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Otter---3.3.THM-Ref.s

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%------------------------------------------------------------------------------
% File     : Otter---3.3
% Problem  : SWB010+2 : TPTP v8.1.0. Released v5.2.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : otter-tptp-script %s

% Computer : n025.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 13:17:40 EDT 2022

% Result   : Theorem 9.97s 10.19s
% Output   : Refutation 9.97s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :    7
%            Number of leaves      :   20
% Syntax   : Number of clauses     :   35 (  18 unt;   9 nHn;  27 RR)
%            Number of literals    :   70 (   2 equ;  28 neg)
%            Maximal clause size   :    5 (   2 avg)
%            Maximal term depth    :    2 (   1 avg)
%            Number of predicates  :    6 (   4 usr;   1 prp; 0-3 aty)
%            Number of functors    :   20 (  20 usr;  19 con; 0-3 aty)
%            Number of variables   :   41 (   3 sgn)

% Comments : 
%------------------------------------------------------------------------------
cnf(1,axiom,
    ( ~ iext(uri_rdf_type,A,B)
    | icext(B,A) ),
    file('SWB010+2.p',unknown),
    [] ).

cnf(2,axiom,
    ( iext(uri_rdf_type,A,B)
    | ~ icext(B,A) ),
    file('SWB010+2.p',unknown),
    [] ).

cnf(3,axiom,
    ( ~ iext(uri_owl_sourceIndividual,A,B)
    | icext(uri_owl_NegativePropertyAssertion,A) ),
    file('SWB010+2.p',unknown),
    [] ).

cnf(6,axiom,
    ( ~ iext(uri_owl_onProperty,A,B)
    | ip(B) ),
    file('SWB010+2.p',unknown),
    [] ).

cnf(9,axiom,
    ( ~ iext(uri_owl_complementOf,A,B)
    | ~ icext(A,C)
    | ~ icext(B,C) ),
    file('SWB010+2.p',unknown),
    [] ).

cnf(13,axiom,
    ( ~ iext(uri_rdf_first,A,B)
    | ~ iext(uri_rdf_rest,A,uri_rdf_nil)
    | ~ iext(uri_owl_oneOf,C,A)
    | icext(C,D)
    | D != B ),
    file('SWB010+2.p',unknown),
    [] ).

cnf(16,axiom,
    ( ~ iext(uri_owl_allValuesFrom,A,B)
    | ~ iext(uri_owl_onProperty,A,C)
    | ~ icext(A,D)
    | ~ iext(C,D,E)
    | icext(B,E) ),
    file('SWB010+2.p',unknown),
    [] ).

cnf(19,axiom,
    ( ~ ir(A)
    | ~ ip(B)
    | ~ ir(C)
    | iext(B,A,C)
    | iext(uri_owl_sourceIndividual,dollar_f3(B,A,C),A) ),
    file('SWB010+2.p',unknown),
    [] ).

cnf(20,axiom,
    ( ~ ir(A)
    | ~ ip(B)
    | ~ ir(C)
    | iext(B,A,C)
    | iext(uri_owl_assertionProperty,dollar_f3(B,A,C),B) ),
    file('SWB010+2.p',unknown),
    [] ).

cnf(21,axiom,
    ( ~ ir(A)
    | ~ ip(B)
    | ~ ir(C)
    | iext(B,A,C)
    | iext(uri_owl_targetIndividual,dollar_f3(B,A,C),C) ),
    file('SWB010+2.p',unknown),
    [] ).

cnf(22,axiom,
    ( ~ iext(uri_rdf_type,A,uri_owl_NegativePropertyAssertion)
    | ~ iext(uri_owl_sourceIndividual,A,uri_ex_s)
    | ~ iext(uri_owl_assertionProperty,A,uri_ex_p)
    | ~ iext(uri_owl_targetIndividual,A,uri_ex_o) ),
    file('SWB010+2.p',unknown),
    [] ).

cnf(30,axiom,
    A = A,
    file('SWB010+2.p',unknown),
    [] ).

cnf(31,axiom,
    ir(A),
    file('SWB010+2.p',unknown),
    [] ).

cnf(33,axiom,
    iext(uri_rdf_type,uri_ex_s,dollar_c4),
    file('SWB010+2.p',unknown),
    [] ).

