TSTP Solution File: NLP210+1 by iProverMo---2.5-0.1

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : iProverMo---2.5-0.1
% Problem  : NLP210+1 : TPTP v8.1.0. Released v2.4.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : iprover_modulo %s %d

% Computer : n013.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  : 600s
% DateTime : Mon Jul 18 02:42:25 EDT 2022

% Result   : Unknown 9.86s 10.09s
% Output   : None 
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----No solution output by system
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.10/0.12  % Problem  : NLP210+1 : TPTP v8.1.0. Released v2.4.0.
% 0.10/0.13  % Command  : iprover_modulo %s %d
% 0.14/0.35  % Computer : n013.cluster.edu
% 0.14/0.35  % Model    : x86_64 x86_64
% 0.14/0.35  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.14/0.35  % Memory   : 8042.1875MB
% 0.14/0.35  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.14/0.35  % CPULimit : 300
% 0.14/0.35  % WCLimit  : 600
% 0.14/0.35  % DateTime : Fri Jul  1 09:44:44 EDT 2022
% 0.14/0.35  % CPUTime  : 
% 0.14/0.35  % Running in mono-core mode
% 0.21/0.44  % Orienting using strategy Equiv(ClausalAll)
% 0.21/0.44  % FOF problem with conjecture
% 0.21/0.44  % Executing iprover_moduloopt --modulo true --schedule none --sub_typing false --res_to_prop_solver none --res_prop_simpl_given false --res_lit_sel kbo_max --large_theory_mode false --res_time_limit 1000 --res_orphan_elimination false --prep_sem_filter none --prep_unflatten false --comb_res_mult 1000 --comb_inst_mult 300 --clausifier .//eprover --clausifier_options "--tstp-format  " --proof_out_file /export/starexec/sandbox/tmp/iprover_proof_32e28e.s --tptp_safe_out true --time_out_real 150 /export/starexec/sandbox/tmp/iprover_modulo_7092f1.p | tee /export/starexec/sandbox/tmp/iprover_modulo_out_9ac35a | grep -v "SZS"
% 0.21/0.47  
% 0.21/0.47  %---------------- iProver v2.5 (CASC-J8 2016) ----------------%
% 0.21/0.47  
% 0.21/0.47  % 
% 0.21/0.47  % ------  iProver source info 
% 0.21/0.47  
% 0.21/0.47  % git: sha1: 57accf6c58032223c7708532cf852a99fa48c1b3
% 0.21/0.47  % git: non_committed_changes: true
% 0.21/0.47  % git: last_make_outside_of_git: true
% 0.21/0.47  
% 0.21/0.47  % 
% 0.21/0.47  % ------ Input Options
% 0.21/0.47  
% 0.21/0.47  % --out_options                         all
% 0.21/0.47  % --tptp_safe_out                       true
% 0.21/0.47  % --problem_path                        ""
% 0.21/0.47  % --include_path                        ""
% 0.21/0.47  % --clausifier                          .//eprover
% 0.21/0.47  % --clausifier_options                  --tstp-format  
% 0.21/0.47  % --stdin                               false
% 0.21/0.47  % --dbg_backtrace                       false
% 0.21/0.47  % --dbg_dump_prop_clauses               false
% 0.21/0.47  % --dbg_dump_prop_clauses_file          -
% 0.21/0.47  % --dbg_out_stat                        false
% 0.21/0.47  
% 0.21/0.47  % ------ General Options
% 0.21/0.47  
% 0.21/0.47  % --fof                                 false
% 0.21/0.47  % --time_out_real                       150.
% 0.21/0.47  % --time_out_prep_mult                  0.2
% 0.21/0.47  % --time_out_virtual                    -1.
% 0.21/0.47  % --schedule                            none
% 0.21/0.47  % --ground_splitting                    input
% 0.21/0.47  % --splitting_nvd                       16
% 0.21/0.47  % --non_eq_to_eq                        false
% 0.21/0.47  % --prep_gs_sim                         true
% 0.21/0.47  % --prep_unflatten                      false
% 0.21/0.47  % --prep_res_sim                        true
% 0.21/0.47  % --prep_upred                          true
% 0.21/0.47  % --res_sim_input                       true
% 0.21/0.47  % --clause_weak_htbl                    true
% 0.21/0.47  % --gc_record_bc_elim                   false
% 0.21/0.47  % --symbol_type_check                   false
% 0.21/0.47  % --clausify_out                        false
% 0.21/0.47  % --large_theory_mode                   false
% 0.21/0.47  % --prep_sem_filter                     none
% 0.21/0.47  % --prep_sem_filter_out                 false
% 0.21/0.47  % --preprocessed_out                    false
% 0.21/0.47  % --sub_typing                          false
% 0.21/0.47  % --brand_transform                     false
% 0.21/0.47  % --pure_diseq_elim                     true
% 0.21/0.47  % --min_unsat_core                      false
% 0.21/0.47  % --pred_elim                           true
% 0.21/0.47  % --add_important_lit                   false
% 0.21/0.47  % --soft_assumptions                    false
% 0.21/0.47  % --reset_solvers                       false
% 0.21/0.47  % --bc_imp_inh                          []
% 0.21/0.47  % --conj_cone_tolerance                 1.5
% 0.21/0.47  % --prolific_symb_bound                 500
% 0.21/0.47  % --lt_threshold                        2000
% 0.21/0.47  
% 0.21/0.47  % ------ SAT Options
% 0.21/0.47  
% 0.21/0.47  % --sat_mode                            false
% 0.21/0.47  % --sat_fm_restart_options              ""
% 0.21/0.47  % --sat_gr_def                          false
% 0.21/0.47  % --sat_epr_types                       true
% 0.21/0.47  % --sat_non_cyclic_types                false
% 0.21/0.47  % --sat_finite_models                   false
% 0.21/0.47  % --sat_fm_lemmas                       false
% 0.21/0.47  % --sat_fm_prep                         false
% 0.21/0.47  % --sat_fm_uc_incr                      true
% 0.21/0.47  % --sat_out_model                       small
