%------------------------------------------------------------------------------
% File : Otter---3.3
% Problem : CSR033+1 : TPTP v8.1.0. Released v3.4.0.
% Transfm : none
% Format : tptp:raw
% Command : otter-tptp-script %s
% Computer : n020.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 : 300s
% DateTime : Wed Jul 27 12:48:47 EDT 2022
% Result : Theorem 1.99s 2.18s
% Output : Refutation 1.99s
% Verified :
% SZS Type : Refutation
% Derivation depth : 6
% Number of leaves : 15
% Syntax : Number of clauses : 30 ( 20 unt; 0 nHn; 30 RR)
% Number of literals : 43 ( 0 equ; 14 neg)
% Maximal clause size : 3 ( 1 avg)
% Maximal term depth : 1 ( 1 avg)
% Number of predicates : 6 ( 5 usr; 1 prp; 0-2 aty)
% Number of functors : 10 ( 10 usr; 10 con; 0-0 aty)
% Number of variables : 10 ( 0 sgn)
% Comments :
%------------------------------------------------------------------------------
cnf(1,axiom,
( ~ geographicalsubregions(A,B)
| inregion(B,A) ),
file('CSR033+1.p',unknown),
[] ).
cnf(2,axiom,
( ~ mtvisible(c_worldgeographymt)
| geolevel_1(c_georegion_l1_x2_y0) ),
file('CSR033+1.p',unknown),
[] ).
cnf(3,axiom,
( ~ mtvisible(c_tptpgeo_member2_mt)
| geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l2_x8_y2) ),
file('CSR033+1.p',unknown),
[] ).
cnf(4,axiom,
( ~ mtvisible(c_tptpgeo_member2_mt)
| geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l3_x25_y7) ),
file('CSR033+1.p',unknown),
[] ).
cnf(5,axiom,
( ~ mtvisible(c_tptpgeo_member2_mt)
| geographicalsubregions(c_georegion_l3_x25_y7,c_georegion_l4_x76_y23) ),
file('CSR033+1.p',unknown),
[] ).
cnf(6,axiom,
( ~ mtvisible(c_tptpgeo_member2_mt)
| inregion(c_geolocation_x76_y23,c_georegion_l4_x76_y23) ),
file('CSR033+1.p',unknown),
[] ).
cnf(22,axiom,
( ~ geographicalsubregions(A,B)
| ~ geographicalsubregions(B,C)
| geographicalsubregions(A,C) ),
file('CSR033+1.p',unknown),
[] ).
cnf(32,axiom,
( ~ inregion(A,B)
| ~ inregion(B,C)
| inregion(A,C) ),
file('CSR033+1.p',unknown),
[] ).
cnf(37,axiom,
( ~ mtvisible(A)
| ~ genlmt(A,B)
| mtvisible(B) ),
file('CSR033+1.p',unknown),
[] ).
cnf(42,axiom,
( ~ inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0)
| ~ geolevel_1(c_georegion_l1_x2_y0) ),
file('CSR033+1.p',unknown),
[] ).
cnf(49,axiom,
genlmt(c_tptpgeo_spindleheadmt,c_worldgeographymt),
file('CSR033+1.p',unknown),
[] ).
cnf(50,axiom,
genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member2_mt),
file('CSR033+1.p',unknown),
[] ).
cnf(51,axiom,
genlmt(c_tptpgeo_member8_mt,c_tptpgeo_spindleheadmt),
file('CSR033+1.p',unknown),
[] ).
cnf(52,axiom,
genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member8_mt),
file('CSR033+1.p',unknown),
[] ).
cnf(55,axiom,
mtvisible(c_tptpgeo_spindlecollectormt),
file('CSR033+1.p',unknown),
[] ).
cnf(75,plain,
mtvisible(c_tptpgeo_member2_mt),
inference(hyper,[status(thm)],[50,37,55]),
[iquote('hyper,50,37,55')] ).
cnf(80,plain,
inregion(c_geolocation_x76_y23,c_georegion_l4_x76_y23),
inference(hyper,[status(thm)],[75,6]),
[iquote('hyper,75,6')] ).
cnf(81,plain,
geographicalsubregions(c_georegion_l3_x25_y7,c_georegion_l4_x76_y23),
inference(hyper,[status(thm)],[75,5]),
[iquote('hyper,75,5')] ).