cnf(34,axiom,
    iext(uri_owl_onProperty,dollar_c4,uri_ex_p),
    file('SWB010+2.p',unknown),
    [] ).

cnf(35,axiom,
    iext(uri_owl_allValuesFrom,dollar_c4,dollar_c3),
    file('SWB010+2.p',unknown),
    [] ).

cnf(36,axiom,
    iext(uri_owl_complementOf,dollar_c3,dollar_c2),
    file('SWB010+2.p',unknown),
    [] ).

cnf(37,axiom,
    iext(uri_owl_oneOf,dollar_c2,dollar_c1),
    file('SWB010+2.p',unknown),
    [] ).

cnf(38,axiom,
    iext(uri_rdf_first,dollar_c1,uri_ex_o),
    file('SWB010+2.p',unknown),
    [] ).

cnf(39,axiom,
    iext(uri_rdf_rest,dollar_c1,uri_rdf_nil),
    file('SWB010+2.p',unknown),
    [] ).

cnf(46,plain,
    icext(dollar_c4,uri_ex_s),
    inference(hyper,[status(thm)],[33,1]),
    [iquote('hyper,33,1')] ).

cnf(50,plain,
    ip(uri_ex_p),
    inference(hyper,[status(thm)],[34,6]),
    [iquote('hyper,34,6')] ).

cnf(58,plain,
    ( iext(uri_ex_p,A,B)
    | iext(uri_owl_targetIndividual,dollar_f3(uri_ex_p,A,B),B) ),
    inference(hyper,[status(thm)],[50,21,31,31]),
    [iquote('hyper,50,21,31,31')] ).

cnf(59,plain,
    ( iext(uri_ex_p,A,B)
    | iext(uri_owl_assertionProperty,dollar_f3(uri_ex_p,A,B),uri_ex_p) ),
    inference(hyper,[status(thm)],[50,20,31,31]),
    [iquote('hyper,50,20,31,31')] ).

cnf(60,plain,
    ( iext(uri_ex_p,A,B)
    | iext(uri_owl_sourceIndividual,dollar_f3(uri_ex_p,A,B),A) ),
    inference(hyper,[status(thm)],[50,19,31,31]),
    [iquote('hyper,50,19,31,31')] ).

cnf(86,plain,
    icext(dollar_c2,uri_ex_o),
    inference(hyper,[status(thm)],[39,13,38,37,30]),
    [iquote('hyper,39,13,38,37,30')] ).

cnf(1236,plain,
    ( iext(uri_owl_targetIndividual,dollar_f3(uri_ex_p,uri_ex_s,A),A)
    | icext(dollar_c3,A) ),
    inference(hyper,[status(thm)],[58,16,35,34,46]),
    [iquote('hyper,58,16,35,34,46')] ).

cnf(1286,plain,
    ( iext(uri_owl_assertionProperty,dollar_f3(uri_ex_p,uri_ex_s,A),uri_ex_p)
    | icext(dollar_c3,A) ),
    inference(hyper,[status(thm)],[59,16,35,34,46]),
    [iquote('hyper,59,16,35,34,46')] ).

cnf(1345,plain,
    ( iext(uri_owl_sourceIndividual,dollar_f3(uri_ex_p,uri_ex_s,A),uri_ex_s)
    | icext(dollar_c3,A) ),
    inference(hyper,[status(thm)],[60,16,35,34,46]),
    [iquote('hyper,60,16,35,34,46')] ).

cnf(3848,plain,
    iext(uri_owl_targetIndividual,dollar_f3(uri_ex_p,uri_ex_s,uri_ex_o),uri_ex_o),
    inference(hyper,[status(thm)],[1236,9,36,86]),
    [iquote('hyper,1236,9,36,86')] ).

cnf(3859,plain,
    iext(uri_owl_assertionProperty,dollar_f3(uri_ex_p,uri_ex_s,uri_ex_o),uri_ex_p),
    inference(hyper,[status(thm)],[1286,9,36,86]),
    [iquote('hyper,1286,9,36,86')] ).

cnf(3866,plain,
    iext(uri_owl_sourceIndividual,dollar_f3(uri_ex_p,uri_ex_s,uri_ex_o),uri_ex_s),
    inference(hyper,[status(thm)],[1345,9,36,86]),
    [iquote('hyper,1345,9,36,86')] ).

