0.07/0.12 % Problem : theBenchmark.p : TPTP v0.0.0. Released v0.0.0. 0.07/0.13 % Command : gkc %s 0.12/0.33 % Computer : n028.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 0.12/0.34 % CPULimit : 960 0.12/0.34 % WCLimit : 120 0.12/0.34 % DateTime : Tue Aug 9 02:11:50 EDT 2022 0.12/0.34 % CPUTime : 0.18/0.39 0.18/0.39 input clause set summed statistics: 0.18/0.39 ---------------------------------- 0.18/0.39 in_clause_count: 30 0.18/0.39 in_rule_clause_count: 29 0.18/0.39 in_fact_clause_count: 1 0.18/0.39 in_answer_clause_count: 0 0.18/0.39 in_ground_clause_count: 5 0.18/0.39 in_unit_clause_count: 5 0.18/0.39 in_horn_clause_count: 27 0.18/0.39 in_pos_clause_count: 4 0.18/0.39 in_neg_clause_count: 3 0.18/0.39 in_poseq_clause_count: 1 0.18/0.39 in_negeq_clause_count: 3 0.18/0.39 in_unitposeq_clause_count: 0 0.18/0.39 in_chain_clause_count: 0 0.18/0.39 in_min_length: 1 0.18/0.39 in_max_length: 7 0.18/0.39 in_min_depth: 1 0.18/0.39 in_max_depth: 3 0.18/0.39 in_min_size: 2 0.18/0.39 in_max_size: 39 0.18/0.39 in_min_vars: 0 0.18/0.39 in_max_vars: 4 0.18/0.39 in_extaxiom_count: 0 0.18/0.39 in_axiom_count: 21 0.18/0.39 in_assumption_count: 4 0.18/0.39 in_goal_count: 5 0.18/0.39 in_neg_goal_count: 1 0.18/0.39 in_pos_goal_count: 4 0.18/0.39 in_posunit_goal_count: 4 0.18/0.39 0.18/0.39 auto guide: 0.18/0.39 ----------- 0.18/0.39 { 0.18/0.39 "print":1, 0.18/0.39 "print_level": 15, 0.18/0.39 "max_size": 0, 0.18/0.39 "max_depth": 0, 0.18/0.39 "max_length": 0, 0.18/0.39 "max_dseconds": 0, 0.18/0.39 "runs":[ 0.18/0.39 {"max_dseconds":1, "strategy":["unit"], "query_preference":1}, 0.18/0.39 {"max_dseconds":1, "strategy":["query_focus"], "query_preference":1}, 0.18/0.39 {"max_dseconds":1, "strategy":["negative_pref"], "query_preference":1}, 0.18/0.39 {"max_dseconds":1, "strategy":["unit"], "query_preference":0}, 0.18/0.39 {"max_dseconds":1, "strategy":["negative_pref"], "query_preference":0}, 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{"max_dseconds":1250, "strategy":["unit"], "query_preference":1}, 0.18/0.39 {"max_dseconds":1250, "strategy":["query_focus"], "query_preference":1}, 0.18/0.39 {"max_dseconds":1250, "strategy":["negative_pref"], "query_preference":1}, 0.18/0.39 {"max_dseconds":1250, "strategy":["unit"], "query_preference":0}, 0.18/0.39 {"max_dseconds":1250, "strategy":["negative_pref"], "query_preference":0}, 0.18/0.39 {"max_dseconds":1250, "strategy":["hardness_pref"], "query_preference":1}, 0.18/0.39 {"max_dseconds":1250, "strategy":["negative_pref"], "query_preference":0, "weight_select_ratio":100, "depth_penalty":100, "length_penalty":100}, 0.18/0.39 {"max_dseconds":1250, "strategy":["query_focus"], "query_preference":1, "var_weight":1, "weight_select_ratio":100, "repeat_var_weight":1}, 0.18/0.39 {"max_dseconds":1250, "strategy":["positive_pref"], "query_preference":0}, 0.18/0.39 {"max_dseconds":1250, "strategy":["negative_pref"], "query_preference":0, "max_depth":4}, 0.18/0.39 {"max_dseconds":1250, "strategy":["unit"], "query_preference":0, "var_weight":1, "depth_penalty":100, "repeat_var_weight":1}, 0.18/0.39 {"max_dseconds":1250, "strategy":["positive_pref"], "query_preference":0, "reverse_clauselist":1, "length_penalty":100}, 0.18/0.39 {"max_dseconds":1250, "strategy":["negative_pref", "prohibit_nested_para"], "query_preference":0}, 0.18/0.39 {"max_dseconds":1250, "strategy":["query_focus", "double"], "query_preference":1}, 0.18/0.39 {"max_dseconds":1250, "strategy":["unit"], "query_preference":1, "reverse_clauselist":1}, 0.18/0.39 {"max_dseconds":1250, "strategy":["unit"], "query_preference":0, "depth_penalty":100}, 0.18/0.39 {"max_dseconds":1250, "strategy":["hardness_pref"], "query_preference":0, "weight_select_ratio":20, "depth_penalty":50, "length_penalty":100}, 0.18/0.39 {"max_dseconds":1250, "strategy":["unit", "prohibit_nested_para"], "query_preference":1, "reverse_clauselist":1}, 0.18/0.39 {"max_dseconds":1250, "strategy":["unit"], "query_preference":0, "rewrite":0} 0.18/0.39 0.18/0.39 ]} 0.18/0.39 0.18/0.39 0.18/0.39 **** run 1 fork 0 starts with strategy 0.18/0.39 {"max_dseconds":1,"strategy":["unit"],"query_preference":1} 0.18/0.39 0.18/0.39 **** run 2 fork 1 starts with strategy 0.18/0.39 {"max_dseconds":1,"strategy":["query_focus"],"query_preference":1} 0.18/0.39 0.18/0.39 **** run 3 fork 2 starts with strategy 0.18/0.39 {"max_dseconds":1,"strategy":["negative_pref"],"query_preference":1} 0.18/0.39 0.18/0.39 **** run 4 fork 3 starts with strategy 0.18/0.39 {"max_dseconds":1,"strategy":["unit"],"query_preference":0} 0.18/0.39 0.18/0.39 **** run 5 fork 4 starts with strategy 0.18/0.39 {"max_dseconds":1,"strategy":["negative_pref"],"query_preference":0} 0.18/0.39 0.18/0.39 **** run 6 fork 5 starts with strategy 0.18/0.39 {"max_dseconds":1,"strategy":["hardness_pref"],"query_preference":1} 0.18/0.39 0.18/0.39 **** run 7 fork 6 starts with strategy 0.18/0.39 {"max_dseconds":1,"strategy":["negative_pref"],"query_preference":0,"weight_select_ratio":100,"depth_penalty":100,"length_penalty":100} 0.18/0.39 0.18/0.39 **** run 8 fork 7 starts with strategy 0.18/0.39 {"max_dseconds":1,"strategy":["query_focus"],"query_preference":1,"var_weight":1,"weight_select_ratio":100,"repeat_var_weight":1} 0.18/0.44 0.18/0.44 0.18/0.44 result: proof found 0.18/0.44 for /export/starexec/sandbox2/benchmark/theBenchmark.p 0.18/0.44 by run 5 fork 4 strategy {"max_dseconds":1,"strategy":["negative_pref"],"query_preference":0} 0.18/0.44 % SZS status Theorem for /export/starexec/sandbox2/benchmark/theBenchmark.p 0.18/0.44 0.18/0.44 % SZS output start CNFRefutation for /export/starexec/sandbox2/benchmark/theBenchmark.p 0.18/0.44 fof('mp_decreasing_function_$sk', plain, ((greater(difference(growth_rate(first_movers,X3),growth_rate(efficient_producers,X3)),zero) | ~decreases(difference(growth_rate(first_movers,X3),growth_rate(efficient_producers,X3)))) | (~environment(X1) | (~in_environment(X1,X2) | (~greater(X2,X3) | (~greater_or_equal(X3,appear(efficient_producers,X1)) | ~greater_or_equal(difference(growth_rate(first_movers,X2),growth_rate(efficient_producers,X2)),zero)))))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_decreasing_function'])). 0.18/0.44 fof('mp_decreasing_function', axiom, (! [E,T,To] : (((((greater_or_equal(difference(growth_rate(first_movers,To),growth_rate(efficient_producers,To)),zero) & greater_or_equal(T,appear(efficient_producers,E))) & greater(To,T)) & in_environment(E,To)) & environment(E)) => (decreases(difference(growth_rate(first_movers,T),growth_rate(efficient_producers,T))) => greater(difference(growth_rate(first_movers,T),growth_rate(efficient_producers,T)),zero)))), 0.18/0.44 input). 0.18/0.44 fof('mp_relationship_of_growth_rates_$sk', plain, (greater_or_equal(difference(growth_rate(first_movers,X2),growth_rate(efficient_producers,X2)),zero) | (greater(zero,difference(growth_rate(first_movers,X2),growth_rate(efficient_producers,X2))) | (~subpopulations(first_movers,efficient_producers,X1,X2) | ~environment(X1)))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_relationship_of_growth_rates'])). 0.18/0.44 fof('mp_relationship_of_growth_rates', axiom, (! [E,T] : (((environment(E) & subpopulations(first_movers,efficient_producers,E,T)) & ~greater(zero,difference(growth_rate(first_movers,T),growth_rate(efficient_producers,T)))) => greater_or_equal(difference(growth_rate(first_movers,T),growth_rate(efficient_producers,T)),zero))), 0.18/0.44 input). 0.18/0.44 fof('mp_critical_point_means_FM_and_EP_$sk', plain, (subpopulations(first_movers,efficient_producers,X1,critical_point(X1)) | (~environment(X1) | ~in_environment(X1,critical_point(X1)))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_critical_point_means_FM_and_EP'])). 0.18/0.44 fof('mp_critical_point_means_FM_and_EP', axiom, (! [E] : ((in_environment(E,critical_point(E)) & environment(E)) => subpopulations(first_movers,efficient_producers,E,critical_point(E)))), 0.18/0.44 input). 0.18/0.44 fof('prove_t3_$sk', plain, (~selection_favors(first_movers,efficient_producers,$sk2) & (environment($sk1) & (in_environment($sk1,critical_point($sk1)) & (greater_or_equal($sk2,appear(efficient_producers,$sk1)) & greater(critical_point($sk1),$sk2))))), 0.18/0.44 inference(negpush_and_skolemize,[],['prove_t3'])). 