cnf(82,plain,
geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l3_x25_y7),
inference(hyper,[status(thm)],[75,4]),
[iquote('hyper,75,4')] ).
cnf(83,plain,
geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l2_x8_y2),
inference(hyper,[status(thm)],[75,3]),
[iquote('hyper,75,3')] ).
cnf(86,plain,
mtvisible(c_tptpgeo_member8_mt),
inference(hyper,[status(thm)],[52,37,55]),
[iquote('hyper,52,37,55')] ).
cnf(87,plain,
mtvisible(c_tptpgeo_spindleheadmt),
inference(hyper,[status(thm)],[86,37,51]),
[iquote('hyper,86,37,51')] ).
cnf(90,plain,
mtvisible(c_worldgeographymt),
inference(hyper,[status(thm)],[87,37,49]),
[iquote('hyper,87,37,49')] ).
cnf(92,plain,
geolevel_1(c_georegion_l1_x2_y0),
inference(hyper,[status(thm)],[90,2]),
[iquote('hyper,90,2')] ).
cnf(107,plain,
inregion(c_georegion_l4_x76_y23,c_georegion_l3_x25_y7),
inference(hyper,[status(thm)],[81,1]),
[iquote('hyper,81,1')] ).
cnf(114,plain,
geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l3_x25_y7),
inference(hyper,[status(thm)],[83,22,82]),
[iquote('hyper,83,22,82')] ).
cnf(124,plain,
inregion(c_geolocation_x76_y23,c_georegion_l3_x25_y7),
inference(hyper,[status(thm)],[107,32,80]),
[iquote('hyper,107,32,80')] ).
cnf(131,plain,
inregion(c_georegion_l3_x25_y7,c_georegion_l1_x2_y0),
inference(hyper,[status(thm)],[114,1]),
[iquote('hyper,114,1')] ).
cnf(136,plain,
inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0),
inference(hyper,[status(thm)],[131,32,124]),
[iquote('hyper,131,32,124')] ).
cnf(137,plain,
$false,
inference(hyper,[status(thm)],[136,42,92]),
[iquote('hyper,136,42,92')] ).
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.12/0.12 % Problem : CSR033+1 : TPTP v8.1.0. Released v3.4.0.
% 0.12/0.12 % Command : otter-tptp-script %s
% 0.12/0.33 % Computer : n020.cluster.edu
% 0.12/0.33 % Model : x86_64 x86_64
% 0.12/0.33 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.12/0.33 % Memory : 8042.1875MB
% 0.12/0.33 % OS : Linux 3.10.0-693.el7.x86_64
% 0.12/0.33 % CPULimit : 300
% 0.12/0.33 % WCLimit : 300
% 0.12/0.33 % DateTime : Wed Jul 27 04:31:23 EDT 2022
% 0.12/0.33 % CPUTime :
% 1.99/2.17 ----- Otter 3.3f, August 2004 -----
% 1.99/2.17 The process was started by sandbox on n020.cluster.edu,
% 1.99/2.17 Wed Jul 27 04:31:23 2022
% 1.99/2.17 The command was "./otter". The process ID is 4704.
% 1.99/2.17
% 1.99/2.17 set(prolog_style_variables).
% 1.99/2.17 set(auto).
% 1.99/2.17 dependent: set(auto1).
% 1.99/2.17 dependent: set(process_input).
% 1.99/2.17 dependent: clear(print_kept).
% 1.99/2.17 dependent: clear(print_new_demod).
% 1.99/2.17 dependent: clear(print_back_demod).
% 1.99/2.17 dependent: clear(print_back_sub).
% 1.99/2.17 dependent: set(control_memory).
% 1.99/2.17 dependent: assign(max_mem, 12000).
% 1.99/2.17 dependent: assign(pick_given_ratio, 4).
% 1.99/2.17 dependent: assign(stats_level, 1).
% 1.99/2.17 dependent: assign(max_seconds, 10800).
% 1.99/2.17 clear(print_given).
% 1.99/2.17
% 1.99/2.17 formula_list(usable).
% 1.99/2.17 genlmt(c_geographymt,c_basekb).
% 1.99/2.17 transitivebinarypredicate(c_inregion).
% 1.99/2.17 genlmt(c_worldgeographymt,c_geographymt).
% 1.99/2.17 genlinverse(c_geographicalsubregions,c_inregion).