% 0.21/0.47  % --sat_out_clauses                     false
% 0.21/0.47  
% 0.21/0.47  % ------ QBF Options
% 0.21/0.47  
% 0.21/0.47  % --qbf_mode                            false
% 0.21/0.47  % --qbf_elim_univ                       true
% 0.21/0.47  % --qbf_sk_in                           true
% 0.21/0.47  % --qbf_pred_elim                       true
% 0.21/0.47  % --qbf_split                           32
% 0.21/0.47  
% 0.21/0.47  % ------ BMC1 Options
% 0.21/0.47  
% 0.21/0.47  % --bmc1_incremental                    false
% 0.21/0.47  % --bmc1_axioms                         reachable_all
% 0.21/0.47  % --bmc1_min_bound                      0
% 0.21/0.47  % --bmc1_max_bound                      -1
% 0.21/0.47  % --bmc1_max_bound_default              -1
% 0.21/0.47  % --bmc1_symbol_reachability            true
% 0.21/0.47  % --bmc1_property_lemmas                false
% 0.21/0.47  % --bmc1_k_induction                    false
% 0.21/0.47  % --bmc1_non_equiv_states               false
% 0.21/0.47  % --bmc1_deadlock                       false
% 0.21/0.47  % --bmc1_ucm                            false
% 0.21/0.47  % --bmc1_add_unsat_core                 none
% 0.21/0.47  % --bmc1_unsat_core_children            false
% 0.21/0.47  % --bmc1_unsat_core_extrapolate_axioms  false
% 0.21/0.47  % --bmc1_out_stat                       full
% 0.21/0.47  % --bmc1_ground_init                    false
% 0.21/0.47  % --bmc1_pre_inst_next_state            false
% 0.21/0.47  % --bmc1_pre_inst_state                 false
% 0.21/0.47  % --bmc1_pre_inst_reach_state           false
% 0.21/0.47  % --bmc1_out_unsat_core                 false
% 0.21/0.47  % --bmc1_aig_witness_out                false
% 0.21/0.47  % --bmc1_verbose                        false
% 0.21/0.47  % --bmc1_dump_clauses_tptp              false
% 0.77/0.95  % --bmc1_dump_unsat_core_tptp           false
% 0.77/0.95  % --bmc1_dump_file                      -
% 0.77/0.95  % --bmc1_ucm_expand_uc_limit            128
% 0.77/0.95  % --bmc1_ucm_n_expand_iterations        6
% 0.77/0.95  % --bmc1_ucm_extend_mode                1
% 0.77/0.95  % --bmc1_ucm_init_mode                  2
% 0.77/0.95  % --bmc1_ucm_cone_mode                  none
% 0.77/0.95  % --bmc1_ucm_reduced_relation_type      0
% 0.77/0.95  % --bmc1_ucm_relax_model                4
% 0.77/0.95  % --bmc1_ucm_full_tr_after_sat          true
% 0.77/0.95  % --bmc1_ucm_expand_neg_assumptions     false
% 0.77/0.95  % --bmc1_ucm_layered_model              none
% 0.77/0.95  % --bmc1_ucm_max_lemma_size             10
% 0.77/0.95  
% 0.77/0.95  % ------ AIG Options
% 0.77/0.95  
% 0.77/0.95  % --aig_mode                            false
% 0.77/0.95  
% 0.77/0.95  % ------ Instantiation Options
% 0.77/0.95  
% 0.77/0.95  % --instantiation_flag                  true
% 0.77/0.95  % --inst_lit_sel                        [+prop;+sign;+ground;-num_var;-num_symb]
% 0.77/0.95  % --inst_solver_per_active              750
% 0.77/0.95  % --inst_solver_calls_frac              0.5
% 0.77/0.95  % --inst_passive_queue_type             priority_queues
% 0.77/0.95  % --inst_passive_queues                 [[-conj_dist;+conj_symb;-num_var];[+age;-num_symb]]
% 0.77/0.95  % --inst_passive_queues_freq            [25;2]
% 0.77/0.95  % --inst_dismatching                    true
% 0.77/0.95  % --inst_eager_unprocessed_to_passive   true
% 0.77/0.95  % --inst_prop_sim_given                 true
% 0.77/0.95  % --inst_prop_sim_new                   false
% 0.77/0.95  % --inst_orphan_elimination             true
% 0.77/0.95  % --inst_learning_loop_flag             true
% 0.77/0.95  % --inst_learning_start                 3000
% 0.77/0.95  % --inst_learning_factor                2
% 0.77/0.95  % --inst_start_prop_sim_after_learn     3
% 0.77/0.95  % --inst_sel_renew                      solver
% 0.77/0.95  % --inst_lit_activity_flag              true
% 0.77/0.95  % --inst_out_proof                      true
% 0.77/0.95  
% 0.77/0.95  % ------ Resolution Options
% 0.77/0.95  
% 0.77/0.95  % --resolution_flag                     true
% 0.77/0.95  % --res_lit_sel                         kbo_max
% 0.77/0.95  % --res_to_prop_solver                  none
% 0.77/0.95  % --res_prop_simpl_new                  false
% 0.77/0.95  % --res_prop_simpl_given                false
% 0.77/0.95  % --res_passive_queue_type              priority_queues
% 0.77/0.95  % --res_passive_queues                  [[-conj_dist;+conj_symb;-num_symb];[+age;-num_symb]]
% 0.77/0.95  % --res_passive_queues_freq             [15;5]
% 0.77/0.95  % --res_forward_subs                    full
% 0.77/0.95  % --res_backward_subs                   full
% 0.77/0.95  % --res_forward_subs_resolution         true
% 0.77/0.95  % --res_backward_subs_resolution        true
% 0.77/0.95  % --res_orphan_elimination              false
% 0.77/0.95  % --res_time_limit                      1000.
% 0.77/0.95  % --res_out_proof                       true
% 0.77/0.95  % --proof_out_file                      /export/starexec/sandbox/tmp/iprover_proof_32e28e.s
% 0.77/0.95  % --modulo                              true
% 0.77/0.95  
% 0.77/0.95  % ------ Combination Options
% 0.77/0.95  
% 0.77/0.95  % --comb_res_mult                       1000
% 0.77/0.95  % --comb_inst_mult                      300
% 0.77/0.95  % ------ 
% 0.77/0.95  
% 0.77/0.95  % ------ Parsing...% successful
% 0.77/0.95  
% 0.77/0.95  % ------ Preprocessing... gs_s  sp: 0 0s  gs_e  snvd_s sp: 144 0s snvd_e  pe_s  pe:1:0s pe:2:0s pe:4:0s pe:8:0s pe:16:0s pe:32:0s pe_e  snvd_s sp: 0 0s snvd_e % 
% 0.77/0.95  
% 0.77/0.95  % ------ Proving...