0.18/0.44 fof('prove_t3', conjecture, (! [E,T] : ((((greater(critical_point(E),T) & greater_or_equal(T,appear(efficient_producers,E))) & in_environment(E,critical_point(E))) & environment(E)) => selection_favors(first_movers,efficient_producers,T))), 0.18/0.44 input). 0.18/0.44 fof('mp_difference_between_founding_rates_$sk', plain, (decreases(difference(growth_rate(first_movers,X1),growth_rate(efficient_producers,X1))) | (decreases(difference(disbanding_rate(first_movers,X1),disbanding_rate(efficient_producers,X1))) | ~decreases(difference(founding_rate(first_movers,X1),founding_rate(efficient_producers,X1))))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_difference_between_founding_rates'])). 0.18/0.44 fof('mp_difference_between_founding_rates', axiom, (! [T] : ((decreases(difference(founding_rate(first_movers,T),founding_rate(efficient_producers,T))) & ~decreases(difference(disbanding_rate(first_movers,T),disbanding_rate(efficient_producers,T)))) => decreases(difference(growth_rate(first_movers,T),growth_rate(efficient_producers,T))))), 0.18/0.44 input). 0.18/0.44 fof('a10_$sk', plain, (subpopulations(first_movers,efficient_producers,X4,X3) | (~greater_or_equal(X3,X1) | (~greater_or_equal(X2,X3) | (~subpopulations(first_movers,efficient_producers,X4,X2) | (~subpopulations(first_movers,efficient_producers,X4,X1) | ~environment(X4)))))), 0.18/0.44 inference(negpush_and_skolemize,[],['a10'])). 0.18/0.44 fof('a10', hypothesis, (! [E,T1,T2,T] : (((((environment(E) & subpopulations(first_movers,efficient_producers,E,T1)) & subpopulations(first_movers,efficient_producers,E,T2)) & greater_or_equal(T2,T)) & greater_or_equal(T,T1)) => subpopulations(first_movers,efficient_producers,E,T))), 0.18/0.44 input). 0.18/0.44 fof('mp_critical_time_points_$sk', plain, (in_environment(X2,X1) | (~environment(X2) | (~in_environment(X2,critical_point(X2)) | (~greater(critical_point(X2),X1) | ~greater_or_equal(X1,appear(efficient_producers,X2)))))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_critical_time_points'])). 0.18/0.44 fof('mp_critical_time_points', axiom, (! [E,T] : ((((greater_or_equal(T,appear(efficient_producers,E)) & greater(critical_point(E),T)) & in_environment(E,critical_point(E))) & environment(E)) => in_environment(E,T))), 0.18/0.44 input). 0.18/0.44 fof('mp_greater_or_equal_$sk', plain, (((~(X2 = X1) & ~greater(X1,X2)) | greater_or_equal(X1,X2)) & (((X4 = X3) | greater(X3,X4)) | ~greater_or_equal(X3,X4))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_greater_or_equal'])). 0.18/0.44 fof('mp_greater_or_equal', axiom, (! [X,Y] : ((greater(X,Y) | (Y = X)) <=> greater_or_equal(X,Y))), 0.18/0.44 input). 0.18/0.44 fof('mp_FM_and_EP_members_EP_appeared_$sk', plain, (greater_or_equal(X2,appear(efficient_producers,X1)) | (~subpopulations(first_movers,efficient_producers,X1,X2) | ~environment(X1))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_FM_and_EP_members_EP_appeared'])). 0.18/0.44 fof('mp_FM_and_EP_members_EP_appeared', axiom, (! [E,T] : ((environment(E) & subpopulations(first_movers,efficient_producers,E,T)) => greater_or_equal(T,appear(efficient_producers,E)))), 0.18/0.44 input). 0.18/0.44 fof('mp_durations_are_time_intervals_$sk', plain, (in_environment(X4,X3) | (~environment(X4) | (~in_environment(X4,X2) | (~greater_or_equal(X1,X3) | (~greater_or_equal(X3,X2) | ~in_environment(X4,X1)))))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_durations_are_time_intervals'])). 0.18/0.44 fof('mp_durations_are_time_intervals', axiom, (! [E,T1,T2,T] : (((((in_environment(E,T2) & greater_or_equal(T,T1)) & greater_or_equal(T2,T)) & in_environment(E,T1)) & environment(E)) => in_environment(E,T))), 0.18/0.44 input). 0.18/0.44 fof('mp_FM_and_EP_when_EP_appears_$sk', plain, (subpopulations(first_movers,efficient_producers,X1,appear(efficient_producers,X1)) | (~environment(X1) | ~in_environment(X1,appear(efficient_producers,X1)))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_FM_and_EP_when_EP_appears'])). 