% 1.99/2.17 all ARG1 ARG2 (geographicalsubregions(ARG1,ARG2)->inregion(ARG2,ARG1)).
% 1.99/2.17 transitivebinarypredicate(c_genlmt).
% 1.99/2.17 genlmt(c_basekb,c_universalvocabularymt).
% 1.99/2.17 genlmt(c_tptpgeo_spindleheadmt,c_worldgeographymt).
% 1.99/2.17 genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member2_mt).
% 1.99/2.17 genlmt(c_tptpgeo_member8_mt,c_tptpgeo_spindleheadmt).
% 1.99/2.17 genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member8_mt).
% 1.99/2.17 mtvisible(c_worldgeographymt)->geolevel_1(c_georegion_l1_x2_y0).
% 1.99/2.17 mtvisible(c_tptpgeo_member2_mt)->geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l2_x8_y2).
% 1.99/2.17 mtvisible(c_tptpgeo_member2_mt)->geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l3_x25_y7).
% 1.99/2.17 mtvisible(c_tptpgeo_member2_mt)->geographicalsubregions(c_georegion_l3_x25_y7,c_georegion_l4_x76_y23).
% 1.99/2.17 mtvisible(c_tptpgeo_member2_mt)->inregion(c_geolocation_x76_y23,c_georegion_l4_x76_y23).
% 1.99/2.17 all OBJ COL1 COL2 (-(isa(OBJ,COL1)&isa(OBJ,COL2)&disjointwith(COL1,COL2))).
% 1.99/2.17 all SPECPRED PRED GENLPRED (genlinverse(SPECPRED,PRED)&genlinverse(PRED,GENLPRED)->genlpreds(SPECPRED,GENLPRED)).
% 1.99/2.17 all ARG1 INS (genlpreds(ARG1,INS)->predicate(INS)).
% 1.99/2.17 all ARG1 INS (genlpreds(ARG1,INS)->predicate(INS)).
% 1.99/2.17 all INS ARG2 (genlpreds(INS,ARG2)->predicate(INS)).
% 1.99/2.17 all INS ARG2 (genlpreds(INS,ARG2)->predicate(INS)).
% 1.99/2.17 all X Y Z (genlpreds(X,Y)&genlpreds(Y,Z)->genlpreds(X,Z)).
% 1.99/2.17 all X (predicate(X)->genlpreds(X,X)).
% 1.99/2.17 all X (predicate(X)->genlpreds(X,X)).
% 1.99/2.17 all ARG1 INS (disjointwith(ARG1,INS)->collection(INS)).
% 1.99/2.17 all INS ARG2 (disjointwith(INS,ARG2)->collection(INS)).
% 1.99/2.17 all X Y (disjointwith(X,Y)->disjointwith(Y,X)).
% 1.99/2.17 all ARG1 OLD NEW (disjointwith(ARG1,OLD)&genls(NEW,OLD)->disjointwith(ARG1,NEW)).
% 1.99/2.17 all OLD ARG2 NEW (disjointwith(OLD,ARG2)&genls(NEW,OLD)->disjointwith(NEW,ARG2)).
% 1.99/2.17 all X (isa(X,c_geolevel_1)->geolevel_1(X)).
% 1.99/2.17 all X (geolevel_1(X)->isa(X,c_geolevel_1)).
% 1.99/2.17 all ARG1 INS (geographicalsubregions(ARG1,INS)->geographicalregion(INS)).
% 1.99/2.17 all INS ARG2 (geographicalsubregions(INS,ARG2)->geographicalregion(INS)).
% 1.99/2.17 all X Y Z (geographicalsubregions(X,Y)&geographicalsubregions(Y,Z)->geographicalsubregions(X,Z)).
% 1.99/2.17 all X (geographicalregion(X)->geographicalsubregions(X,X)).
% 1.99/2.17 all ARG1 INS (genlinverse(ARG1,INS)->binarypredicate(INS)).
% 1.99/2.17 all INS ARG2 (genlinverse(INS,ARG2)->binarypredicate(INS)).
% 1.99/2.17 all OLD ARG2 NEW (genlinverse(OLD,ARG2)&genlpreds(NEW,OLD)->genlinverse(NEW,ARG2)).
