,L2,V2,M2}  { ! disjointwith( X, Y ), disjointwith( Y, X )
% 0.75/1.13     }.
% 0.75/1.13  (147) {G0,W11,D2,L3,V3,M3}  { ! disjointwith( X, Z ), ! genls( Y, Z ), 
% 0.75/1.13    disjointwith( X, Y ) }.
% 0.75/1.13  (148) {G0,W11,D2,L3,V3,M3}  { ! disjointwith( Z, X ), ! genls( Y, Z ), 
% 0.75/1.13    disjointwith( Y, X ) }.
% 0.75/1.13  (149) {G0,W6,D2,L2,V1,M2}  { ! isa( X, c_geolevel_3 ), geolevel_3( X ) }.
% 0.75/1.13  (150) {G0,W6,D2,L2,V1,M2}  { ! geolevel_3( X ), isa( X, c_geolevel_3 ) }.
% 0.75/1.13  (151) {G0,W6,D2,L2,V2,M2}  { ! geographicalsubregions( Y, X ), 
% 0.75/1.13    geographicalregion( X ) }.
% 0.75/1.13  (152) {G0,W6,D2,L2,V2,M2}  { ! geographicalsubregions( X, Y ), 
% 0.75/1.13    geographicalregion( X ) }.
% 0.75/1.13  (153) {G0,W11,D2,L3,V3,M3}  { ! geographicalsubregions( X, Z ), ! 
% 0.75/1.13    geographicalsubregions( Z, Y ), geographicalsubregions( X, Y ) }.
% 0.75/1.13  (154) {G0,W6,D2,L2,V1,M2}  { ! geographicalregion( X ), 
% 0.75/1.13    geographicalsubregions( X, X ) }.
% 0.75/1.13  (155) {G0,W6,D2,L2,V2,M2}  { ! genlinverse( Y, X ), binarypredicate( X )
% 0.75/1.13     }.
% 0.75/1.13  (156) {G0,W6,D2,L2,V2,M2}  { ! genlinverse( X, Y ), binarypredicate( X )
% 0.75/1.13     }.
% 0.75/1.13  (157) {G0,W11,D2,L3,V3,M3}  { ! genlinverse( Z, X ), ! genlpreds( Y, Z ), 
% 0.75/1.13    genlinverse( Y, X ) }.
% 0.75/1.13  (158) {G0,W11,D2,L3,V3,M3}  { ! genlinverse( X, Z ), ! genlpreds( Z, Y ), 
% 0.75/1.13    genlinverse( X, Y ) }.
% 0.75/1.13  (159) {G0,W6,D2,L2,V1,M2}  { ! isa( X, c_transitivebinarypredicate ), 
% 0.75/1.13    transitivebinarypredicate( X ) }.
% 0.75/1.13  (160) {G0,W6,D2,L2,V1,M2}  { ! transitivebinarypredicate( X ), isa( X, 
% 0.75/1.13    c_transitivebinarypredicate ) }.
% 0.75/1.13  (161) {G0,W6,D2,L2,V2,M2}  { ! inregion( Y, X ), 
% 0.75/1.13    spatialthing_nonsituational( X ) }.
% 0.75/1.13  (162) {G0,W6,D2,L2,V2,M2}  { ! inregion( X, Y ), 
% 0.75/1.13    spatialthing_nonsituational( X ) }.
% 0.75/1.13  (163) {G0,W11,D2,L3,V3,M3}  { ! inregion( X, Z ), ! inregion( Z, Y ), 
% 0.75/1.13    inregion( X, Y ) }.
% 0.75/1.13  (164) {G0,W6,D2,L2,V1,M2}  { ! spatialthing_nonsituational( X ), inregion( 
% 0.75/1.13    X, X ) }.
% 0.75/1.13  (165) {G0,W6,D2,L2,V2,M2}  { ! isa( Y, X ), collection( X ) }.
% 0.75/1.13  (166) {G0,W6,D2,L2,V2,M2}  { ! isa( Y, X ), collection( X ) }.
% 0.75/1.13  (167) {G0,W6,D2,L2,V2,M2}  { ! isa( X, Y ), thing( X ) }.
% 0.75/1.13  (168) {G0,W6,D2,L2,V2,M2}  { ! isa( X, Y ), thing( X ) }.
% 0.75/1.13  (169) {G0,W11,D2,L3,V3,M3}  { ! isa( X, Z ), ! genls( Z, Y ), isa( X, Y )
% 0.75/1.13     }.