0.18/0.44 fof('mp_FM_and_EP_when_EP_appears', axiom, (! [E] : ((in_environment(E,appear(efficient_producers,E)) & environment(E)) => subpopulations(first_movers,efficient_producers,E,appear(efficient_producers,E)))), 0.18/0.44 input). 0.18/0.44 fof('a12_$sk', plain, (decreases(difference(founding_rate(first_movers,X2),founding_rate(efficient_producers,X2))) | (~environment(X1) | ~subpopulations(first_movers,efficient_producers,X1,X2))), 0.18/0.44 inference(negpush_and_skolemize,[],['a12'])). 0.18/0.44 fof('a12', hypothesis, (! [E,T] : ((subpopulations(first_movers,efficient_producers,E,T) & environment(E)) => decreases(difference(founding_rate(first_movers,T),founding_rate(efficient_producers,T))))), 0.18/0.44 input). 0.18/0.44 fof('l3_$sk', plain, (~decreases(difference(disbanding_rate(first_movers,X2),disbanding_rate(efficient_producers,X2))) | (~environment(X1) | ~subpopulations(first_movers,efficient_producers,X1,X2))), 0.18/0.44 inference(negpush_and_skolemize,[],['l3'])). 0.18/0.44 fof('l3', axiom, (! [E,T] : ((subpopulations(first_movers,efficient_producers,E,T) & environment(E)) => ~decreases(difference(disbanding_rate(first_movers,T),disbanding_rate(efficient_producers,T))))), 0.18/0.44 input). 0.18/0.44 fof('mp_negative_growth_rate_difference_$sk', plain, ((~greater(growth_rate(efficient_producers,X1),growth_rate(first_movers,X1)) | greater(zero,difference(growth_rate(first_movers,X1),growth_rate(efficient_producers,X1)))) & (greater(growth_rate(efficient_producers,X2),growth_rate(first_movers,X2)) | ~greater(zero,difference(growth_rate(first_movers,X2),growth_rate(efficient_producers,X2))))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_negative_growth_rate_difference'])). 0.18/0.44 fof('mp_negative_growth_rate_difference', axiom, (! [T] : (greater(growth_rate(efficient_producers,T),growth_rate(first_movers,T)) <=> greater(zero,difference(growth_rate(first_movers,T),growth_rate(efficient_producers,T))))), 0.18/0.44 input). 0.18/0.44 fof('d1_$sk', plain, (((greater(growth_rate(efficient_producers,X3),growth_rate(first_movers,X3)) | (~greater(X3,X2) | ~subpopulations(first_movers,efficient_producers,X1,X3))) & ~greater(growth_rate(efficient_producers,X2),growth_rate(first_movers,X2))) | (~(X2 = critical_point(X1)) | ~environment(X1))), 0.18/0.44 inference(negpush_and_skolemize,[],['d1'])). 0.18/0.44 fof('d1', hypothesis, (! [E,Tc] : ((environment(E) & (Tc = critical_point(E))) => (~greater(growth_rate(efficient_producers,Tc),growth_rate(first_movers,Tc)) & (! [T] : ((subpopulations(first_movers,efficient_producers,E,T) & greater(T,Tc)) => greater(growth_rate(efficient_producers,T),growth_rate(first_movers,T))))))), 0.18/0.44 input). 0.18/0.44 fof('mp_positive_growth_rate_difference_$sk', plain, ((~greater(difference(growth_rate(first_movers,X1),growth_rate(efficient_producers,X1)),zero) | greater(growth_rate(first_movers,X1),growth_rate(efficient_producers,X1))) & (greater(difference(growth_rate(first_movers,X2),growth_rate(efficient_producers,X2)),zero) | ~greater(growth_rate(first_movers,X2),growth_rate(efficient_producers,X2)))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_positive_growth_rate_difference'])). 0.18/0.44 fof('mp_positive_growth_rate_difference', axiom, (! [T] : (greater(difference(growth_rate(first_movers,T),growth_rate(efficient_producers,T)),zero) <=> greater(growth_rate(first_movers,T),growth_rate(efficient_producers,T)))), 0.18/0.44 input). 0.18/0.44 fof('mp1_high_growth_rates_$sk', plain, (selection_favors(X4,X3,X2) | (~greater(growth_rate(X4,X2),growth_rate(X3,X2)) | (~subpopulations(X3,X4,X1,X2) | ~environment(X1)))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp1_high_growth_rates'])). 0.18/0.44 fof('mp1_high_growth_rates', axiom, (! [E,S1,S2,T] : (((environment(E) & subpopulations(S1,S2,E,T)) & greater(growth_rate(S2,T),growth_rate(S1,T))) => selection_favors(S2,S1,T))), 0.18/0.44 input). 