% 0.77/0.95  % ------ Problem Properties 
% 0.77/0.95  
% 0.77/0.95  % 
% 0.77/0.95  % EPR                                   false
% 0.77/0.95  % Horn                                  false
% 0.77/0.95  % Has equality                          true
% 0.77/0.95  
% 0.77/0.95  % % ------ Input Options Time Limit: Unbounded
% 0.77/0.95  
% 0.77/0.95  
% 0.77/0.95  % % ------ Current options:
% 0.77/0.95  
% 0.77/0.95  % ------ Input Options
% 0.77/0.95  
% 0.77/0.95  % --out_options                         all
% 0.77/0.95  % --tptp_safe_out                       true
% 0.77/0.95  % --problem_path                        ""
% 0.77/0.95  % --include_path                        ""
% 0.77/0.95  % --clausifier                          .//eprover
% 0.77/0.95  % --clausifier_options                  --tstp-format  
% 0.77/0.95  % --stdin                               false
% 0.77/0.95  % --dbg_backtrace                       false
% 0.77/0.95  % --dbg_dump_prop_clauses               false
% 0.77/0.95  % --dbg_dump_prop_clauses_file          -
% 0.77/0.95  % --dbg_out_stat                        false
% 0.77/0.95  
% 0.77/0.95  % ------ General Options
% 0.77/0.95  
% 0.77/0.95  % --fof                                 false
% 0.77/0.95  % --time_out_real                       150.
% 0.77/0.95  % --time_out_prep_mult                  0.2
% 0.77/0.95  % --time_out_virtual                    -1.
% 0.77/0.95  % --schedule                            none
% 0.77/0.95  % --ground_splitting                    input
% 0.77/0.95  % --splitting_nvd                       16
% 0.77/0.95  % --non_eq_to_eq                        false
% 0.77/0.95  % --prep_gs_sim                         true
% 0.77/0.95  % --prep_unflatten                      false
% 0.77/0.95  % --prep_res_sim                        true
% 0.77/0.95  % --prep_upred                          true
% 0.77/0.95  % --res_sim_input                       true
% 0.77/0.95  % --clause_weak_htbl                    true
% 0.77/0.95  % --gc_record_bc_elim                   false
% 0.77/0.95  % --symbol_type_check                   false
% 0.77/0.95  % --clausify_out                        false
% 0.77/0.95  % --large_theory_mode                   false
% 0.77/0.95  % --prep_sem_filter                     none
% 0.77/0.95  % --prep_sem_filter_out                 false
% 0.77/0.95  % --preprocessed_out                    false
% 0.77/0.95  % --sub_typing                          false
% 0.77/0.95  % --brand_transform                     false
% 0.77/0.95  % --pure_diseq_elim                     true
% 0.77/0.95  % --min_unsat_core                      false
% 0.77/0.95  % --pred_elim                           true
% 0.77/0.95  % --add_important_lit                   false
% 0.77/0.95  % --soft_assumptions                    false
% 0.77/0.95  % --reset_solvers                       false
% 0.77/0.95  % --bc_imp_inh                          []
% 0.77/0.95  % --conj_cone_tolerance                 1.5
% 0.77/0.95  % --prolific_symb_bound                 500
% 0.77/0.95  % --lt_threshold                        2000
% 0.77/0.95  
% 0.77/0.95  % ------ SAT Options
% 0.77/0.95  
% 0.77/0.95  % --sat_mode                            false
% 0.77/0.95  % --sat_fm_restart_options              ""
% 0.77/0.95  % --sat_gr_def                          false
% 0.77/0.95  % --sat_epr_types                       true
% 0.77/0.95  % --sat_non_cyclic_types                false
% 0.77/0.95  % --sat_finite_models                   false
% 0.77/0.95  % --sat_fm_lemmas                       false
% 0.77/0.95  % --sat_fm_prep                         false
% 0.77/0.95  % --sat_fm_uc_incr                      true
% 0.77/0.95  % --sat_out_model                       small
% 0.77/0.95  % --sat_out_clauses                     false
% 0.77/0.95  
% 0.77/0.95  % ------ QBF Options
% 0.77/0.95  
% 0.77/0.95  % --qbf_mode                            false
% 0.77/0.95  % --qbf_elim_univ                       true
% 0.77/0.95  % --qbf_sk_in                           true
% 0.77/0.95  % --qbf_pred_elim                       true
% 0.77/0.95  % --qbf_split                           32
% 0.77/0.95  
% 0.77/0.95  % ------ BMC1 Options
% 0.77/0.95  
% 0.77/0.95  % --bmc1_incremental                    false
% 0.77/0.95  % --bmc1_axioms                         reachable_all
% 0.77/0.95  % --bmc1_min_bound                      0
% 0.77/0.95  % --bmc1_max_bound                      -1
% 0.77/0.95  % --bmc1_max_bound_default              -1
% 0.77/0.95  % --bmc1_symbol_reachability            true
% 0.77/0.95  % --bmc1_property_lemmas                false
% 0.77/0.95  % --bmc1_k_induction                    false
% 0.77/0.95  % --bmc1_non_equiv_states               false
% 0.77/0.95  % --bmc1_deadlock                       false
% 0.77/0.95  % --bmc1_ucm                            false
% 0.77/0.95  % --bmc1_add_unsat_core                 none