cnf(3868,plain,
    icext(uri_owl_NegativePropertyAssertion,dollar_f3(uri_ex_p,uri_ex_s,uri_ex_o)),
    inference(hyper,[status(thm)],[3866,3]),
    [iquote('hyper,3866,3')] ).

cnf(3875,plain,
    iext(uri_rdf_type,dollar_f3(uri_ex_p,uri_ex_s,uri_ex_o),uri_owl_NegativePropertyAssertion),
    inference(hyper,[status(thm)],[3868,2]),
    [iquote('hyper,3868,2')] ).

cnf(3884,plain,
    $false,
    inference(hyper,[status(thm)],[3875,22,3866,3859,3848]),
    [iquote('hyper,3875,22,3866,3859,3848')] ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.10/0.11  % Problem  : SWB010+2 : TPTP v8.1.0. Released v5.2.0.
% 0.10/0.12  % Command  : otter-tptp-script %s
% 0.11/0.33  % Computer : n025.cluster.edu
% 0.11/0.33  % Model    : x86_64 x86_64
% 0.11/0.33  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.11/0.33  % Memory   : 8042.1875MB
% 0.11/0.33  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.11/0.33  % CPULimit : 300
% 0.11/0.33  % WCLimit  : 300
% 0.11/0.33  % DateTime : Wed Jul 27 02:39:45 EDT 2022
% 0.11/0.33  % CPUTime  : 
% 2.00/2.19  ----- Otter 3.3f, August 2004 -----
% 2.00/2.19  The process was started by sandbox2 on n025.cluster.edu,
% 2.00/2.19  Wed Jul 27 02:39:45 2022
% 2.00/2.19  The command was "./otter".  The process ID is 32174.
% 2.00/2.19  
% 2.00/2.19  set(prolog_style_variables).
% 2.00/2.19  set(auto).
% 2.00/2.19     dependent: set(auto1).
% 2.00/2.19     dependent: set(process_input).
% 2.00/2.19     dependent: clear(print_kept).
% 2.00/2.19     dependent: clear(print_new_demod).
% 2.00/2.19     dependent: clear(print_back_demod).
% 2.00/2.19     dependent: clear(print_back_sub).
% 2.00/2.19     dependent: set(control_memory).
% 2.00/2.19     dependent: assign(max_mem, 12000).
% 2.00/2.19     dependent: assign(pick_given_ratio, 4).
% 2.00/2.19     dependent: assign(stats_level, 1).
% 2.00/2.19     dependent: assign(max_seconds, 10800).
% 2.00/2.19  clear(print_given).
% 2.00/2.19  
% 2.00/2.19  formula_list(usable).
% 2.00/2.19  all A (A=A).
% 2.00/2.19  all X ir(X).
% 2.00/2.19  all X C (iext(uri_rdf_type,X,C)<->icext(C,X)).
% 2.00/2.19  all X Y (iext(uri_owl_sourceIndividual,X,Y)->icext(uri_owl_NegativePropertyAssertion,X)&ir(Y)).
% 2.00/2.19  all X Y (iext(uri_owl_onProperty,X,Y)->icext(uri_owl_Restriction,X)&ip(Y)).
% 2.00/2.19  all Z C (iext(uri_owl_complementOf,Z,C)->ic(Z)&ic(C)& (all X (icext(Z,X)<-> -icext(C,X)))).
% 2.00/2.19  all Z S1 A1 (iext(uri_rdf_first,S1,A1)&iext(uri_rdf_rest,S1,uri_rdf_nil)-> (iext(uri_owl_oneOf,Z,S1)<->ic(Z)& (all X (icext(Z,X)<->X=A1)))).