0.18/0.44 fof('mp_symmetry_of_subpopulations_$sk', plain, (subpopulations(efficient_producers,first_movers,X2,X1) | (~subpopulations(first_movers,efficient_producers,X2,X1) | ~environment(X2))), 0.18/0.44 inference(negpush_and_skolemize,[],['mp_symmetry_of_subpopulations'])). 0.18/0.44 fof('mp_symmetry_of_subpopulations', axiom, (! [E,T] : ((environment(E) & subpopulations(first_movers,efficient_producers,E,T)) => subpopulations(efficient_producers,first_movers,E,T))), 0.18/0.44 input). 0.18/0.44 cnf('1', plain, (~greater_or_equal(difference(growth_rate(first_movers,X),growth_rate(efficient_producers,X)),zero) | greater(difference(growth_rate(first_movers,Y),growth_rate(efficient_producers,Y)),zero) | ~decreases(difference(growth_rate(first_movers,Y),growth_rate(efficient_producers,Y))) | ~greater_or_equal(Y,appear(efficient_producers,Z)) | ~greater(X,Y) | ~in_environment(Z,X) | ~environment(Z)), 0.18/0.44 inference(cnf_transformation,[],['mp_decreasing_function_$sk'])). 0.18/0.44 cnf('2', plain, (greater(zero,difference(growth_rate(first_movers,X),growth_rate(efficient_producers,X))) | greater_or_equal(difference(growth_rate(first_movers,X),growth_rate(efficient_producers,X)),zero) | ~subpopulations(first_movers,efficient_producers,Y,X) | ~environment(Y)), 0.18/0.44 inference(cnf_transformation,[],['mp_relationship_of_growth_rates_$sk'])). 0.18/0.44 cnf('3', plain, (subpopulations(first_movers,efficient_producers,X,critical_point(X)) | ~in_environment(X,critical_point(X)) | ~environment(X)), 0.18/0.44 inference(cnf_transformation,[],['mp_critical_point_means_FM_and_EP_$sk'])). 0.18/0.44 cnf('4', plain, (in_environment($sk1,critical_point($sk1))), 0.18/0.44 inference(cnf_transformation,[],['prove_t3_$sk'])). 0.18/0.44 cnf('5', plain, (environment($sk1)), 0.18/0.44 inference(cnf_transformation,[],['prove_t3_$sk'])). 0.18/0.44 cnf('6', plain, (subpopulations(first_movers,efficient_producers,$sk1,critical_point($sk1))), 0.18/0.44 inference(resolution,[then_simplify],['3','4','5'])). 0.18/0.44 cnf('7', plain, (greater(zero,difference(growth_rate(first_movers,critical_point($sk1)),growth_rate(efficient_producers,critical_point($sk1)))) | greater_or_equal(difference(growth_rate(first_movers,critical_point($sk1)),growth_rate(efficient_producers,critical_point($sk1))),zero)), 0.18/0.44 inference(resolution,[then_simplify],['2','6','5'])). 0.18/0.44 cnf('8', plain, (greater(zero,difference(growth_rate(first_movers,critical_point($sk1)),growth_rate(efficient_producers,critical_point($sk1)))) | greater(difference(growth_rate(first_movers,X),growth_rate(efficient_producers,X)),zero) | ~decreases(difference(growth_rate(first_movers,X),growth_rate(efficient_producers,X))) | ~greater_or_equal(X,appear(efficient_producers,Y)) | ~greater(critical_point($sk1),X) | ~in_environment(Y,critical_point($sk1)) | ~environment(Y)), 0.18/0.44 inference(resolution,[],['1','7'])). 0.18/0.44 cnf('9', plain, (~decreases(difference(founding_rate(first_movers,X),founding_rate(efficient_producers,X))) | decreases(difference(disbanding_rate(first_movers,X),disbanding_rate(efficient_producers,X))) | decreases(difference(growth_rate(first_movers,X),growth_rate(efficient_producers,X)))), 0.18/0.44 inference(cnf_transformation,[],['mp_difference_between_founding_rates_$sk'])). 0.18/0.44 cnf('10', plain, (~subpopulations(first_movers,efficient_producers,X,Y) | ~subpopulations(first_movers,efficient_producers,X,Z) | subpopulations(first_movers,efficient_producers,X,U) | ~greater_or_equal(Y,U) | ~greater_or_equal(U,Z) | ~environment(X)), 0.18/0.44 inference(cnf_transformation,[],['a10_$sk'])). 0.18/0.44 cnf('11', plain, (~subpopulations(first_movers,efficient_producers,$sk1,X) | subpopulations(first_movers,efficient_producers,$sk1,Y) | ~greater_or_equal(critical_point($sk1),Y) | ~greater_or_equal(Y,X)), 0.18/0.44 inference(resolution,[then_simplify],['6','10','5'])). 0.18/0.44 cnf('12', plain, (~greater_or_equal(X,appear(efficient_producers,Y)) | ~greater(critical_point(Y),X) | ~in_environment(Y,critical_point(Y)) | in_environment(Y,X) | ~environment(Y)), 0.18/0.44 inference(cnf_transformation,[],['mp_critical_time_points_$sk'])). 