% 0.77/0.95  % --bmc1_unsat_core_children            false
% 0.77/0.95  % --bmc1_unsat_core_extrapolate_axioms  false
% 0.77/0.95  % --bmc1_out_stat                       full
% 0.77/0.95  % --bmc1_ground_init                    false
% 0.77/0.95  % --bmc1_pre_inst_next_state            false
% 0.77/0.95  % --bmc1_pre_inst_state                 false
% 0.77/0.95  % --bmc1_pre_inst_reach_state           false
% 0.77/0.95  % --bmc1_out_unsat_core                 false
% 0.77/0.95  % --bmc1_aig_witness_out                false
% 0.77/0.95  % --bmc1_verbose                        false
% 0.77/0.95  % --bmc1_dump_clauses_tptp              false
% 0.77/0.95  % --bmc1_dump_unsat_core_tptp           false
% 0.77/0.95  % --bmc1_dump_file                      -
% 0.77/0.95  % --bmc1_ucm_expand_uc_limit            128
% 0.77/0.95  % --bmc1_ucm_n_expand_iterations        6
% 0.77/0.95  % --bmc1_ucm_extend_mode                1
% 0.77/0.95  % --bmc1_ucm_init_mode                  2
% 0.77/0.95  % --bmc1_ucm_cone_mode                  none
% 0.77/0.95  % --bmc1_ucm_reduced_relation_type      0
% 0.77/0.95  % --bmc1_ucm_relax_model                4
% 0.77/0.95  % --bmc1_ucm_full_tr_after_sat          true
% 0.77/0.95  % --bmc1_ucm_expand_neg_assumptions     false
% 0.77/0.95  % --bmc1_ucm_layered_model              none
% 0.77/0.95  % --bmc1_ucm_max_lemma_size             10
% 0.77/0.95  
% 0.77/0.95  % ------ AIG Options
% 0.77/0.95  
% 0.77/0.95  % --aig_mode                            false
% 0.77/0.95  
% 0.77/0.95  % ------ Instantiation Options
% 0.77/0.95  
% 0.77/0.95  % --instantiation_flag                  true
% 0.77/0.95  % --inst_lit_sel                        [+prop;+sign;+ground;-num_var;-num_symb]
% 0.77/0.95  % --inst_solver_per_active              750
% 0.77/0.95  % --inst_solver_calls_frac              0.5
% 0.77/0.95  % --inst_passive_queue_type             priority_queues
% 0.77/0.95  % --inst_passive_queues                 [[-conj_dist;+conj_symb;-num_var];[+age;-num_symb]]
% 0.77/0.95  % --inst_passive_queues_freq            [25;2]
% 0.77/0.95  % --inst_dismatching                    true
% 0.77/0.95  % --inst_eager_unprocessed_to_passive   true
% 4.64/4.85  % --inst_prop_sim_given                 true
% 4.64/4.85  % --inst_prop_sim_new                   false
% 4.64/4.85  % --inst_orphan_elimination             true
% 4.64/4.85  % --inst_learning_loop_flag             true
% 4.64/4.85  % --inst_learning_start                 3000
% 4.64/4.85  % --inst_learning_factor                2
% 4.64/4.85  % --inst_start_prop_sim_after_learn     3
% 4.64/4.85  % --inst_sel_renew                      solver
% 4.64/4.85  % --inst_lit_activity_flag              true
% 4.64/4.85  % --inst_out_proof                      true
% 4.64/4.85  
% 4.64/4.85  % ------ Resolution Options
% 4.64/4.85  
% 4.64/4.85  % --resolution_flag                     true
% 4.64/4.85  % --res_lit_sel                         kbo_max
% 4.64/4.85  % --res_to_prop_solver                  none
% 4.64/4.85  % --res_prop_simpl_new                  false
% 4.64/4.85  % --res_prop_simpl_given                false
% 4.64/4.85  % --res_passive_queue_type              priority_queues
% 4.64/4.85  % --res_passive_queues                  [[-conj_dist;+conj_symb;-num_symb];[+age;-num_symb]]
% 4.64/4.85  % --res_passive_queues_freq             [15;5]
% 4.64/4.85  % --res_forward_subs                    full
% 4.64/4.85  % --res_backward_subs                   full
% 4.64/4.85  % --res_forward_subs_resolution         true
% 4.64/4.85  % --res_backward_subs_resolution        true
% 4.64/4.85  % --res_orphan_elimination              false
% 4.64/4.85  % --res_time_limit                      1000.
% 4.64/4.85  % --res_out_proof                       true
% 4.64/4.85  % --proof_out_file                      /export/starexec/sandbox/tmp/iprover_proof_32e28e.s
% 4.64/4.85  % --modulo                              true
% 4.64/4.85  
% 4.64/4.85  % ------ Combination Options
% 4.64/4.85  
% 4.64/4.85  % --comb_res_mult                       1000
% 4.64/4.85  % --comb_inst_mult                      300
% 4.64/4.85  % ------ 
% 4.64/4.85  
% 4.64/4.85  
% 4.64/4.85  
% 4.64/4.85  % ------ Proving...
% 4.64/4.85  % warning:  shown sat in sat incomplete mode 
% 4.64/4.85  % 
% 4.64/4.85  
% 4.64/4.85  
% 4.64/4.85  ------ Building Model...Done
% 4.64/4.85  
% 4.64/4.85  %------ The model is defined over ground terms (initial term algebra).
% 4.64/4.85  %------ Predicates are defined as (\forall x_1,..,x_n  ((~)P(x_1,..,x_n) <=> (\phi(x_1,..,x_n)))) 
% 4.64/4.85  %------ where \phi is a formula over the term algebra.
% 4.64/4.85  %------ If we have equality in the problem then it is also defined as a predicate above, 
% 4.64/4.85  %------ with "=" on the right-hand-side of the definition interpreted over the term algebra term_algebra_type
% 4.64/4.85  %------ See help for --sat_out_model for different model outputs.