% 2.00/2.19  all Z P C (iext(uri_owl_allValuesFrom,Z,C)&iext(uri_owl_onProperty,Z,P)-> (all X (icext(Z,X)<-> (all Y (iext(P,X,Y)->icext(C,Y)))))).
% 2.00/2.19  all P A1 A2 (ir(A1)&ip(P)&ir(A2)& -iext(P,A1,A2)-> (exists Z (iext(uri_owl_sourceIndividual,Z,A1)&iext(uri_owl_assertionProperty,Z,P)&iext(uri_owl_targetIndividual,Z,A2)))).
% 2.00/2.19  -(exists BNODE_z (iext(uri_rdf_type,BNODE_z,uri_owl_NegativePropertyAssertion)&iext(uri_owl_sourceIndividual,BNODE_z,uri_ex_s)&iext(uri_owl_assertionProperty,BNODE_z,uri_ex_p)&iext(uri_owl_targetIndividual,BNODE_z,uri_ex_o))).
% 2.00/2.19  exists BNODE_x1 BNODE_x2 BNODE_x3 BNODE_x4 (iext(uri_rdf_type,uri_ex_p,uri_owl_ObjectProperty)&iext(uri_rdf_type,uri_ex_s,BNODE_x1)&iext(uri_owl_onProperty,BNODE_x1,uri_ex_p)&iext(uri_owl_allValuesFrom,BNODE_x1,BNODE_x2)&iext(uri_owl_complementOf,BNODE_x2,BNODE_x3)&iext(uri_owl_oneOf,BNODE_x3,BNODE_x4)&iext(uri_rdf_first,BNODE_x4,uri_ex_o)&iext(uri_rdf_rest,BNODE_x4,uri_rdf_nil)).
% 2.00/2.19  end_of_list.
% 2.00/2.19  
% 2.00/2.19  -------> usable clausifies to:
% 2.00/2.19  
% 2.00/2.19  list(usable).
% 2.00/2.19  0 [] A=A.
% 2.00/2.19  0 [] ir(X).
% 2.00/2.19  0 [] -iext(uri_rdf_type,X,C)|icext(C,X).
% 2.00/2.19  0 [] iext(uri_rdf_type,X,C)| -icext(C,X).
% 2.00/2.19  0 [] -iext(uri_owl_sourceIndividual,X,Y)|icext(uri_owl_NegativePropertyAssertion,X).
% 2.00/2.19  0 [] -iext(uri_owl_sourceIndividual,X,Y)|ir(Y).
% 2.00/2.19  0 [] -iext(uri_owl_onProperty,X,Y)|icext(uri_owl_Restriction,X).
% 2.00/2.19  0 [] -iext(uri_owl_onProperty,X,Y)|ip(Y).
% 2.00/2.19  0 [] -iext(uri_owl_complementOf,Z,C)|ic(Z).
% 2.00/2.19  0 [] -iext(uri_owl_complementOf,Z,C)|ic(C).
% 2.00/2.19  0 [] -iext(uri_owl_complementOf,Z,C)| -icext(Z,X)| -icext(C,X).
% 2.00/2.19  0 [] -iext(uri_owl_complementOf,Z,C)|icext(Z,X)|icext(C,X).
% 2.00/2.19  0 [] -iext(uri_rdf_first,S1,A1)| -iext(uri_rdf_rest,S1,uri_rdf_nil)| -iext(uri_owl_oneOf,Z,S1)|ic(Z).
% 2.00/2.19  0 [] -iext(uri_rdf_first,S1,A1)| -iext(uri_rdf_rest,S1,uri_rdf_nil)| -iext(uri_owl_oneOf,Z,S1)| -icext(Z,X)|X=A1.
% 2.00/2.19  0 [] -iext(uri_rdf_first,S1,A1)| -iext(uri_rdf_rest,S1,uri_rdf_nil)| -iext(uri_owl_oneOf,Z,S1)|icext(Z,X)|X!=A1.
% 2.00/2.19  0 [] -iext(uri_rdf_first,S1,A1)| -iext(uri_rdf_rest,S1,uri_rdf_nil)|iext(uri_owl_oneOf,Z,S1)| -ic(Z)|icext(Z,$f1(Z,S1,A1))|$f1(Z,S1,A1)=A1.
% 2.00/2.19  0 [] -iext(uri_rdf_first,S1,A1)| -iext(uri_rdf_rest,S1,uri_rdf_nil)|iext(uri_owl_oneOf,Z,S1)| -ic(Z)| -icext(Z,$f1(Z,S1,A1))|$f1(Z,S1,A1)!=A1.
% 2.00/2.19  0 [] -iext(uri_owl_allValuesFrom,Z,C)| -iext(uri_owl_onProperty,Z,P)| -icext(Z,X)| -iext(P,X,Y)|icext(C,Y).