0.18/0.44 cnf('13', plain, (X != Y | greater_or_equal(Y,X)), 0.18/0.44 inference(cnf_transformation,[],['mp_greater_or_equal_$sk'])). 0.18/0.44 cnf('14', plain, (greater_or_equal(X,X)), 0.18/0.44 inference(reflexivity,[],['13'])). 0.18/0.44 cnf('15', plain, (~greater(critical_point(X),appear(efficient_producers,X)) | in_environment(X,appear(efficient_producers,X)) | ~in_environment(X,critical_point(X)) | ~environment(X)), 0.18/0.44 inference(resolution,[],['12','14'])). 0.18/0.44 cnf('16', plain, (greater_or_equal(X,appear(efficient_producers,Y)) | ~subpopulations(first_movers,efficient_producers,Y,X) | ~environment(Y)), 0.18/0.44 inference(cnf_transformation,[],['mp_FM_and_EP_members_EP_appeared_$sk'])). 0.18/0.44 cnf('17', plain, (greater_or_equal(critical_point($sk1),appear(efficient_producers,$sk1))), 0.18/0.44 inference(resolution,[then_simplify],['6','16','5'])). 0.18/0.44 cnf('18', plain, (~greater_or_equal(X,Y) | greater(X,Y) | Y = X), 0.18/0.44 inference(cnf_transformation,[],['mp_greater_or_equal_$sk'])). 0.18/0.44 cnf('19', plain, (greater(critical_point($sk1),appear(efficient_producers,$sk1)) | appear(efficient_producers,$sk1) = critical_point($sk1)), 0.18/0.44 inference(resolution,[],['17','18'])). 0.18/0.44 cnf('20', plain, (in_environment($sk1,critical_point($sk1))), 0.18/0.44 inference(cnf_transformation,[],['prove_t3_$sk'])). 0.18/0.44 cnf('21', plain, (appear(efficient_producers,$sk1) = critical_point($sk1) | in_environment($sk1,appear(efficient_producers,$sk1))), 0.18/0.44 inference(resolution,[then_simplify],['15','19','20','5'])). 0.18/0.44 cnf('22', plain, (greater_or_equal($sk2,appear(efficient_producers,$sk1))), 0.18/0.44 inference(cnf_transformation,[],['prove_t3_$sk'])). 0.18/0.44 cnf('23', plain, (greater(critical_point($sk1),$sk2)), 0.18/0.44 inference(cnf_transformation,[],['prove_t3_$sk'])). 0.18/0.44 cnf('24', plain, (in_environment($sk1,$sk2)), 0.18/0.44 inference(resolution,[then_simplify],['12','22','23','20','5'])). 0.18/0.44 cnf('25', plain, (~greater_or_equal(X,Y) | ~greater_or_equal(Y,Z) | ~in_environment(U,X) | ~in_environment(U,Z) | in_environment(U,Y) | ~environment(U)), 0.18/0.44 inference(cnf_transformation,[],['mp_durations_are_time_intervals_$sk'])). 0.18/0.44 cnf('26', plain, (~greater_or_equal(X,Y) | ~greater_or_equal(Y,X) | ~in_environment(Z,Y) | in_environment(Z,X) | ~environment(Z)), 0.18/0.44 inference(factorization,[],['25'])). 0.18/0.44 cnf('27', plain, (environment($sk1)), 0.18/0.44 inference(cnf_transformation,[],['prove_t3_$sk'])). 0.18/0.44 cnf('28', plain, (~in_environment($sk1,X) | in_environment($sk1,Y) | ~greater_or_equal(X,Y) | ~greater_or_equal(Y,X)), 0.18/0.44 inference(resolution,[],['26','27'])). 0.18/0.44 cnf('29', plain, (~greater_or_equal($sk2,X) | in_environment($sk1,X) | ~greater_or_equal(X,$sk2)), 0.18/0.44 inference(resolution,[],['24','28'])). 0.18/0.44 cnf('30', plain, (~greater_or_equal(appear(efficient_producers,$sk1),$sk2) | in_environment($sk1,appear(efficient_producers,$sk1))), 0.18/0.44 inference(resolution,[],['29','22'])). 0.18/0.44 cnf('31', plain, (~greater(X,Y) | greater_or_equal(X,Y)), 0.18/0.44 inference(cnf_transformation,[],['mp_greater_or_equal_$sk'])). 0.18/0.44 cnf('32', plain, (greater(critical_point($sk1),$sk2)), 0.18/0.44 inference(cnf_transformation,[],['prove_t3_$sk'])). 0.18/0.44 cnf('33', plain, (greater_or_equal(critical_point($sk1),$sk2)), 0.18/0.44 inference(resolution,[],['31','32'])). 0.18/0.44 cnf('34', plain, (in_environment($sk1,appear(efficient_producers,$sk1))), 0.18/0.44 inference(paramodulation,[then_simplify],['21','30','33'])). 0.18/0.44 cnf('35', plain, (subpopulations(first_movers,efficient_producers,X,appear(efficient_producers,X)) | ~in_environment(X,appear(efficient_producers,X)) | ~environment(X)), 0.18/0.44 inference(cnf_transformation,[],['mp_FM_and_EP_when_EP_appears_$sk'])). 0.18/0.44 cnf('36', plain, (subpopulations(first_movers,efficient_producers,$sk1,appear(efficient_producers,$sk1))), 0.18/0.44 inference(resolution,[then_simplify],['34','35','5'])). 