% 1.99/2.17 all ARG1 OLD NEW (genlinverse(ARG1,OLD)&genlpreds(OLD,NEW)->genlinverse(ARG1,NEW)).
% 1.99/2.17 all X (isa(X,c_transitivebinarypredicate)->transitivebinarypredicate(X)).
% 1.99/2.17 all X (transitivebinarypredicate(X)->isa(X,c_transitivebinarypredicate)).
% 1.99/2.17 all ARG1 INS (inregion(ARG1,INS)->spatialthing_nonsituational(INS)).
% 1.99/2.17 all INS ARG2 (inregion(INS,ARG2)->spatialthing_nonsituational(INS)).
% 1.99/2.17 all X Y Z (inregion(X,Y)&inregion(Y,Z)->inregion(X,Z)).
% 1.99/2.17 all X (spatialthing_nonsituational(X)->inregion(X,X)).
% 1.99/2.17 all ARG1 INS (isa(ARG1,INS)->collection(INS)).
% 1.99/2.17 all ARG1 INS (isa(ARG1,INS)->collection(INS)).
% 1.99/2.17 all INS ARG2 (isa(INS,ARG2)->thing(INS)).
% 1.99/2.17 all INS ARG2 (isa(INS,ARG2)->thing(INS)).
% 1.99/2.17 all ARG1 OLD NEW (isa(ARG1,OLD)&genls(OLD,NEW)->isa(ARG1,NEW)).
% 1.99/2.17 mtvisible(c_universalvocabularymt).
% 1.99/2.17 all SPECMT GENLMT (mtvisible(SPECMT)&genlmt(SPECMT,GENLMT)->mtvisible(GENLMT)).
% 1.99/2.17 all ARG1 INS (genlmt(ARG1,INS)->microtheory(INS)).
% 1.99/2.17 all ARG1 INS (genlmt(ARG1,INS)->microtheory(INS)).
% 1.99/2.17 all INS ARG2 (genlmt(INS,ARG2)->microtheory(INS)).
% 1.99/2.17 all INS ARG2 (genlmt(INS,ARG2)->microtheory(INS)).
% 1.99/2.17 all X Y Z (genlmt(X,Y)&genlmt(Y,Z)->genlmt(X,Z)).
% 1.99/2.17 all X (microtheory(X)->genlmt(X,X)).
% 1.99/2.17 all X (microtheory(X)->genlmt(X,X)).
% 1.99/2.17 mtvisible(c_basekb).
% 1.99/2.17 -(mtvisible(c_tptpgeo_spindlecollectormt)->inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0)&geolevel_1(c_georegion_l1_x2_y0)).
% 1.99/2.17 end_of_list.
% 1.99/2.17
% 1.99/2.17 -------> usable clausifies to:
% 1.99/2.17
% 1.99/2.17 list(usable).
% 1.99/2.17 0 [] genlmt(c_geographymt,c_basekb).
% 1.99/2.17 0 [] transitivebinarypredicate(c_inregion).
% 1.99/2.17 0 [] genlmt(c_worldgeographymt,c_geographymt).
% 1.99/2.17 0 [] genlinverse(c_geographicalsubregions,c_inregion).
% 1.99/2.17 0 [] -geographicalsubregions(ARG1,ARG2)|inregion(ARG2,ARG1).
% 1.99/2.17 0 [] transitivebinarypredicate(c_genlmt).
% 1.99/2.17 0 [] genlmt(c_basekb,c_universalvocabularymt).
% 1.99/2.17 0 [] genlmt(c_tptpgeo_spindleheadmt,c_worldgeographymt).
% 1.99/2.17 0 [] genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member2_mt).
% 1.99/2.17 0 [] genlmt(c_tptpgeo_member8_mt,c_tptpgeo_spindleheadmt).
% 1.99/2.17 0 [] genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member8_mt).
% 1.99/2.17 0 [] -mtvisible(c_worldgeographymt)|geolevel_1(c_georegion_l1_x2_y0).
% 1.99/2.17 0 [] -mtvisible(c_tptpgeo_member2_mt)|geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l2_x8_y2).
% 1.99/2.17 0 [] -mtvisible(c_tptpgeo_member2_mt)|geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l3_x25_y7).
% 1.99/2.17 0 [] -mtvisible(c_tptpgeo_member2_mt)|geographicalsubregions(c_georegion_l3_x25_y7,c_georegion_l4_x76_y23).