% 2.00/2.19  0 [] -iext(uri_owl_allValuesFrom,Z,C)| -iext(uri_owl_onProperty,Z,P)|icext(Z,X)|iext(P,X,$f2(Z,P,C,X)).
% 2.00/2.19  0 [] -iext(uri_owl_allValuesFrom,Z,C)| -iext(uri_owl_onProperty,Z,P)|icext(Z,X)| -icext(C,$f2(Z,P,C,X)).
% 2.00/2.19  0 [] -ir(A1)| -ip(P)| -ir(A2)|iext(P,A1,A2)|iext(uri_owl_sourceIndividual,$f3(P,A1,A2),A1).
% 2.00/2.19  0 [] -ir(A1)| -ip(P)| -ir(A2)|iext(P,A1,A2)|iext(uri_owl_assertionProperty,$f3(P,A1,A2),P).
% 2.00/2.19  0 [] -ir(A1)| -ip(P)| -ir(A2)|iext(P,A1,A2)|iext(uri_owl_targetIndividual,$f3(P,A1,A2),A2).
% 2.00/2.19  0 [] -iext(uri_rdf_type,BNODE_z,uri_owl_NegativePropertyAssertion)| -iext(uri_owl_sourceIndividual,BNODE_z,uri_ex_s)| -iext(uri_owl_assertionProperty,BNODE_z,uri_ex_p)| -iext(uri_owl_targetIndividual,BNODE_z,uri_ex_o).
% 2.00/2.19  0 [] iext(uri_rdf_type,uri_ex_p,uri_owl_ObjectProperty).
% 2.00/2.19  0 [] iext(uri_rdf_type,uri_ex_s,$c4).
% 2.00/2.19  0 [] iext(uri_owl_onProperty,$c4,uri_ex_p).
% 2.00/2.19  0 [] iext(uri_owl_allValuesFrom,$c4,$c3).
% 2.00/2.19  0 [] iext(uri_owl_complementOf,$c3,$c2).
% 2.00/2.19  0 [] iext(uri_owl_oneOf,$c2,$c1).
% 2.00/2.19  0 [] iext(uri_rdf_first,$c1,uri_ex_o).
% 2.00/2.19  0 [] iext(uri_rdf_rest,$c1,uri_rdf_nil).
% 2.00/2.19  end_of_list.
% 2.00/2.19  
% 2.00/2.19  SCAN INPUT: prop=0, horn=0, equality=1, symmetry=0, max_lits=6.
% 2.00/2.19  
% 2.00/2.19  This ia a non-Horn set with equality.  The strategy will be
% 2.00/2.19  Knuth-Bendix, ordered hyper_res, factoring, and unit
% 2.00/2.19  deletion, with positive clauses in sos and nonpositive
% 2.00/2.19  clauses in usable.
% 2.00/2.19  
% 2.00/2.19     dependent: set(knuth_bendix).
% 2.00/2.19     dependent: set(anl_eq).
% 2.00/2.19     dependent: set(para_from).
% 2.00/2.19     dependent: set(para_into).
% 2.00/2.19     dependent: clear(para_from_right).
% 2.00/2.19     dependent: clear(para_into_right).
% 2.00/2.19     dependent: set(para_from_vars).
% 2.00/2.19     dependent: set(eq_units_both_ways).
% 2.00/2.19     dependent: set(dynamic_demod_all).
% 2.00/2.19     dependent: set(dynamic_demod).
% 2.00/2.19     dependent: set(order_eq).
% 2.00/2.19     dependent: set(back_demod).
% 2.00/2.19     dependent: set(lrpo).
% 2.00/2.19     dependent: set(hyper_res).
% 2.00/2.19     dependent: set(unit_deletion).
% 2.00/2.19     dependent: set(factor).
% 2.00/2.19  
% 2.00/2.19  ------------> process usable:
% 2.00/2.19  ** KEPT (pick-wt=7): 1 [] -iext(uri_rdf_type,A,B)|icext(B,A).
% 2.00/2.19  ** KEPT (pick-wt=7): 2 [] iext(uri_rdf_type,A,B)| -icext(B,A).
% 2.00/2.19  ** KEPT (pick-wt=7): 3 [] -iext(uri_owl_sourceIndividual,A,B)|icext(uri_owl_NegativePropertyAssertion,A).