% 0.75/1.13  (170) {G0,W2,D2,L1,V0,M1}  { mtvisible( c_universalvocabularymt ) }.
% 0.75/1.13  (171) {G0,W9,D2,L3,V2,M3}  { ! mtvisible( Y ), ! genlmt( Y, X ), mtvisible
% 0.75/1.13    ( X ) }.
% 0.75/1.13  (172) {G0,W6,D2,L2,V2,M2}  { ! genlmt( Y, X ), microtheory( X ) }.
% 0.75/1.13  (173) {G0,W6,D2,L2,V2,M2}  { ! genlmt( Y, X ), microtheory( X ) }.
% 0.75/1.13  (174) {G0,W6,D2,L2,V2,M2}  { ! genlmt( X, Y ), microtheory( X ) }.
% 0.75/1.13  (175) {G0,W6,D2,L2,V2,M2}  { ! genlmt( X, Y ), microtheory( X ) }.
% 0.75/1.13  (176) {G0,W11,D2,L3,V3,M3}  { ! genlmt( X, Z ), ! genlmt( Z, Y ), genlmt( X
% 0.75/1.13    , Y ) }.
% 0.75/1.13  (177) {G0,W6,D2,L2,V1,M2}  { ! microtheory( X ), genlmt( X, X ) }.
% 0.75/1.13  (178) {G0,W6,D2,L2,V1,M2}  { ! microtheory( X ), genlmt( X, X ) }.
% 0.75/1.13  (179) {G0,W2,D2,L1,V0,M1}  { mtvisible( c_basekb ) }.
% 0.75/1.13  (180) {G0,W2,D2,L1,V0,M1}  { mtvisible( c_tptpgeo_member7_mt ) }.
% 0.75/1.13  (181) {G0,W7,D2,L2,V0,M2}  { ! inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l3_x17_y24 ), ! geolevel_3( c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  
% 0.75/1.13  
% 0.75/1.13  Total Proof:
% 0.75/1.13  
% 0.75/1.13  subsumption: (4) {G0,W7,D2,L2,V2,M1} I { inregion( Y, X ), ! 
% 0.75/1.13    geographicalsubregions( X, Y ) }.
% 0.75/1.13  parent0: (127) {G0,W7,D2,L2,V2,M2}  { ! geographicalsubregions( X, Y ), 
% 0.75/1.13    inregion( Y, X ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13     X := X
% 0.75/1.13     Y := Y
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 1
% 0.75/1.13     1 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (7) {G0,W3,D2,L1,V0,M1} I { genlmt( c_tptpgeo_spindleheadmt, 
% 0.75/1.13    c_worldgeographymt ) }.
% 0.75/1.13  parent0: (130) {G0,W3,D2,L1,V0,M1}  { genlmt( c_tptpgeo_spindleheadmt, 
% 0.75/1.13    c_worldgeographymt ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (8) {G0,W3,D2,L1,V0,M1} I { genlmt( c_tptpgeo_member7_mt, 
% 0.75/1.13    c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  parent0: (131) {G0,W3,D2,L1,V0,M1}  { genlmt( c_tptpgeo_member7_mt, 
% 0.75/1.13    c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (9) {G0,W5,D2,L2,V0,M1} I { geolevel_3( c_georegion_l3_x17_y24
% 0.75/1.13     ), ! mtvisible( c_worldgeographymt ) }.
% 0.75/1.13  parent0: (132) {G0,W5,D2,L2,V0,M2}  { ! mtvisible( c_worldgeographymt ), 
% 0.75/1.13    geolevel_3( c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 1
% 0.75/1.13     1 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (10) {G0,W6,D2,L2,V0,M1} I { geographicalsubregions( 
% 0.75/1.13    c_georegion_l3_x17_y24, c_georegion_l4_x53_y74 ), ! mtvisible( 
% 0.75/1.13    c_tptpgeo_member7_mt ) }.
% 0.75/1.13  parent0: (133) {G0,W6,D2,L2,V0,M2}  { ! mtvisible( c_tptpgeo_member7_mt ), 
% 0.75/1.13    geographicalsubregions( c_georegion_l3_x17_y24, c_georegion_l4_x53_y74 )
% 0.75/1.13     }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 1
% 0.75/1.13     1 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (11) {G0,W6,D2,L2,V0,M1} I { inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l4_x53_y74 ), ! mtvisible( c_tptpgeo_member7_mt ) }.