% 4.64/4.85  %------ equality_sorted(X0,X1,X2) can be used in the place of usual "="
% 4.64/4.85  %------ where the first argument stands for the sort ($i in the unsorted case)
% 4.64/4.85  
% 4.64/4.85  
% 4.64/4.85  
% 4.64/4.85  
% 4.64/4.85  %------ Negative definition of equality_sorted 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X0,X1] : 
% 4.64/4.85        ( ~(equality_sorted(X0,X0,X1)) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=$i & X0=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of of 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2] : 
% 4.64/4.85        ( of(X0,X1,X2) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk4_0 & X2=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of forename 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( forename(X0,X1) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of entity 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( entity(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk2_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of placename 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( placename(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk4_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of member 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2] : 
% 4.64/4.85        ( member(X0,X1,X2) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) & X2=sk3_esk7_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) & X2=sk3_esk7_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of jules_forename 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( jules_forename(X0,X1) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of relname 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( relname(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk4_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of furniture 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( furniture(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk2_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of instrumentality 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( instrumentality(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk2_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of seat 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( seat(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk2_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of frontseat 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( frontseat(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk2_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of location 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( location(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of object 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( object(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk2_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of city 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( city(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of hollywood_placename 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( hollywood_placename(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk4_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of abstraction 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( abstraction(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk4_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Negative definition of unisex 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( ~(unisex(X0,X1)) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of general 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( general(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk4_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of nonhuman 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( nonhuman(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk4_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of thing 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( thing(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk2_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk4_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk6_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk2_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk1_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of relation 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( relation(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk4_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of transport 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( transport(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of vehicle 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( vehicle(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of car 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( car(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of chevy 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( chevy(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of way 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( way(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of artifact 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( artifact(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk2_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of street 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( street(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of barrel 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( barrel(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk6_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of event 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( event(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk6_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk2_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk1_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of two 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( two(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk7_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of group 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( group(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk7_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk10_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of man 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( man(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of male 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( male(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of human_person 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( human_person(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of animate 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( animate(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of human 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( human(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of organism 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( organism(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of living 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( living(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Negative definition of impartial 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( ~(impartial(X0,X1)) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of fellow 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( fellow(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of wear 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( wear(X0,X1) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of set 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( set(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk7_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk10_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of multiple 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( multiple(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk7_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk10_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of clothes 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( clothes(X0,X1) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of coat 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( coat(X0,X1) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of nonliving 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( nonliving(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk2_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Negative definition of existent 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( ~(existent(X0,X1)) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk6_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk2_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk1_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Negative definition of specific 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( ~(specific(X0,X1)) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk4_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of device 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( device(X0,X1) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of wheel 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( wheel(X0,X1) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of eventuality 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( eventuality(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk6_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk2_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk1_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of state 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( state(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk2_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk1_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of nonexistent 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( nonexistent(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk6_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk2_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk1_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Negative definition of singleton 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( ~(singleton(X0,X1)) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk7_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk10_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Negative definition of white 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( ~(white(X0,X1)) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of black 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( black(X0,X1) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Negative definition of young 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( ~(young(X0,X1)) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of old 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( old(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Negative definition of agent 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2] : 
% 4.64/4.85        ( ~(agent(X0,X1,X2)) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of nonreflexive 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( nonreflexive(X0,X1) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of be 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3] : 
% 4.64/4.85        ( be(X0,X1,X2,X3) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk2_2(sk3_esk7_0,sk3_esk1_0)) & X2=sk1_esk2_2(sk3_esk7_0,sk3_esk1_0) & X3=sk3_esk9_1(sk1_esk2_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk8_1(sk1_esk1_2(sk3_esk7_0,sk3_esk1_0)) & X2=sk1_esk1_2(sk3_esk7_0,sk3_esk1_0) & X3=sk3_esk9_1(sk1_esk1_2(sk3_esk7_0,sk3_esk1_0)) )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Negative definition of actual_world 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0] : 
% 4.64/4.85        ( ~(actual_world(X0)) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of dirty 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( dirty(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk3_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of lonely 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( lonely(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of present 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1] : 
% 4.64/4.85        ( present(X0,X1) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk6_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Negative definition of down 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2] : 
% 4.64/4.85        ( ~(down(X0,X1,X2)) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of in 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2] : 
% 4.64/4.85        ( in(X0,X1,X2) <=>
% 4.64/4.85             (
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk6_0 & X2=sk3_esk5_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk9_1(sk1_esk2_2(sk3_esk7_0,sk3_esk1_0)) & X2=sk3_esk2_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85               | 
% 4.64/4.85                (
% 4.64/4.85                  ( X0=sk3_esk1_0 & X1=sk3_esk9_1(sk1_esk1_2(sk3_esk7_0,sk3_esk1_0)) & X2=sk3_esk2_0 )
% 4.64/4.85                )
% 4.64/4.85  
% 4.64/4.85             )
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of behind 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2] : 
% 4.64/4.85        ( behind(X0,X1,X2) <=>
% 4.64/4.85            $false
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP0_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP0_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP3_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP3_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP6_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP6_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP9_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP9_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP12_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP12_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP15_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP15_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP18_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP18_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP21_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP21_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP24_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP24_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP27_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP27_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP30_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP30_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP33_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP33_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP36_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP36_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP39_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP39_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP42_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP42_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP45_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP45_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP48_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP48_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP51_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP51_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP54_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP54_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP57_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP57_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP60_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP60_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP63_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP63_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP66_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP66_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP69_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP69_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP72_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP72_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP75_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP75_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP78_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP78_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP81_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP81_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP84_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP84_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP87_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP87_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP90_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP90_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP93_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP93_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP96_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP96_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP99_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP99_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP102_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP102_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP105_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP105_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP108_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP108_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP111_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP111_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP114_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP114_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP117_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 4.64/4.85        ( sP117_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP120_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP120_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP123_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP123_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP126_iProver_split 
% 4.64/4.85  fof(lit_def,axiom,
% 4.64/4.85      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.85        ( sP126_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.85            $true
% 4.64/4.85        )
% 4.64/4.85      )
% 4.64/4.85     ).
% 4.64/4.85  
% 4.64/4.85  %------ Positive definition of sP129_iProver_split 
% 4.64/4.86  fof(lit_def,axiom,
% 4.64/4.86      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.86        ( sP129_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.86            $true
% 4.64/4.86        )
% 4.64/4.86      )
% 4.64/4.86     ).
% 4.64/4.86  
% 4.64/4.86  %------ Positive definition of sP132_iProver_split 
% 4.64/4.86  fof(lit_def,axiom,
% 4.64/4.86      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.86        ( sP132_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.86            $true
% 4.64/4.86        )
% 4.64/4.86      )
% 4.64/4.86     ).
% 4.64/4.86  
% 4.64/4.86  %------ Positive definition of sP135_iProver_split 
% 4.64/4.86  fof(lit_def,axiom,
% 4.64/4.86      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.86        ( sP135_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.86            $true
% 4.64/4.86        )
% 4.64/4.86      )
% 4.64/4.86     ).
% 4.64/4.86  
% 4.64/4.86  %------ Positive definition of sP138_iProver_split 
% 4.64/4.86  fof(lit_def,axiom,
% 4.64/4.86      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.86        ( sP138_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.86            $true
% 4.64/4.86        )
% 4.64/4.86      )
% 4.64/4.86     ).
% 4.64/4.86  
% 4.64/4.86  %------ Positive definition of sP141_iProver_split 
% 4.64/4.86  fof(lit_def,axiom,
% 4.64/4.86      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 4.64/4.86        ( sP141_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 4.64/4.86            $true
% 4.64/4.86        )
% 4.64/4.86      )
% 4.64/4.86     ).