% 2.00/2.19  ** KEPT (pick-wt=6): 4 [] -iext(uri_owl_sourceIndividual,A,B)|ir(B).
% 2.00/2.19  ** KEPT (pick-wt=7): 5 [] -iext(uri_owl_onProperty,A,B)|icext(uri_owl_Restriction,A).
% 2.00/2.19  ** KEPT (pick-wt=6): 6 [] -iext(uri_owl_onProperty,A,B)|ip(B).
% 2.00/2.19  ** KEPT (pick-wt=6): 7 [] -iext(uri_owl_complementOf,A,B)|ic(A).
% 2.00/2.19  ** KEPT (pick-wt=6): 8 [] -iext(uri_owl_complementOf,A,B)|ic(B).
% 2.00/2.19  ** KEPT (pick-wt=10): 9 [] -iext(uri_owl_complementOf,A,B)| -icext(A,C)| -icext(B,C).
% 2.00/2.19  ** KEPT (pick-wt=10): 10 [] -iext(uri_owl_complementOf,A,B)|icext(A,C)|icext(B,C).
% 2.00/2.19  ** KEPT (pick-wt=14): 11 [] -iext(uri_rdf_first,A,B)| -iext(uri_rdf_rest,A,uri_rdf_nil)| -iext(uri_owl_oneOf,C,A)|ic(C).
% 2.00/2.19  ** KEPT (pick-wt=18): 12 [] -iext(uri_rdf_first,A,B)| -iext(uri_rdf_rest,A,uri_rdf_nil)| -iext(uri_owl_oneOf,C,A)| -icext(C,D)|D=B.
% 2.00/2.19  ** KEPT (pick-wt=18): 13 [] -iext(uri_rdf_first,A,B)| -iext(uri_rdf_rest,A,uri_rdf_nil)| -iext(uri_owl_oneOf,C,A)|icext(C,D)|D!=B.
% 2.00/2.19  ** KEPT (pick-wt=26): 14 [] -iext(uri_rdf_first,A,B)| -iext(uri_rdf_rest,A,uri_rdf_nil)|iext(uri_owl_oneOf,C,A)| -ic(C)|icext(C,$f1(C,A,B))|$f1(C,A,B)=B.
% 2.00/2.19  ** KEPT (pick-wt=26): 15 [] -iext(uri_rdf_first,A,B)| -iext(uri_rdf_rest,A,uri_rdf_nil)|iext(uri_owl_oneOf,C,A)| -ic(C)| -icext(C,$f1(C,A,B))|$f1(C,A,B)!=B.
% 2.00/2.19  ** KEPT (pick-wt=18): 16 [] -iext(uri_owl_allValuesFrom,A,B)| -iext(uri_owl_onProperty,A,C)| -icext(A,D)| -iext(C,D,E)|icext(B,E).
% 2.00/2.19  ** KEPT (pick-wt=19): 17 [] -iext(uri_owl_allValuesFrom,A,B)| -iext(uri_owl_onProperty,A,C)|icext(A,D)|iext(C,D,$f2(A,C,B,D)).
% 2.00/2.19  ** KEPT (pick-wt=18): 18 [] -iext(uri_owl_allValuesFrom,A,B)| -iext(uri_owl_onProperty,A,C)|icext(A,D)| -icext(B,$f2(A,C,B,D)).
% 2.00/2.19  ** KEPT (pick-wt=17): 19 [] -ir(A)| -ip(B)| -ir(C)|iext(B,A,C)|iext(uri_owl_sourceIndividual,$f3(B,A,C),A).
% 2.00/2.19  ** KEPT (pick-wt=17): 20 [] -ir(A)| -ip(B)| -ir(C)|iext(B,A,C)|iext(uri_owl_assertionProperty,$f3(B,A,C),B).
% 2.00/2.19  ** KEPT (pick-wt=17): 21 [] -ir(A)| -ip(B)| -ir(C)|iext(B,A,C)|iext(uri_owl_targetIndividual,$f3(B,A,C),C).
% 2.00/2.19  ** KEPT (pick-wt=16): 22 [] -iext(uri_rdf_type,A,uri_owl_NegativePropertyAssertion)| -iext(uri_owl_sourceIndividual,A,uri_ex_s)| -iext(uri_owl_assertionProperty,A,uri_ex_p)| -iext(uri_owl_targetIndividual,A,uri_ex_o).
% 2.00/2.19  
% 2.00/2.19  ------------> process sos:
% 2.00/2.19  ** KEPT (pick-wt=3): 30 [] A=A.
% 2.00/2.19  ** KEPT (pick-wt=2): 31 [] ir(A).
% 2.00/2.19  ** KEPT (pick-wt=4): 32 [] iext(uri_rdf_type,uri_ex_p,uri_owl_ObjectProperty).