0.18/0.44 cnf('37', plain, (~greater_or_equal(X,appear(efficient_producers,$sk1)) | subpopulations(first_movers,efficient_producers,$sk1,X) | ~greater_or_equal(critical_point($sk1),X)), 0.18/0.44 inference(resolution,[],['11','36'])). 0.18/0.44 cnf('38', plain, (subpopulations(first_movers,efficient_producers,$sk1,$sk2)), 0.18/0.44 inference(resolution,[then_simplify],['37','22','33'])). 0.18/0.44 cnf('39', plain, (decreases(difference(founding_rate(first_movers,X),founding_rate(efficient_producers,X))) | ~subpopulations(first_movers,efficient_producers,Y,X) | ~environment(Y)), 0.18/0.44 inference(cnf_transformation,[],['a12_$sk'])). 0.18/0.44 cnf('40', plain, (decreases(difference(founding_rate(first_movers,$sk2),founding_rate(efficient_producers,$sk2)))), 0.18/0.44 inference(resolution,[then_simplify],['38','39','5'])). 0.18/0.44 cnf('41', plain, (decreases(difference(growth_rate(first_movers,$sk2),growth_rate(efficient_producers,$sk2))) | decreases(difference(disbanding_rate(first_movers,$sk2),disbanding_rate(efficient_producers,$sk2)))), 0.18/0.44 inference(resolution,[],['9','40'])). 0.18/0.44 cnf('42', plain, (~decreases(difference(disbanding_rate(first_movers,X),disbanding_rate(efficient_producers,X))) | ~subpopulations(first_movers,efficient_producers,Y,X) | ~environment(Y)), 0.18/0.44 inference(cnf_transformation,[],['l3_$sk'])). 0.18/0.44 cnf('43', plain, (decreases(difference(growth_rate(first_movers,$sk2),growth_rate(efficient_producers,$sk2))) | ~subpopulations(first_movers,efficient_producers,X,$sk2) | ~environment(X)), 0.18/0.44 inference(resolution,[],['41','42'])). 0.18/0.44 cnf('44', plain, (decreases(difference(growth_rate(first_movers,$sk2),growth_rate(efficient_producers,$sk2)))), 0.18/0.44 inference(resolution,[then_simplify],['43','38','5'])). 0.18/0.44 cnf('45', plain, (greater(zero,difference(growth_rate(first_movers,critical_point($sk1)),growth_rate(efficient_producers,critical_point($sk1)))) | greater(difference(growth_rate(first_movers,$sk2),growth_rate(efficient_producers,$sk2)),zero) | ~greater_or_equal($sk2,appear(efficient_producers,X)) | ~in_environment(X,critical_point($sk1)) | ~environment(X)), 0.18/0.44 inference(resolution,[then_simplify],['8','44','23'])). 0.18/0.44 cnf('46', plain, (greater(zero,difference(growth_rate(first_movers,critical_point($sk1)),growth_rate(efficient_producers,critical_point($sk1)))) | greater(difference(growth_rate(first_movers,$sk2),growth_rate(efficient_producers,$sk2)),zero)), 0.18/0.44 inference(resolution,[then_simplify],['45','22','20','5'])). 0.18/0.44 cnf('47', plain, (~greater(zero,difference(growth_rate(first_movers,X),growth_rate(efficient_producers,X))) | greater(growth_rate(efficient_producers,X),growth_rate(first_movers,X))), 0.18/0.44 inference(cnf_transformation,[],['mp_negative_growth_rate_difference_$sk'])). 0.18/0.44 cnf('48', plain, (greater(difference(growth_rate(first_movers,$sk2),growth_rate(efficient_producers,$sk2)),zero) | greater(growth_rate(efficient_producers,critical_point($sk1)),growth_rate(first_movers,critical_point($sk1)))), 0.18/0.44 inference(resolution,[],['46','47'])). 0.18/0.44 cnf('49', plain, (~greater(growth_rate(efficient_producers,X),growth_rate(first_movers,X)) | X != critical_point(Y) | ~environment(Y)), 0.18/0.44 inference(cnf_transformation,[],['d1_$sk'])). 0.18/0.44 cnf('50', plain, (~greater(growth_rate(efficient_producers,critical_point(X)),growth_rate(first_movers,critical_point(X))) | ~environment(X)), 0.18/0.44 inference(reflexivity,[],['49'])). 0.18/0.44 cnf('51', plain, (greater(difference(growth_rate(first_movers,$sk2),growth_rate(efficient_producers,$sk2)),zero)), 0.18/0.44 inference(resolution,[then_simplify],['48','50','5'])). 0.18/0.44 cnf('52', plain, (~greater(difference(growth_rate(first_movers,X),growth_rate(efficient_producers,X)),zero) | greater(growth_rate(first_movers,X),growth_rate(efficient_producers,X))), 0.18/0.44 inference(cnf_transformation,[],['mp_positive_growth_rate_difference_$sk'])). 0.18/0.44 cnf('53', plain, (greater(growth_rate(first_movers,$sk2),growth_rate(efficient_producers,$sk2))), 0.18/0.44 inference(resolution,[],['51','52'])). 