TSTP Solution File: MGT033+1 by Mace4---1109a

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Mace4---1109a
% Problem  : MGT033+1 : TPTP v6.4.0. Released v2.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : mace4 -t %d -f %s

% Computer : n054.star.cs.uiowa.edu
% Model    : x86_64 x86_64
% CPU      : Intel(R) Xeon(R) CPU E5-2609 0 2.40GHz
% Memory   : 32218.75MB
% OS       : Linux 3.10.0-327.36.3.el7.x86_64
% CPULimit : 300s
% DateTime : Wed Feb  8 09:58:57 EST 2017

% Result   : CounterSatisfiable 2.51s
% Output   : FiniteModel 2.51s
% Verified : 
% SZS Type : None (Parsing solution fails)
% Syntax   : Number of formulae    : 0

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.01/0.05  % Problem  : MGT033+1 : TPTP v6.4.0. Released v2.0.0.
% 0.01/0.05  % Command  : mace4 -t %d -f %s
% 0.02/0.27  % Computer : n054.star.cs.uiowa.edu
% 0.02/0.27  % Model    : x86_64 x86_64
% 0.02/0.27  % CPU      : Intel(R) Xeon(R) CPU E5-2609 0 @ 2.40GHz
% 0.02/0.27  % Memory   : 32218.75MB
% 0.02/0.27  % OS       : Linux 3.10.0-327.36.3.el7.x86_64
% 0.02/0.27  % CPULimit : 300
% 0.02/0.27  % DateTime : Tue Feb  7 19:47:01 CST 2017
% 0.02/0.27  % CPUTime  : 
% 2.51/2.74  % SZS status CounterSatisfiable
% 2.51/2.74  ============================== Mace4 =================================
% 2.51/2.74  Mace4 (32) version 2009-11A, November 2009.
% 2.51/2.74  Process 33000 was started by sandbox on n054.star.cs.uiowa.edu,
% 2.51/2.74  Tue Feb  7 19:47:01 2017
% 2.51/2.74  The command was "/export/starexec/sandbox/solver/bin/mace4 -t 300 -f /tmp/Mace4_input_32967_n054.star.cs.uiowa.edu".
% 2.51/2.74  ============================== end of head ===========================
% 2.51/2.74  
% 2.51/2.74  ============================== INPUT =================================
% 2.51/2.74  
% 2.51/2.74  % Reading from file /tmp/Mace4_input_32967_n054.star.cs.uiowa.edu
% 2.51/2.74  
% 2.51/2.74  set(prolog_style_variables).
% 2.51/2.74  set(print_models_tabular).
% 2.51/2.74      % set(print_models_tabular) -> clear(print_models).
% 2.51/2.74  
% 2.51/2.74  formulas(sos).
% 2.51/2.74  (all E all S1 all S2 all T (environment(E) & subpopulation(S1,E,T) & subpopulation(S2,E,T) & greater(cardinality_at_time(S1,T),zero) & cardinality_at_time(S2,T) = zero -> selection_favors(S1,S2,T))) # label(mp2_favour_members) # label(axiom).
% 2.51/2.74  (all E all X all T (environment(E) & in_environment(E,T) & greater(appear(X,E),T) -> cardinality_at_time(X,T) = zero)) # label(mp_not_present_before_appearance) # label(axiom).
% 2.51/2.74  (all E all T (environment(E) & greater(number_of_organizations(E,T),zero) -> (exists X (subpopulation(X,E,T) & greater(cardinality_at_time(X,T),zero))))) # label(mp_positive_sum_means_members) # label(axiom).
% 2.51/2.74  (all X all T (cardinality_at_time(X,t) = zero -> -greater(cardinality_at_time(X,T),zero))) # label(mp_zero_is_not_positive) # label(axiom).
% 2.51/2.74  (all E all T (environment(E) & greater(number_of_organizations(E,T),zero) -> in_environment(E,T))) # label(mp_positive_and_sustains) # label(axiom).
% 2.51/2.74  (all E all T1 all T2 all T (environment(E) & in_environment(E,T1) & in_environment(E,T2) & greater_or_equal(T2,T) & greater_or_equal(T,T1) -> in_environment(E,T))) # label(mp_durations_are_time_intervals) # label(axiom).
% 2.51/2.74  (all E (environment(E) -> in_environment(E,start_time(E)))) # label(mp_opening_time_in_duration) # label(axiom).
% 2.51/2.74  (all E (environment(E) -> greater_or_equal(appear(first_movers,E),start_time(E)))) # label(mp_no_FM_before_opening) # label(axiom).