% 4.64/4.86  
% 4.64/4.86  
% 4.64/4.86  
% 4.64/4.86  % ------                             Statistics
% 4.64/4.86  
% 4.64/4.86  % ------ General
% 4.64/4.86  
% 4.64/4.86  % num_of_input_clauses:                 146
% 4.64/4.86  % num_of_input_neg_conjectures:         59
% 4.64/4.86  % num_of_splits:                        144
% 4.64/4.86  % num_of_split_atoms:                   144
% 4.64/4.86  % num_of_sem_filtered_clauses:          0
% 4.64/4.86  % num_of_subtypes:                      0
% 4.64/4.86  % monotx_restored_types:                0
% 4.64/4.86  % sat_num_of_epr_types:                 0
% 4.64/4.86  % sat_num_of_non_cyclic_types:          0
% 4.64/4.86  % sat_guarded_non_collapsed_types:      0
% 4.64/4.86  % is_epr:                               0
% 4.64/4.86  % is_horn:                              0
% 4.64/4.86  % has_eq:                               1
% 4.64/4.86  % num_pure_diseq_elim:                  0
% 4.64/4.86  % simp_replaced_by:                     0
% 4.64/4.86  % res_preprocessed:                     262
% 4.64/4.86  % prep_upred:                           0
% 4.64/4.86  % prep_unflattend:                      2452
% 4.64/4.86  % pred_elim_cands:                      144
% 4.64/4.86  % pred_elim:                            60
% 4.64/4.86  % pred_elim_cl:                         66
% 4.64/4.86  % pred_elim_cycles:                     158
% 4.64/4.86  % forced_gc_time:                       0
% 4.64/4.86  % gc_basic_clause_elim:                 0
% 4.64/4.86  % parsing_time:                         0.018
% 4.64/4.86  % sem_filter_time:                      0.
% 4.64/4.86  % pred_elim_time:                       0.336
% 4.64/4.86  % out_proof_time:                       0.
% 4.64/4.86  % monotx_time:                          0.
% 4.64/4.86  % subtype_inf_time:                     0.
% 4.64/4.86  % unif_index_cands_time:                0.005
% 4.64/4.86  % unif_index_add_time:                  0.007
% 4.64/4.86  % total_time:                           4.399
% 4.64/4.86  % num_of_symbols:                       259
% 4.64/4.86  % num_of_terms:                         16159
% 4.64/4.86  
% 4.64/4.86  % ------ Propositional Solver
% 4.64/4.86  
% 4.64/4.86  % prop_solver_calls:                    12
% 4.64/4.86  % prop_fast_solver_calls:               10081
% 4.64/4.86  % prop_num_of_clauses:                  1966
% 4.64/4.86  % prop_preprocess_simplified:           5197
% 4.64/4.86  % prop_fo_subsumed:                     104
% 4.64/4.86  % prop_solver_time:                     0.001
% 4.64/4.86  % prop_fast_solver_time:                0.022
% 4.64/4.86  % prop_unsat_core_time:                 0.
% 4.64/4.86  
% 4.64/4.86  % ------ QBF 
% 4.64/4.86  
% 4.64/4.86  % qbf_q_res:                            0
% 4.64/4.86  % qbf_num_tautologies:                  0
% 4.64/4.86  % qbf_prep_cycles:                      0
% 4.64/4.86  
% 4.64/4.86  % ------ BMC1
% 4.64/4.86  
% 4.64/4.86  % bmc1_current_bound:                   -1
% 4.64/4.86  % bmc1_last_solved_bound:               -1
% 4.64/4.86  % bmc1_unsat_core_size:                 -1
% 4.64/4.86  % bmc1_unsat_core_parents_size:         -1
% 4.64/4.86  % bmc1_merge_next_fun:                  0
% 4.64/4.86  % bmc1_unsat_core_clauses_time:         0.
% 4.64/4.86  
% 4.64/4.86  % ------ Instantiation
% 4.64/4.86  
% 4.64/4.86  % inst_num_of_clauses:                  733
% 4.64/4.86  % inst_num_in_passive:                  0
% 4.64/4.86  % inst_num_in_active:                   733
% 4.64/4.86  % inst_num_in_unprocessed:              0
% 4.64/4.86  % inst_num_of_loops:                    743
% 4.64/4.86  % inst_num_of_learning_restarts:        0
% 4.64/4.86  % inst_num_moves_active_passive:        0
% 4.64/4.86  % inst_lit_activity:                    192
% 4.64/4.86  % inst_lit_activity_moves:              0
% 4.64/4.86  % inst_num_tautologies:                 0
% 4.64/4.86  % inst_num_prop_implied:                0
% 4.64/4.86  % inst_num_existing_simplified:         0
% 4.64/4.86  % inst_num_eq_res_simplified:           0
% 4.64/4.86  % inst_num_child_elim:                  0
% 4.64/4.86  % inst_num_of_dismatching_blockings:    0
% 4.64/4.86  % inst_num_of_non_proper_insts:         264
% 4.64/4.86  % inst_num_of_duplicates:               31
% 4.64/4.86  % inst_inst_num_from_inst_to_res:       0
% 4.64/4.86  % inst_dismatching_checking_time:       0.