% 2.00/2.19  ** KEPT (pick-wt=4): 33 [] iext(uri_rdf_type,uri_ex_s,$c4).
% 2.00/2.19  ** KEPT (pick-wt=4): 34 [] iext(uri_owl_onProperty,$c4,uri_ex_p).
% 2.00/2.19  ** KEPT (pick-wt=4): 35 [] iext(uri_owl_allValuesFrom,$c4,$c3).
% 2.00/2.19  ** KEPT (pick-wt=4): 36 [] iext(uri_owl_complementOf,$c3,$c2).
% 2.00/2.19  ** KEPT (pick-wt=4): 37 [] iext(uri_owl_oneOf,$c2,$c1).
% 2.00/2.19  ** KEPT (pick-wt=4): 38 [] iext(uri_rdf_first,$c1,uri_ex_o).
% 2.00/2.19  ** KEPT (pick-wt=4): 39 [] iext(uri_rdf_rest,$c1,uri_rdf_nil).
% 9.97/10.19    Following clause subsumed by 30 during input processing: 0 [copy,30,flip.1] A=A.
% 9.97/10.19  31 back subsumes 4.
% 9.97/10.19  
% 9.97/10.19  ======= end of input processing =======
% 9.97/10.19  
% 9.97/10.19  =========== start of search ===========
% 9.97/10.19  
% 9.97/10.19  
% 9.97/10.19  Resetting weight limit to 10.
% 9.97/10.19  
% 9.97/10.19  
% 9.97/10.19  Resetting weight limit to 10.
% 9.97/10.19  
% 9.97/10.19  sos_size=3461
% 9.97/10.19  
% 9.97/10.19  -------- PROOF -------- 
% 9.97/10.19  
% 9.97/10.19  -----> EMPTY CLAUSE at   8.00 sec ----> 3884 [hyper,3875,22,3866,3859,3848] $F.
% 9.97/10.19  
% 9.97/10.19  Length of proof is 14.  Level of proof is 6.
% 9.97/10.19  
% 9.97/10.19  ---------------- PROOF ----------------
% 9.97/10.19  % SZS status Theorem
% 9.97/10.19  % SZS output start Refutation
% See solution above
% 9.97/10.19  ------------ end of proof -------------
% 9.97/10.19  
% 9.97/10.19  
% 9.97/10.19  Search stopped by max_proofs option.
% 9.97/10.19  
% 9.97/10.19  
% 9.97/10.19  Search stopped by max_proofs option.
% 9.97/10.19  
% 9.97/10.19  ============ end of search ============
% 9.97/10.19  
% 9.97/10.19  -------------- statistics -------------
% 9.97/10.19  clauses given                355
% 9.97/10.19  clauses generated          42696
% 9.97/10.19  clauses kept                3883
% 9.97/10.19  clauses forward subsumed    5466
% 9.97/10.19  clauses back subsumed        120
% 9.97/10.19  Kbytes malloced             4882
% 9.97/10.19  
% 9.97/10.19  ----------- times (seconds) -----------
% 9.97/10.19  user CPU time          8.00          (0 hr, 0 min, 7 sec)
% 9.97/10.19  system CPU time        0.00          (0 hr, 0 min, 0 sec)
% 9.97/10.19  wall-clock time       10             (0 hr, 0 min, 10 sec)
% 9.97/10.19  
% 9.97/10.19  That finishes the proof of the theorem.
% 9.97/10.19  
% 9.97/10.19  Process 32174 finished Wed Jul 27 02:39:55 2022
% 9.97/10.19  Otter interrupted
% 9.97/10.19  PROOF FOUND
%------------------------------------------------------------------------------