% 1.99/2.17 0 [] -mtvisible(c_tptpgeo_member2_mt)|inregion(c_geolocation_x76_y23,c_georegion_l4_x76_y23).
% 1.99/2.17 0 [] -isa(OBJ,COL1)| -isa(OBJ,COL2)| -disjointwith(COL1,COL2).
% 1.99/2.17 0 [] -genlinverse(SPECPRED,PRED)| -genlinverse(PRED,GENLPRED)|genlpreds(SPECPRED,GENLPRED).
% 1.99/2.17 0 [] -genlpreds(ARG1,INS)|predicate(INS).
% 1.99/2.17 0 [] -genlpreds(ARG1,INS)|predicate(INS).
% 1.99/2.17 0 [] -genlpreds(INS,ARG2)|predicate(INS).
% 1.99/2.17 0 [] -genlpreds(INS,ARG2)|predicate(INS).
% 1.99/2.17 0 [] -genlpreds(X,Y)| -genlpreds(Y,Z)|genlpreds(X,Z).
% 1.99/2.17 0 [] -predicate(X)|genlpreds(X,X).
% 1.99/2.17 0 [] -predicate(X)|genlpreds(X,X).
% 1.99/2.17 0 [] -disjointwith(ARG1,INS)|collection(INS).
% 1.99/2.17 0 [] -disjointwith(INS,ARG2)|collection(INS).
% 1.99/2.17 0 [] -disjointwith(X,Y)|disjointwith(Y,X).
% 1.99/2.17 0 [] -disjointwith(ARG1,OLD)| -genls(NEW,OLD)|disjointwith(ARG1,NEW).
% 1.99/2.17 0 [] -disjointwith(OLD,ARG2)| -genls(NEW,OLD)|disjointwith(NEW,ARG2).
% 1.99/2.17 0 [] -isa(X,c_geolevel_1)|geolevel_1(X).
% 1.99/2.17 0 [] -geolevel_1(X)|isa(X,c_geolevel_1).
% 1.99/2.17 0 [] -geographicalsubregions(ARG1,INS)|geographicalregion(INS).
% 1.99/2.17 0 [] -geographicalsubregions(INS,ARG2)|geographicalregion(INS).
% 1.99/2.17 0 [] -geographicalsubregions(X,Y)| -geographicalsubregions(Y,Z)|geographicalsubregions(X,Z).
% 1.99/2.17 0 [] -geographicalregion(X)|geographicalsubregions(X,X).
% 1.99/2.17 0 [] -genlinverse(ARG1,INS)|binarypredicate(INS).
% 1.99/2.17 0 [] -genlinverse(INS,ARG2)|binarypredicate(INS).
% 1.99/2.17 0 [] -genlinverse(OLD,ARG2)| -genlpreds(NEW,OLD)|genlinverse(NEW,ARG2).
% 1.99/2.17 0 [] -genlinverse(ARG1,OLD)| -genlpreds(OLD,NEW)|genlinverse(ARG1,NEW).
% 1.99/2.17 0 [] -isa(X,c_transitivebinarypredicate)|transitivebinarypredicate(X).
% 1.99/2.17 0 [] -transitivebinarypredicate(X)|isa(X,c_transitivebinarypredicate).
% 1.99/2.17 0 [] -inregion(ARG1,INS)|spatialthing_nonsituational(INS).
% 1.99/2.17 0 [] -inregion(INS,ARG2)|spatialthing_nonsituational(INS).
% 1.99/2.17 0 [] -inregion(X,Y)| -inregion(Y,Z)|inregion(X,Z).
% 1.99/2.17 0 [] -spatialthing_nonsituational(X)|inregion(X,X).
% 1.99/2.17 0 [] -isa(ARG1,INS)|collection(INS).
% 1.99/2.17 0 [] -isa(ARG1,INS)|collection(INS).
% 1.99/2.17 0 [] -isa(INS,ARG2)|thing(INS).
% 1.99/2.17 0 [] -isa(INS,ARG2)|thing(INS).
% 1.99/2.17 0 [] -isa(ARG1,OLD)| -genls(OLD,NEW)|isa(ARG1,NEW).
% 1.99/2.17 0 [] mtvisible(c_universalvocabularymt).
% 1.99/2.17 0 [] -mtvisible(SPECMT)| -genlmt(SPECMT,GENLMT)|mtvisible(GENLMT).