% 4.64/4.86  
% 4.64/4.86  % ------ Resolution
% 4.64/4.86  
% 4.64/4.86  % res_num_of_clauses:                   8151
% 4.64/4.86  % res_num_in_passive:                   5442
% 4.64/4.86  % res_num_in_active:                    2557
% 4.64/4.86  % res_num_of_loops:                     3000
% 4.64/4.86  % res_forward_subset_subsumed:          1407
% 4.64/4.86  % res_backward_subset_subsumed:         0
% 4.64/4.86  % res_forward_subsumed:                 2
% 4.64/4.86  % res_backward_subsumed:                0
% 4.64/4.86  % res_forward_subsumption_resolution:   1186
% 4.64/4.86  % res_backward_subsumption_resolution:  0
% 4.64/4.86  % res_clause_to_clause_subsumption:     7294
% 4.64/4.86  % res_orphan_elimination:               0
% 4.64/4.86  % res_tautology_del:                    0
% 4.64/4.86  % res_num_eq_res_simplified:            1
% 4.64/4.86  % res_num_sel_changes:                  0
% 4.64/4.86  % res_moves_from_active_to_pass:        0
% 4.64/4.86  
% 4.64/4.86  % Status Unknown
% 4.70/4.92  % Orienting using strategy ClausalAll
% 4.70/4.92  % FOF problem with conjecture
% 4.70/4.92  % Executing iprover_moduloopt --modulo true --schedule none --sub_typing false --res_to_prop_solver none --res_prop_simpl_given false --res_lit_sel kbo_max --large_theory_mode false --res_time_limit 1000 --res_orphan_elimination false --prep_sem_filter none --prep_unflatten false --comb_res_mult 1000 --comb_inst_mult 300 --clausifier .//eprover --clausifier_options "--tstp-format  " --proof_out_file /export/starexec/sandbox/tmp/iprover_proof_32e28e.s --tptp_safe_out true --time_out_real 150 /export/starexec/sandbox/tmp/iprover_modulo_7092f1.p | tee /export/starexec/sandbox/tmp/iprover_modulo_out_9b589b | grep -v "SZS"
% 4.70/4.94  
% 4.70/4.94  %---------------- iProver v2.5 (CASC-J8 2016) ----------------%
% 4.70/4.94  
% 4.70/4.94  % 
% 4.70/4.94  % ------  iProver source info 
% 4.70/4.94  
% 4.70/4.94  % git: sha1: 57accf6c58032223c7708532cf852a99fa48c1b3
% 4.70/4.94  % git: non_committed_changes: true
% 4.70/4.94  % git: last_make_outside_of_git: true
% 4.70/4.94  
% 4.70/4.94  % 
% 4.70/4.94  % ------ Input Options
% 4.70/4.94  
% 4.70/4.94  % --out_options                         all
% 4.70/4.94  % --tptp_safe_out                       true
% 4.70/4.94  % --problem_path                        ""
% 4.70/4.94  % --include_path                        ""
% 4.70/4.94  % --clausifier                          .//eprover
% 4.70/4.94  % --clausifier_options                  --tstp-format  
% 4.70/4.94  % --stdin                               false
% 4.70/4.94  % --dbg_backtrace                       false
% 4.70/4.94  % --dbg_dump_prop_clauses               false
% 4.70/4.94  % --dbg_dump_prop_clauses_file          -
% 4.70/4.94  % --dbg_out_stat                        false
% 4.70/4.94  
% 4.70/4.94  % ------ General Options
% 4.70/4.94  
% 4.70/4.94  % --fof                                 false
% 4.70/4.94  % --time_out_real                       150.
% 4.70/4.94  % --time_out_prep_mult                  0.2
% 4.70/4.94  % --time_out_virtual                    -1.
% 4.70/4.94  % --schedule                            none
% 4.70/4.94  % --ground_splitting                    input
% 4.70/4.94  % --splitting_nvd                       16
% 4.70/4.94  % --non_eq_to_eq                        false
% 4.70/4.94  % --prep_gs_sim                         true
% 4.70/4.94  % --prep_unflatten                      false
% 4.70/4.94  % --prep_res_sim                        true
% 4.70/4.94  % --prep_upred                          true
% 4.70/4.94  % --res_sim_input                       true
% 4.70/4.94  % --clause_weak_htbl                    true
% 4.70/4.94  % --gc_record_bc_elim                   false
% 4.70/4.94  % --symbol_type_check                   false
% 4.70/4.94  % --clausify_out                        false
% 4.70/4.94  % --large_theory_mode                   false
% 4.70/4.94  % --prep_sem_filter                     none
% 4.70/4.94  % --prep_sem_filter_out                 false
% 4.70/4.94  % --preprocessed_out                    false
% 4.70/4.94  % --sub_typing                          false
% 4.70/4.94  % --brand_transform                     false
% 4.70/4.94  % --pure_diseq_elim                     true
% 4.70/4.94  % --min_unsat_core                      false
% 4.70/4.94  % --pred_elim                           true
% 4.70/4.94  % --add_important_lit                   false
% 4.70/4.94  % --soft_assumptions                    false
% 4.70/4.94  % --reset_solvers                       false
% 4.70/4.94  % --bc_imp_inh                          []
% 4.70/4.94  % --conj_cone_tolerance                 1.5
% 4.70/4.94  % --prolific_symb_bound                 500
% 4.70/4.94  % --lt_threshold                        2000
% 4.70/4.94  
% 4.70/4.94  % ------ SAT Options
% 4.70/4.94  
% 4.70/4.94  % --sat_mode                            false
% 4.70/4.94  % --sat_fm_restart_options              ""
% 4.70/4.94  % --sat_gr_def                          false
% 4.70/4.94  % --sat_epr_types                       true
% 4.70/4.94  % --sat_non_cyclic_types                false
% 4.70/4.94  % --sat_finite_models                   false
% 4.70/4.94  % --sat_fm_lemmas                       false
% 4.70/4.94  % --sat_fm_prep                         false
% 4.70/4.94  % --sat_fm_uc_incr                      true
% 4.70/4.94  % --sat_out_model                       small
% 4.70/4.94  % --sat_out_clauses                     false
% 4.70/4.94  
% 4.70/4.94  % ------ QBF Options
% 4.70/4.94  
% 4.70/4.94  % --qbf_mode                            false
% 4.70/4.94  % --qbf_elim_univ                       true
% 4.70/4.94  % --qbf_sk_in                           true
% 4.70/4.94  % --qbf_pred_elim                       true
% 4.70/4.94  % --qbf_split                           32
% 4.70/4.94  
% 4.70/4.94  % ------ BMC1 Options
% 4.70/4.94  