% 0.75/1.13  parent0: (134) {G0,W6,D2,L2,V0,M2}  { ! mtvisible( c_tptpgeo_member7_mt ), 
% 0.75/1.13    inregion( c_geolocation_x53_y74, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 1
% 0.75/1.13     1 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (37) {G0,W11,D2,L3,V3,M1} I { ! inregion( X, Z ), inregion( X
% 0.75/1.13    , Y ), ! inregion( Z, Y ) }.
% 0.75/1.13  parent0: (163) {G0,W11,D2,L3,V3,M3}  { ! inregion( X, Z ), ! inregion( Z, Y
% 0.75/1.13     ), inregion( X, Y ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13     X := X
% 0.75/1.13     Y := Y
% 0.75/1.13     Z := Z
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13     1 ==> 2
% 0.75/1.13     2 ==> 1
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (43) {G0,W9,D2,L3,V2,M1} I { ! mtvisible( Y ), mtvisible( X )
% 0.75/1.13    , ! genlmt( Y, X ) }.
% 0.75/1.13  parent0: (171) {G0,W9,D2,L3,V2,M3}  { ! mtvisible( Y ), ! genlmt( Y, X ), 
% 0.75/1.13    mtvisible( X ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13     X := X
% 0.75/1.13     Y := Y
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13     1 ==> 2
% 0.75/1.13     2 ==> 1
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (49) {G0,W2,D2,L1,V0,M1} I { mtvisible( c_tptpgeo_member7_mt )
% 0.75/1.13     }.
% 0.75/1.13  parent0: (180) {G0,W2,D2,L1,V0,M1}  { mtvisible( c_tptpgeo_member7_mt ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (50) {G0,W7,D2,L2,V0,M1} I { ! geolevel_3( 
% 0.75/1.13    c_georegion_l3_x17_y24 ), ! inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  parent0: (181) {G0,W7,D2,L2,V0,M2}  { ! inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l3_x17_y24 ), ! geolevel_3( c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 1
% 0.75/1.13     1 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (204) {G1,W3,D2,L1,V0,M1}  { geographicalsubregions( 
% 0.75/1.13    c_georegion_l3_x17_y24, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  parent0[1]: (10) {G0,W6,D2,L2,V0,M1} I { geographicalsubregions( 
% 0.75/1.13    c_georegion_l3_x17_y24, c_georegion_l4_x53_y74 ), ! mtvisible( 
% 0.75/1.13    c_tptpgeo_member7_mt ) }.
% 0.75/1.13  parent1[0]: (49) {G0,W2,D2,L1,V0,M1} I { mtvisible( c_tptpgeo_member7_mt )
% 0.75/1.13     }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (59) {G1,W3,D2,L1,V0,M1} S(10);r(49) { geographicalsubregions
% 0.75/1.13    ( c_georegion_l3_x17_y24, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  parent0: (204) {G1,W3,D2,L1,V0,M1}  { geographicalsubregions( 
% 0.75/1.13    c_georegion_l3_x17_y24, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (205) {G1,W3,D2,L1,V0,M1}  { inregion( c_georegion_l4_x53_y74, 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  parent0[1]: (4) {G0,W7,D2,L2,V2,M1} I { inregion( Y, X ), ! 
% 0.75/1.13    geographicalsubregions( X, Y ) }.
% 0.75/1.13  parent1[0]: (59) {G1,W3,D2,L1,V0,M1} S(10);r(49) { geographicalsubregions( 
% 0.75/1.13    c_georegion_l3_x17_y24, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13     X := c_georegion_l3_x17_y24
% 0.75/1.13     Y := c_georegion_l4_x53_y74
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (60) {G2,W3,D2,L1,V0,M1} R(59,4) { inregion( 
% 0.75/1.13    c_georegion_l4_x53_y74, c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  parent0: (205) {G1,W3,D2,L1,V0,M1}  { inregion( c_georegion_l4_x53_y74, 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (206) {G1,W3,D2,L1,V0,M1}  { inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  parent0[1]: (11) {G0,W6,D2,L2,V0,M1} I { inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l4_x53_y74 ), ! mtvisible( c_tptpgeo_member7_mt ) }.