% 1.99/2.17 0 [] -genlmt(ARG1,INS)|microtheory(INS).
% 1.99/2.17 0 [] -genlmt(ARG1,INS)|microtheory(INS).
% 1.99/2.17 0 [] -genlmt(INS,ARG2)|microtheory(INS).
% 1.99/2.17 0 [] -genlmt(INS,ARG2)|microtheory(INS).
% 1.99/2.17 0 [] -genlmt(X,Y)| -genlmt(Y,Z)|genlmt(X,Z).
% 1.99/2.17 0 [] -microtheory(X)|genlmt(X,X).
% 1.99/2.17 0 [] -microtheory(X)|genlmt(X,X).
% 1.99/2.17 0 [] mtvisible(c_basekb).
% 1.99/2.17 0 [] mtvisible(c_tptpgeo_spindlecollectormt).
% 1.99/2.17 0 [] -inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0)| -geolevel_1(c_georegion_l1_x2_y0).
% 1.99/2.17 end_of_list.
% 1.99/2.17
% 1.99/2.17 SCAN INPUT: prop=0, horn=1, equality=0, symmetry=0, max_lits=3.
% 1.99/2.17
% 1.99/2.17 This is a Horn set without equality. The strategy will
% 1.99/2.17 be hyperresolution, with satellites in sos and nuclei
% 1.99/2.17 in usable.
% 1.99/2.17
% 1.99/2.17 dependent: set(hyper_res).
% 1.99/2.17 dependent: clear(order_hyper).
% 1.99/2.17
% 1.99/2.17 ------------> process usable:
% 1.99/2.17 ** KEPT (pick-wt=6): 1 [] -geographicalsubregions(A,B)|inregion(B,A).
% 1.99/2.17 ** KEPT (pick-wt=4): 2 [] -mtvisible(c_worldgeographymt)|geolevel_1(c_georegion_l1_x2_y0).
% 1.99/2.17 ** KEPT (pick-wt=5): 3 [] -mtvisible(c_tptpgeo_member2_mt)|geographicalsubregions(c_georegion_l1_x2_y0,c_georegion_l2_x8_y2).
% 1.99/2.17 ** KEPT (pick-wt=5): 4 [] -mtvisible(c_tptpgeo_member2_mt)|geographicalsubregions(c_georegion_l2_x8_y2,c_georegion_l3_x25_y7).
% 1.99/2.17 ** KEPT (pick-wt=5): 5 [] -mtvisible(c_tptpgeo_member2_mt)|geographicalsubregions(c_georegion_l3_x25_y7,c_georegion_l4_x76_y23).
% 1.99/2.17 ** KEPT (pick-wt=5): 6 [] -mtvisible(c_tptpgeo_member2_mt)|inregion(c_geolocation_x76_y23,c_georegion_l4_x76_y23).
% 1.99/2.17 ** KEPT (pick-wt=9): 7 [] -isa(A,B)| -isa(A,C)| -disjointwith(B,C).
% 1.99/2.17 ** KEPT (pick-wt=9): 8 [] -genlinverse(A,B)| -genlinverse(B,C)|genlpreds(A,C).
% 1.99/2.17 ** KEPT (pick-wt=5): 9 [] -genlpreds(A,B)|predicate(B).
% 1.99/2.17 Following clause subsumed by 9 during input processing: 0 [] -genlpreds(A,B)|predicate(B).
% 1.99/2.17 ** KEPT (pick-wt=5): 10 [] -genlpreds(A,B)|predicate(A).
% 1.99/2.17 Following clause subsumed by 10 during input processing: 0 [] -genlpreds(A,B)|predicate(A).
% 1.99/2.17 ** KEPT (pick-wt=9): 11 [] -genlpreds(A,B)| -genlpreds(B,C)|genlpreds(A,C).
% 1.99/2.17 ** KEPT (pick-wt=5): 12 [] -predicate(A)|genlpreds(A,A).
% 1.99/2.17 Following clause subsumed by 12 during input processing: 0 [] -predicate(A)|genlpreds(A,A).
% 1.99/2.17 ** KEPT (pick-wt=5): 13 [] -disjointwith(A,B)|collection(B).
% 1.99/2.17 ** KEPT (pick-wt=5): 14 [] -disjointwith(A,B)|collection(A).