% 2.51/2.74  (all E all T (environment(E) & in_environment(E,T) -> subpopulation(first_movers,E,T) & subpopulation(efficient_producers,E,T))) # label(mp_subpopulations) # label(axiom).
% 2.51/2.74  (all E (environment(E) & in_environment(E,appear(first_movers,E)) -> in_environment(E,appear(an_organisation,E)))) # label(mp_FM_means_organisations) # label(axiom).
% 2.51/2.74  (all E all T (environment(E) & in_environment(E,T) & greater_or_equal(T,appear(an_organisation,E)) -> greater(number_of_organizations(E,T),zero))) # label(a1) # label(hypothesis).
% 2.51/2.74  (all E all X all T (environment(E) & subpopulation(X,E,T) & greater(cardinality_at_time(X,T),zero) -> X = efficient_producers | X = first_movers)) # label(a9) # label(hypothesis).
% 2.51/2.74  (all E (environment(E) & in_environment(E,appear(an_organisation,E)) -> appear(an_organisation,E) = appear(first_movers,E))) # label(l13) # label(hypothesis).
% 2.51/2.74  -(all E all T (environment(E) & in_environment(E,T) & greater_or_equal(T,appear(first_movers,E)) & greater(appear(efficient_producers,E),T) -> selection_favors(first_movers,efficient_producers,T))) # label(prove_t2) # label(negated_conjecture).
% 2.51/2.74  end_of_list.
% 2.51/2.74  
% 2.51/2.74  % From the command line: assign(max_seconds, 300).
% 2.51/2.74  
% 2.51/2.74  ============================== end of input ==========================
% 2.51/2.74  
% 2.51/2.74  ============================== PROCESS NON-CLAUSAL FORMULAS ==========
% 2.51/2.74  
% 2.51/2.74  % Formulas that are not ordinary clauses:
% 2.51/2.74  1 (all E all S1 all S2 all T (environment(E) & subpopulation(S1,E,T) & subpopulation(S2,E,T) & greater(cardinality_at_time(S1,T),zero) & cardinality_at_time(S2,T) = zero -> selection_favors(S1,S2,T))) # label(mp2_favour_members) # label(axiom) # label(non_clause).  [assumption].
% 2.51/2.74  2 (all E all X all T (environment(E) & in_environment(E,T) & greater(appear(X,E),T) -> cardinality_at_time(X,T) = zero)) # label(mp_not_present_before_appearance) # label(axiom) # label(non_clause).  [assumption].
% 2.51/2.74  3 (all E all T (environment(E) & greater(number_of_organizations(E,T),zero) -> (exists X (subpopulation(X,E,T) & greater(cardinality_at_time(X,T),zero))))) # label(mp_positive_sum_means_members) # label(axiom) # label(non_clause).  [assumption].
% 2.51/2.74  4 (all X all T (cardinality_at_time(X,t) = zero -> -greater(cardinality_at_time(X,T),zero))) # label(mp_zero_is_not_positive) # label(axiom) # label(non_clause).  [assumption].
% 2.51/2.74  5 (all E all T (environment(E) & greater(number_of_organizations(E,T),zero) -> in_environment(E,T))) # label(mp_positive_and_sustains) # label(axiom) # label(non_clause).  [assumption].
% 2.51/2.74  6 (all E all T1 all T2 all T (environment(E) & in_environment(E,T1) & in_environment(E,T2) & greater_or_equal(T2,T) & greater_or_equal(T,T1) -> in_environment(E,T))) # label(mp_durations_are_time_intervals) # label(axiom) # label(non_clause).  [assumption].
% 2.51/2.74  7 (all E (environment(E) -> in_environment(E,start_time(E)))) # label(mp_opening_time_in_duration) # label(axiom) # label(non_clause).  [assumption].
% 2.51/2.74  8 (all E (environment(E) -> greater_or_equal(appear(first_movers,E),start_time(E)))) # label(mp_no_FM_before_opening) # label(axiom) # label(non_clause).  [assumption].
% 2.51/2.74  9 (all E all T (environment(E) & in_environment(E,T) -> subpopulation(first_movers,E,T) & subpopulation(efficient_producers,E,T))) # label(mp_subpopulations) # label(axiom) # label(non_clause).  [assumption].
% 2.51/2.74  10 (all E (environment(E) & in_environment(E,appear(first_movers,E)) -> in_environment(E,appear(an_organisation,E)))) # label(mp_FM_means_organisations) # label(axiom) # label(non_clause).  [assumption].
% 2.51/2.74  11 (all E all T (environment(E) & in_environment(E,T) & greater_or_equal(T,appear(an_organisation,E)) -> greater(number_of_organizations(E,T),zero))) # label(a1) # label(hypothesis) # label(non_clause).  [assumption].