% 0.75/1.13  parent1[0]: (49) {G0,W2,D2,L1,V0,M1} I { mtvisible( c_tptpgeo_member7_mt )
% 0.75/1.13     }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (61) {G1,W3,D2,L1,V0,M1} S(11);r(49) { inregion( 
% 0.75/1.13    c_geolocation_x53_y74, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  parent0: (206) {G1,W3,D2,L1,V0,M1}  { inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (207) {G1,W5,D2,L2,V0,M2}  { ! mtvisible( 
% 0.75/1.13    c_tptpgeo_spindleheadmt ), mtvisible( c_worldgeographymt ) }.
% 0.75/1.13  parent0[2]: (43) {G0,W9,D2,L3,V2,M1} I { ! mtvisible( Y ), mtvisible( X ), 
% 0.75/1.13    ! genlmt( Y, X ) }.
% 0.75/1.13  parent1[0]: (7) {G0,W3,D2,L1,V0,M1} I { genlmt( c_tptpgeo_spindleheadmt, 
% 0.75/1.13    c_worldgeographymt ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13     X := c_worldgeographymt
% 0.75/1.13     Y := c_tptpgeo_spindleheadmt
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (93) {G1,W5,D2,L2,V0,M1} R(43,7) { mtvisible( 
% 0.75/1.13    c_worldgeographymt ), ! mtvisible( c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  parent0: (207) {G1,W5,D2,L2,V0,M2}  { ! mtvisible( c_tptpgeo_spindleheadmt
% 0.75/1.13     ), mtvisible( c_worldgeographymt ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 1
% 0.75/1.13     1 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (208) {G1,W5,D2,L2,V0,M2}  { ! mtvisible( c_tptpgeo_member7_mt
% 0.75/1.13     ), mtvisible( c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  parent0[2]: (43) {G0,W9,D2,L3,V2,M1} I { ! mtvisible( Y ), mtvisible( X ), 
% 0.75/1.13    ! genlmt( Y, X ) }.
% 0.75/1.13  parent1[0]: (8) {G0,W3,D2,L1,V0,M1} I { genlmt( c_tptpgeo_member7_mt, 
% 0.75/1.13    c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13     X := c_tptpgeo_spindleheadmt
% 0.75/1.13     Y := c_tptpgeo_member7_mt
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (209) {G1,W2,D2,L1,V0,M1}  { mtvisible( c_tptpgeo_spindleheadmt
% 0.75/1.13     ) }.
% 0.75/1.13  parent0[0]: (208) {G1,W5,D2,L2,V0,M2}  { ! mtvisible( c_tptpgeo_member7_mt
% 0.75/1.13     ), mtvisible( c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  parent1[0]: (49) {G0,W2,D2,L1,V0,M1} I { mtvisible( c_tptpgeo_member7_mt )
% 0.75/1.13     }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (94) {G1,W2,D2,L1,V0,M1} R(43,8);r(49) { mtvisible( 
% 0.75/1.13    c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  parent0: (209) {G1,W2,D2,L1,V0,M1}  { mtvisible( c_tptpgeo_spindleheadmt )
% 0.75/1.13     }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (211) {G1,W7,D2,L2,V1,M2}  { ! inregion( X, 
% 0.75/1.13    c_georegion_l4_x53_y74 ), inregion( X, c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  parent0[2]: (37) {G0,W11,D2,L3,V3,M1} I { ! inregion( X, Z ), inregion( X, 
% 0.75/1.13    Y ), ! inregion( Z, Y ) }.
% 0.75/1.13  parent1[0]: (60) {G2,W3,D2,L1,V0,M1} R(59,4) { inregion( 
% 0.75/1.13    c_georegion_l4_x53_y74, c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13     X := X
% 0.75/1.13     Y := c_georegion_l3_x17_y24
% 0.75/1.13     Z := c_georegion_l4_x53_y74
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (96) {G3,W7,D2,L2,V1,M1} R(37,60) { inregion( X, 
% 0.75/1.13    c_georegion_l3_x17_y24 ), ! inregion( X, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  parent0: (211) {G1,W7,D2,L2,V1,M2}  { ! inregion( X, c_georegion_l4_x53_y74
% 0.75/1.13     ), inregion( X, c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13     X := X
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 1
% 0.75/1.13     1 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (212) {G2,W2,D2,L1,V0,M1}  { mtvisible( c_worldgeographymt )
% 0.75/1.13     }.