% 1.99/2.17 ** KEPT (pick-wt=6): 15 [] -disjointwith(A,B)|disjointwith(B,A).
% 1.99/2.17 ** KEPT (pick-wt=9): 16 [] -disjointwith(A,B)| -genls(C,B)|disjointwith(A,C).
% 1.99/2.17 ** KEPT (pick-wt=9): 17 [] -disjointwith(A,B)| -genls(C,A)|disjointwith(C,B).
% 1.99/2.17 ** KEPT (pick-wt=5): 18 [] -isa(A,c_geolevel_1)|geolevel_1(A).
% 1.99/2.17 ** KEPT (pick-wt=5): 19 [] -geolevel_1(A)|isa(A,c_geolevel_1).
% 1.99/2.17 ** KEPT (pick-wt=5): 20 [] -geographicalsubregions(A,B)|geographicalregion(B).
% 1.99/2.17 ** KEPT (pick-wt=5): 21 [] -geographicalsubregions(A,B)|geographicalregion(A).
% 1.99/2.17 ** KEPT (pick-wt=9): 22 [] -geographicalsubregions(A,B)| -geographicalsubregions(B,C)|geographicalsubregions(A,C).
% 1.99/2.17 ** KEPT (pick-wt=5): 23 [] -geographicalregion(A)|geographicalsubregions(A,A).
% 1.99/2.17 ** KEPT (pick-wt=5): 24 [] -genlinverse(A,B)|binarypredicate(B).
% 1.99/2.17 ** KEPT (pick-wt=5): 25 [] -genlinverse(A,B)|binarypredicate(A).
% 1.99/2.17 ** KEPT (pick-wt=9): 26 [] -genlinverse(A,B)| -genlpreds(C,A)|genlinverse(C,B).
% 1.99/2.17 ** KEPT (pick-wt=9): 27 [] -genlinverse(A,B)| -genlpreds(B,C)|genlinverse(A,C).
% 1.99/2.17 ** KEPT (pick-wt=5): 28 [] -isa(A,c_transitivebinarypredicate)|transitivebinarypredicate(A).
% 1.99/2.17 ** KEPT (pick-wt=5): 29 [] -transitivebinarypredicate(A)|isa(A,c_transitivebinarypredicate).
% 1.99/2.17 ** KEPT (pick-wt=5): 30 [] -inregion(A,B)|spatialthing_nonsituational(B).
% 1.99/2.17 ** KEPT (pick-wt=5): 31 [] -inregion(A,B)|spatialthing_nonsituational(A).
% 1.99/2.17 ** KEPT (pick-wt=9): 32 [] -inregion(A,B)| -inregion(B,C)|inregion(A,C).
% 1.99/2.17 ** KEPT (pick-wt=5): 33 [] -spatialthing_nonsituational(A)|inregion(A,A).
% 1.99/2.17 ** KEPT (pick-wt=5): 34 [] -isa(A,B)|collection(B).
% 1.99/2.17 Following clause subsumed by 34 during input processing: 0 [] -isa(A,B)|collection(B).
% 1.99/2.17 ** KEPT (pick-wt=5): 35 [] -isa(A,B)|thing(A).
% 1.99/2.17 Following clause subsumed by 35 during input processing: 0 [] -isa(A,B)|thing(A).
% 1.99/2.17 ** KEPT (pick-wt=9): 36 [] -isa(A,B)| -genls(B,C)|isa(A,C).
% 1.99/2.17 ** KEPT (pick-wt=7): 37 [] -mtvisible(A)| -genlmt(A,B)|mtvisible(B).
% 1.99/2.17 ** KEPT (pick-wt=5): 38 [] -genlmt(A,B)|microtheory(B).
% 1.99/2.17 Following clause subsumed by 38 during input processing: 0 [] -genlmt(A,B)|microtheory(B).
% 1.99/2.17 ** KEPT (pick-wt=5): 39 [] -genlmt(A,B)|microtheory(A).
% 1.99/2.17 Following clause subsumed by 39 during input processing: 0 [] -genlmt(A,B)|microtheory(A).
% 1.99/2.17 ** KEPT (pick-wt=9): 40 [] -genlmt(A,B)| -genlmt(B,C)|genlmt(A,C).
% 1.99/2.17 ** KEPT (pick-wt=5): 41 [] -microtheory(A)|genlmt(A,A).