0.18/0.44 cnf('54', plain, (~greater(growth_rate(X,Y),growth_rate(Z,Y)) | ~subpopulations(Z,X,U,Y) | selection_favors(X,Z,Y) | ~environment(U)), 0.18/0.44 inference(cnf_transformation,[],['mp1_high_growth_rates_$sk'])). 0.18/0.44 cnf('55', plain, (~selection_favors(first_movers,efficient_producers,$sk2)), 0.18/0.44 inference(cnf_transformation,[],['prove_t3_$sk'])). 0.18/0.44 cnf('56', plain, (~subpopulations(efficient_producers,first_movers,X,$sk2) | ~environment(X)), 0.18/0.44 inference(resolution,[then_simplify],['53','54','55'])). 0.18/0.44 cnf('57', plain, (~subpopulations(first_movers,efficient_producers,X,Y) | subpopulations(efficient_producers,first_movers,X,Y) | ~environment(X)), 0.18/0.44 inference(cnf_transformation,[],['mp_symmetry_of_subpopulations_$sk'])). 0.18/0.44 cnf('58', plain, (subpopulations(efficient_producers,first_movers,$sk1,$sk2)), 0.18/0.44 inference(resolution,[then_simplify],['38','57','5'])). 0.18/0.44 cnf('59', plain, ($false), 0.18/0.44 inference(resolution,[then_simplify],['56','58','5'])). 0.18/0.44 0.18/0.44 % SZS output end CNFRefutation for /export/starexec/sandbox2/benchmark/theBenchmark.p 0.18/0.44 0.18/0.44 run 5 fork 4 statistics: 0.18/0.44 ---------------------------------- 0.18/0.44 this run seconds: 0.016405 0.18/0.44 total seconds: 0.046649 0.18/0.44 stat_given_used: 170 0.18/0.44 stat_given_used_at_endgame: 0 0.18/0.44 stat_given_candidates: 280 0.18/0.44 stat_given_candidates_at_endgame: 0 0.18/0.44 stat_given_candidates_h: 0 0.18/0.44 stat_binres_derived_cl: 219 0.18/0.44 stat_binres_derived_cl_h: 0 0.18/0.44 stat_factor_derived_cl: 30 0.18/0.44 stat_para_derived_cl: 113 0.18/0.44 stat_tautologies_discarded: 18 0.18/0.44 stat_forward_subsumed: 102 0.18/0.44 stat_derived_cut: 63 0.18/0.44 stat_derived_rewritten: 0 0.18/0.44 stat_weight_discarded_building: 0 0.18/0.44 stat_weight_discarded_cl: 0 0.18/0.44 stat_internlimit_discarded_cl: 0 0.18/0.44 stat_simplified: 0 simplified 0 derived 0 given 0.18/0.44 stat_kept_cl: 232 0.18/0.44 stat_built_cl: 572 0.18/0.44 stat_hyperres_partial_cl: 0 0.18/0.44 stat_made_rewriters: 0 0.18/0.44 stat_backward_subsumed: 0 0.18/0.44 stat_propagated_subsumed: 0 0.18/0.44 stat_clsubs_attempted: 272 0.18/0.44 stat_clsubs_fact_groundunit_found: 1 0.18/0.44 stat_clsubs_rule_groundunit_found: 11 0.18/0.44 stat_clsubs_top_meta_attempted: 16305 0.18/0.44 stat_clsubs_top_meta_failed: 16033 0.18/0.44 stat_clsubs_top_meta_nonpref_attempted: 16305 0.18/0.44 stat_clsubs_top_meta_nonpref_succeeded: 3610 0.18/0.44 stat_clsubs_top_meta_pref_attempted: 3610 0.18/0.44 stat_clsubs_top_meta_pref1_succeeded: 890 0.18/0.44 stat_clsubs_top_meta_pref2_succeeded: 354 0.18/0.44 stat_clsubs_top_meta_pref3_succeeded: 272 0.18/0.44 stat_clsubs_top_meta_pref_succeeded: 272 0.18/0.44 stat_clsubs_meta_attempted: 854 0.18/0.44 stat_clsubs_meta_failed: 290 0.18/0.44 stat_clsubs_predsymbs_attempted: 0 0.18/0.44 stat_clsubs_unit_attempted: 90 0.18/0.44 stat_clsubs_full_attempted: 182 0.18/0.44 stat_forwardsubs_attempted: 335 0.18/0.44 stat_lit_hash_added: 56 0.18/0.44 stat_lit_hash_computed: 2294 0.18/0.44 stat_lit_hash_match_found: 195 0.18/0.44 stat_lit_hash_match_miss: 3699 0.18/0.44 stat_lit_hash_cut_ok: 74 0.18/0.44 stat_lit_strong_cut_ok: 3 0.18/0.44 stat_lit_hash_subsume_ok: 102 0.18/0.44 clqueue els 10000000 used 1 0.18/0.44 clactive els 10000000 used 171 0.18/0.44 clactivesubsume els 10000000 used 865 0.18/0.44 queue_termbuf els 200000000 used 20819 0.18/0.44 hyper_termbuf els 100000000 used 1 0.18/0.44 active_termbuf els 100000000 used 9988 0.18/0.44 varstack els 5000 last used 1 0.18/0.44 given_termbuf els 10000000 last used 1 0.18/0.44 simplified_termbuf els 10000000 last used 1 0.18/0.44 derived_termbuf els 10000000 last used 21 0.18/0.44 wr_mallocs: 1758 0.18/0.44 wr_callocs: 19 0.18/0.44 wr_reallocs: 5 0.18/0.44 wr_frees: 2 0.18/0.44 wr_malloc_bytes: 4162638228 0.18/0.44 wr_calloc_bytes: 96065504 0.18/0.44 wr_realloc_bytes: 1400 0.18/0.44 wr_realloc_freebytes: 0 0.18/0.44 ---------------------------------- 0.18/0.44 EOF