% 2.51/2.74  12 (all E all X all T (environment(E) & subpopulation(X,E,T) & greater(cardinality_at_time(X,T),zero) -> X = efficient_producers | X = first_movers)) # label(a9) # label(hypothesis) # label(non_clause).  [assumption].
% 2.51/2.74  13 (all E (environment(E) & in_environment(E,appear(an_organisation,E)) -> appear(an_organisation,E) = appear(first_movers,E))) # label(l13) # label(hypothesis) # label(non_clause).  [assumption].
% 2.51/2.74  14 -(all E all T (environment(E) & in_environment(E,T) & greater_or_equal(T,appear(first_movers,E)) & greater(appear(efficient_producers,E),T) -> selection_favors(first_movers,efficient_producers,T))) # label(prove_t2) # label(negated_conjecture) # label(non_clause).  [assumption].
% 2.51/2.74  
% 2.51/2.74  ============================== end of process non-clausal formulas ===
% 2.51/2.74  
% 2.51/2.74  ============================== CLAUSES FOR SEARCH ====================
% 2.51/2.74  
% 2.51/2.74  formulas(mace4_clauses).
% 2.51/2.74  -environment(A) | -subpopulation(B,A,C) | -subpopulation(D,A,C) | -greater(cardinality_at_time(B,C),zero) | cardinality_at_time(D,C) != zero | selection_favors(B,D,C) # label(mp2_favour_members) # label(axiom).
% 2.51/2.74  -environment(A) | -in_environment(A,B) | -greater(appear(C,A),B) | cardinality_at_time(C,B) = zero # label(mp_not_present_before_appearance) # label(axiom).
% 2.51/2.74  -environment(A) | -greater(number_of_organizations(A,B),zero) | subpopulation(f1(A,B),A,B) # label(mp_positive_sum_means_members) # label(axiom).
% 2.51/2.74  -environment(A) | -greater(number_of_organizations(A,B),zero) | greater(cardinality_at_time(f1(A,B),B),zero) # label(mp_positive_sum_means_members) # label(axiom).
% 2.51/2.74  cardinality_at_time(A,t) != zero | -greater(cardinality_at_time(A,B),zero) # label(mp_zero_is_not_positive) # label(axiom).
% 2.51/2.74  -environment(A) | -greater(number_of_organizations(A,B),zero) | in_environment(A,B) # label(mp_positive_and_sustains) # label(axiom).
% 2.51/2.74  -environment(A) | -in_environment(A,B) | -in_environment(A,C) | -greater_or_equal(C,D) | -greater_or_equal(D,B) | in_environment(A,D) # label(mp_durations_are_time_intervals) # label(axiom).
% 2.51/2.74  -environment(A) | in_environment(A,start_time(A)) # label(mp_opening_time_in_duration) # label(axiom).
% 2.51/2.74  -environment(A) | greater_or_equal(appear(first_movers,A),start_time(A)) # label(mp_no_FM_before_opening) # label(axiom).
% 2.51/2.74  -environment(A) | -in_environment(A,B) | subpopulation(first_movers,A,B) # label(mp_subpopulations) # label(axiom).
% 2.51/2.74  -environment(A) | -in_environment(A,B) | subpopulation(efficient_producers,A,B) # label(mp_subpopulations) # label(axiom).
% 2.51/2.74  -environment(A) | -in_environment(A,appear(first_movers,A)) | in_environment(A,appear(an_organisation,A)) # label(mp_FM_means_organisations) # label(axiom).
% 2.51/2.74  -environment(A) | -in_environment(A,B) | -greater_or_equal(B,appear(an_organisation,A)) | greater(number_of_organizations(A,B),zero) # label(a1) # label(hypothesis).
% 2.51/2.74  -environment(A) | -subpopulation(B,A,C) | -greater(cardinality_at_time(B,C),zero) | efficient_producers = B | first_movers = B # label(a9) # label(hypothesis).
% 2.51/2.74  -environment(A) | -in_environment(A,appear(an_organisation,A)) | appear(an_organisation,A) = appear(first_movers,A) # label(l13) # label(hypothesis).
% 2.51/2.74  environment(c1) # label(prove_t2) # label(negated_conjecture).
% 2.51/2.74  in_environment(c1,c2) # label(prove_t2) # label(negated_conjecture).
% 2.51/2.74  greater_or_equal(c2,appear(first_movers,c1)) # label(prove_t2) # label(negated_conjecture).
% 2.51/2.74  greater(appear(efficient_producers,c1),c2) # label(prove_t2) # label(negated_conjecture).