% 1.99/2.17 Following clause subsumed by 41 during input processing: 0 [] -microtheory(A)|genlmt(A,A).
% 1.99/2.17 ** KEPT (pick-wt=5): 42 [] -inregion(c_geolocation_x76_y23,c_georegion_l1_x2_y0)| -geolevel_1(c_georegion_l1_x2_y0).
% 1.99/2.17
% 1.99/2.17 ------------> process sos:
% 1.99/2.17 ** KEPT (pick-wt=3): 43 [] genlmt(c_geographymt,c_basekb).
% 1.99/2.18 ** KEPT (pick-wt=2): 44 [] transitivebinarypredicate(c_inregion).
% 1.99/2.18 ** KEPT (pick-wt=3): 45 [] genlmt(c_worldgeographymt,c_geographymt).
% 1.99/2.18 ** KEPT (pick-wt=3): 46 [] genlinverse(c_geographicalsubregions,c_inregion).
% 1.99/2.18 ** KEPT (pick-wt=2): 47 [] transitivebinarypredicate(c_genlmt).
% 1.99/2.18 ** KEPT (pick-wt=3): 48 [] genlmt(c_basekb,c_universalvocabularymt).
% 1.99/2.18 ** KEPT (pick-wt=3): 49 [] genlmt(c_tptpgeo_spindleheadmt,c_worldgeographymt).
% 1.99/2.18 ** KEPT (pick-wt=3): 50 [] genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member2_mt).
% 1.99/2.18 ** KEPT (pick-wt=3): 51 [] genlmt(c_tptpgeo_member8_mt,c_tptpgeo_spindleheadmt).
% 1.99/2.18 ** KEPT (pick-wt=3): 52 [] genlmt(c_tptpgeo_spindlecollectormt,c_tptpgeo_member8_mt).
% 1.99/2.18 ** KEPT (pick-wt=2): 53 [] mtvisible(c_universalvocabularymt).
% 1.99/2.18 ** KEPT (pick-wt=2): 54 [] mtvisible(c_basekb).
% 1.99/2.18 ** KEPT (pick-wt=2): 55 [] mtvisible(c_tptpgeo_spindlecollectormt).
% 1.99/2.18
% 1.99/2.18 ======= end of input processing =======
% 1.99/2.18
% 1.99/2.18 =========== start of search ===========
% 1.99/2.18
% 1.99/2.18 -------- PROOF --------
% 1.99/2.18
% 1.99/2.18 -----> EMPTY CLAUSE at 0.00 sec ----> 137 [hyper,136,42,92] $F.
% 1.99/2.18
% 1.99/2.18 Length of proof is 14. Level of proof is 5.
% 1.99/2.18
% 1.99/2.18 ---------------- PROOF ----------------
% 1.99/2.18 % SZS status Theorem
% 1.99/2.18 % SZS output start Refutation
% See solution above
% 1.99/2.18 ------------ end of proof -------------
% 1.99/2.18
% 1.99/2.18
% 1.99/2.18 Search stopped by max_proofs option.
% 1.99/2.18
% 1.99/2.18
% 1.99/2.18 Search stopped by max_proofs option.
% 1.99/2.18
% 1.99/2.18 ============ end of search ============
% 1.99/2.18
% 1.99/2.18 -------------- statistics -------------
% 1.99/2.18 clauses given 94
% 1.99/2.18 clauses generated 342
% 1.99/2.18 clauses kept 136
% 1.99/2.18 clauses forward subsumed 268
% 1.99/2.18 clauses back subsumed 5
% 1.99/2.18 Kbytes malloced 976
% 1.99/2.18
% 1.99/2.18 ----------- times (seconds) -----------
% 1.99/2.18 user CPU time 0.00 (0 hr, 0 min, 0 sec)
% 1.99/2.18 system CPU time 0.00 (0 hr, 0 min, 0 sec)
% 1.99/2.18 wall-clock time 2 (0 hr, 0 min, 2 sec)
% 1.99/2.18
% 1.99/2.18 That finishes the proof of the theorem.
% 1.99/2.18
% 1.99/2.18 Process 4704 finished Wed Jul 27 04:31:25 2022
% 1.99/2.18 Otter interrupted
% 1.99/2.18 PROOF FOUND
%------------------------------------------------------------------------------