% 0.75/1.13  parent0[1]: (93) {G1,W5,D2,L2,V0,M1} R(43,7) { mtvisible( 
% 0.75/1.13    c_worldgeographymt ), ! mtvisible( c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  parent1[0]: (94) {G1,W2,D2,L1,V0,M1} R(43,8);r(49) { mtvisible( 
% 0.75/1.13    c_tptpgeo_spindleheadmt ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (97) {G2,W2,D2,L1,V0,M1} S(93);r(94) { mtvisible( 
% 0.75/1.13    c_worldgeographymt ) }.
% 0.75/1.13  parent0: (212) {G2,W2,D2,L1,V0,M1}  { mtvisible( c_worldgeographymt ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (213) {G1,W2,D2,L1,V0,M1}  { geolevel_3( c_georegion_l3_x17_y24
% 0.75/1.13     ) }.
% 0.75/1.13  parent0[1]: (9) {G0,W5,D2,L2,V0,M1} I { geolevel_3( c_georegion_l3_x17_y24
% 0.75/1.13     ), ! mtvisible( c_worldgeographymt ) }.
% 0.75/1.13  parent1[0]: (97) {G2,W2,D2,L1,V0,M1} S(93);r(94) { mtvisible( 
% 0.75/1.13    c_worldgeographymt ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (99) {G3,W2,D2,L1,V0,M1} R(97,9) { geolevel_3( 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  parent0: (213) {G1,W2,D2,L1,V0,M1}  { geolevel_3( c_georegion_l3_x17_y24 )
% 0.75/1.13     }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (214) {G2,W3,D2,L1,V0,M1}  { inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  parent0[1]: (96) {G3,W7,D2,L2,V1,M1} R(37,60) { inregion( X, 
% 0.75/1.13    c_georegion_l3_x17_y24 ), ! inregion( X, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  parent1[0]: (61) {G1,W3,D2,L1,V0,M1} S(11);r(49) { inregion( 
% 0.75/1.13    c_geolocation_x53_y74, c_georegion_l4_x53_y74 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13     X := c_geolocation_x53_y74
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (119) {G4,W3,D2,L1,V0,M1} R(96,61) { inregion( 
% 0.75/1.13    c_geolocation_x53_y74, c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  parent0: (214) {G2,W3,D2,L1,V0,M1}  { inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13     0 ==> 0
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (215) {G1,W3,D2,L1,V0,M1}  { ! geolevel_3( 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  parent0[1]: (50) {G0,W7,D2,L2,V0,M1} I { ! geolevel_3( 
% 0.75/1.13    c_georegion_l3_x17_y24 ), ! inregion( c_geolocation_x53_y74, 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  parent1[0]: (119) {G4,W3,D2,L1,V0,M1} R(96,61) { inregion( 
% 0.75/1.13    c_geolocation_x53_y74, c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  resolution: (216) {G2,W0,D0,L0,V0,M0}  {  }.
% 0.75/1.13  parent0[0]: (215) {G1,W3,D2,L1,V0,M1}  { ! geolevel_3( 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  parent1[0]: (99) {G3,W2,D2,L1,V0,M1} R(97,9) { geolevel_3( 
% 0.75/1.13    c_georegion_l3_x17_y24 ) }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  substitution1:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  subsumption: (121) {G5,W0,D0,L0,V0,M0} R(119,50);r(99) {  }.
% 0.75/1.13  parent0: (216) {G2,W0,D0,L0,V0,M0}  {  }.
% 0.75/1.13  substitution0:
% 0.75/1.13  end
% 0.75/1.13  permutation0:
% 0.75/1.13  end
% 0.75/1.13  
% 0.75/1.13  Proof check complete!
% 0.75/1.13  
% 0.75/1.13  Memory use:
% 0.75/1.13  
% 0.75/1.13  space for terms:        1731
% 0.75/1.13  space for clauses:      5709
% 0.75/1.13  
% 0.75/1.13  
% 0.75/1.13  clauses generated:      205
% 0.75/1.13  clauses kept:           122
% 0.75/1.13  clauses selected:       109
% 0.75/1.13  clauses deleted:        3
% 0.75/1.13  clauses inuse deleted:  0
% 0.75/1.13  
% 0.75/1.13  subsentry:          123
% 0.75/1.13  literals s-matched: 92
% 0.75/1.13  literals matched:   92
% 0.75/1.13  full subsumption:   0
% 0.75/1.13  
% 0.75/1.13  checksum:           -1773688351
% 0.75/1.13  
% 0.75/1.13  
% 0.75/1.13  Bliksem ended
%------------------------------------------------------------------------------