% 2.51/2.74  -selection_favors(first_movers,efficient_producers,c2) # label(prove_t2) # label(negated_conjecture).
% 2.51/2.74  end_of_list.
% 2.51/2.74  
% 2.51/2.74  ============================== end of clauses for search =============
% 2.51/2.74  % SZS output start FiniteModel
% 2.51/2.74  
% 2.51/2.74  % There are no natural numbers in the input.
% 2.51/2.74  
% 2.51/2.74   an_organisation : 0
% 2.51/2.74  
% 2.51/2.74   efficient_producers : 1
% 2.51/2.74  
% 2.51/2.74   first_movers : 0
% 2.51/2.74  
% 2.51/2.74   t : 0
% 2.51/2.74  
% 2.51/2.74   zero : 0
% 2.51/2.74  
% 2.51/2.74   c1 : 0
% 2.51/2.74  
% 2.51/2.74   c2 : 1
% 2.51/2.74  
% 2.51/2.74   start_time :
% 2.51/2.74          0 1
% 2.51/2.74      -------
% 2.51/2.74          1 0
% 2.51/2.74  
% 2.51/2.74   appear :
% 2.51/2.74        | 0 1
% 2.51/2.74      --+----
% 2.51/2.74      0 | 1 0
% 2.51/2.74      1 | 0 0
% 2.51/2.74  
% 2.51/2.74   cardinality_at_time :
% 2.51/2.74        | 0 1
% 2.51/2.74      --+----
% 2.51/2.74      0 | 1 1
% 2.51/2.74      1 | 1 0
% 2.51/2.74  
% 2.51/2.74   number_of_organizations :
% 2.51/2.74        | 0 1
% 2.51/2.74      --+----
% 2.51/2.74      0 | 1 0
% 2.51/2.74      1 | 0 0
% 2.51/2.74  
% 2.51/2.74   f1 :
% 2.51/2.74        | 0 1
% 2.51/2.74      --+----
% 2.51/2.74      0 | 0 1
% 2.51/2.74      1 | 0 0
% 2.51/2.74  
% 2.51/2.74   environment :
% 2.51/2.74          0 1
% 2.51/2.74      -------
% 2.51/2.74          1 0
% 2.51/2.74  
% 2.51/2.74   greater :
% 2.51/2.74        | 0 1
% 2.51/2.74      --+----
% 2.51/2.74      0 | 1 1
% 2.51/2.74      1 | 0 0
% 2.51/2.74  
% 2.51/2.74   greater_or_equal :
% 2.51/2.74        | 0 1
% 2.51/2.74      --+----
% 2.51/2.74      0 | 0 0
% 2.51/2.74      1 | 0 1
% 2.51/2.74  
% 2.51/2.74   in_environment :
% 2.51/2.74        | 0 1
% 2.51/2.74      --+----
% 2.51/2.74      0 | 0 1
% 2.51/2.74      1 | 0 0
% 2.51/2.74  selection_favors(0,0,0) = 0.
% 2.51/2.74  selection_favors(0,0,1) = 0.
% 2.51/2.74  selection_favors(0,1,0) = 0.
% 2.51/2.74  selection_favors(0,1,1) = 0.
% 2.51/2.74  selection_favors(1,0,0) = 0.
% 2.51/2.74  selection_favors(1,0,1) = 0.
% 2.51/2.74  selection_favors(1,1,0) = 0.
% 2.51/2.74  selection_favors(1,1,1) = 1.
% 2.51/2.74  subpopulation(0,0,0) = 0.
% 2.51/2.74  subpopulation(0,0,1) = 1.
% 2.51/2.74  subpopulation(0,1,0) = 0.
% 2.51/2.74  subpopulation(0,1,1) = 0.
% 2.51/2.74  subpopulation(1,0,0) = 0.
% 2.51/2.74  subpopulation(1,0,1) = 1.
% 2.51/2.74  subpopulation(1,1,0) = 0.
% 2.51/2.74  subpopulation(1,1,1) = 0.
% 2.51/2.74  
% 2.51/2.74  % SZS output end FiniteModel
% 2.51/2.74  ------ process 33000 exit (max_models) ------
% 2.51/2.74  
% 2.51/2.74  User_CPU=1.85, System_CPU=0.42, Wall_clock=2.
% 2.51/2.74  
% 2.51/2.74  Exiting with 1 model.
% 2.51/2.74  
% 2.51/2.74  Process 33000 exit (max_models) Tue Feb  7 19:47:03 2017
% 2.51/2.74  The process finished Tue Feb  7 19:47:03 2017
% 2.51/2.74  Mace4 ended
%------------------------------------------------------------------------------