% 4.70/4.94  % --bmc1_incremental                    false
% 4.70/4.94  % --bmc1_axioms                         reachable_all
% 4.70/4.94  % --bmc1_min_bound                      0
% 4.70/4.94  % --bmc1_max_bound                      -1
% 4.70/4.94  % --bmc1_max_bound_default              -1
% 4.70/4.94  % --bmc1_symbol_reachability            true
% 4.70/4.94  % --bmc1_property_lemmas                false
% 4.70/4.94  % --bmc1_k_induction                    false
% 4.70/4.94  % --bmc1_non_equiv_states               false
% 4.70/4.94  % --bmc1_deadlock                       false
% 4.70/4.94  % --bmc1_ucm                            false
% 4.70/4.94  % --bmc1_add_unsat_core                 none
% 4.70/4.94  % --bmc1_unsat_core_children            false
% 4.70/4.94  % --bmc1_unsat_core_extrapolate_axioms  false
% 4.70/4.94  % --bmc1_out_stat                       full
% 4.70/4.94  % --bmc1_ground_init                    false
% 4.70/4.94  % --bmc1_pre_inst_next_state            false
% 4.70/4.94  % --bmc1_pre_inst_state                 false
% 4.70/4.94  % --bmc1_pre_inst_reach_state           false
% 4.70/4.94  % --bmc1_out_unsat_core                 false
% 4.70/4.94  % --bmc1_aig_witness_out                false
% 4.70/4.94  % --bmc1_verbose                        false
% 4.70/4.94  % --bmc1_dump_clauses_tptp              false
% 4.97/5.19  % --bmc1_dump_unsat_core_tptp           false
% 4.97/5.19  % --bmc1_dump_file                      -
% 4.97/5.19  % --bmc1_ucm_expand_uc_limit            128
% 4.97/5.19  % --bmc1_ucm_n_expand_iterations        6
% 4.97/5.19  % --bmc1_ucm_extend_mode                1
% 4.97/5.19  % --bmc1_ucm_init_mode                  2
% 4.97/5.19  % --bmc1_ucm_cone_mode                  none
% 4.97/5.19  % --bmc1_ucm_reduced_relation_type      0
% 4.97/5.19  % --bmc1_ucm_relax_model                4
% 4.97/5.19  % --bmc1_ucm_full_tr_after_sat          true
% 4.97/5.19  % --bmc1_ucm_expand_neg_assumptions     false
% 4.97/5.19  % --bmc1_ucm_layered_model              none
% 4.97/5.19  % --bmc1_ucm_max_lemma_size             10
% 4.97/5.19  
% 4.97/5.19  % ------ AIG Options
% 4.97/5.19  
% 4.97/5.19  % --aig_mode                            false
% 4.97/5.19  
% 4.97/5.19  % ------ Instantiation Options
% 4.97/5.19  
% 4.97/5.19  % --instantiation_flag                  true
% 4.97/5.19  % --inst_lit_sel                        [+prop;+sign;+ground;-num_var;-num_symb]
% 4.97/5.19  % --inst_solver_per_active              750
% 4.97/5.19  % --inst_solver_calls_frac              0.5
% 4.97/5.19  % --inst_passive_queue_type             priority_queues
% 4.97/5.19  % --inst_passive_queues                 [[-conj_dist;+conj_symb;-num_var];[+age;-num_symb]]
% 4.97/5.19  % --inst_passive_queues_freq            [25;2]
% 4.97/5.19  % --inst_dismatching                    true
% 4.97/5.19  % --inst_eager_unprocessed_to_passive   true
% 4.97/5.19  % --inst_prop_sim_given                 true
% 4.97/5.19  % --inst_prop_sim_new                   false
% 4.97/5.19  % --inst_orphan_elimination             true
% 4.97/5.19  % --inst_learning_loop_flag             true
% 4.97/5.19  % --inst_learning_start                 3000
% 4.97/5.19  % --inst_learning_factor                2
% 4.97/5.19  % --inst_start_prop_sim_after_learn     3
% 4.97/5.19  % --inst_sel_renew                      solver
% 4.97/5.19  % --inst_lit_activity_flag              true
% 4.97/5.19  % --inst_out_proof                      true
% 4.97/5.19  
% 4.97/5.19  % ------ Resolution Options
% 4.97/5.19  
% 4.97/5.19  % --resolution_flag                     true
% 4.97/5.19  % --res_lit_sel                         kbo_max
% 4.97/5.19  % --res_to_prop_solver                  none
% 4.97/5.19  % --res_prop_simpl_new                  false
% 4.97/5.19  % --res_prop_simpl_given                false
% 4.97/5.19  % --res_passive_queue_type              priority_queues
% 4.97/5.19  % --res_passive_queues                  [[-conj_dist;+conj_symb;-num_symb];[+age;-num_symb]]
% 4.97/5.19  % --res_passive_queues_freq             [15;5]
% 4.97/5.19  % --res_forward_subs                    full
% 4.97/5.19  % --res_backward_subs                   full
% 4.97/5.19  % --res_forward_subs_resolution         true
% 4.97/5.19  % --res_backward_subs_resolution        true
% 4.97/5.19  % --res_orphan_elimination              false
% 4.97/5.19  % --res_time_limit                      1000.
% 4.97/5.19  % --res_out_proof                       true
% 4.97/5.19  % --proof_out_file                      /export/starexec/sandbox/tmp/iprover_proof_32e28e.s
% 4.97/5.19  % --modulo                              true
% 4.97/5.19  
% 4.97/5.19  % ------ Combination Options
% 4.97/5.19  
% 4.97/5.19  % --comb_res_mult                       1000
% 4.97/5.19  % --comb_inst_mult                      300
% 4.97/5.19  % ------ 
% 4.97/5.19  
% 4.97/5.19  % ------ Parsing...% successful
% 4.97/5.19  
% 4.97/5.19  % ------ Preprocessing... gs_s  sp: 0 0s  gs_e  snvd_s sp: 144 0s snvd_e  pe_s  pe:1:0s pe:2:0s pe:4:0s pe:8:0s pe:16:0s pe:32:0s pe_e  snvd_s sp: 0 0s snvd_e % 
% 4.97/5.19  
% 4.97/5.19  % ------ Proving...
% 4.97/5.19  % ------ Problem Properties 
% 4.97/5.19  
% 4.97/5.19  % 
% 4.97/5.19  % EPR                                   false
% 4.97/5.19  % Horn                                  false
% 4.97/5.19  % Has equality                          true
% 4.97/5.19  
% 4.97/5.19  % % ------ Input Options Time Limit: Unbounded
% 4.97/5.19  
% 4.97/5.19  
% 4.97/5.19  % % ------ Current options:
% 4.97/5.19  
% 4.97/5.19  % ------ Input Options
% 4.97/5.19  
% 4.97/5.19  % --out_options                         all
% 4.97/5.19  % --tptp_safe_out                       true
% 4.97/5.19  % --problem_path                        ""
% 4.97/5.19  % --include_path                        ""
% 4.97/5.19  % --clausifier                          .//eprover
% 4.97/5.19  % --clausifier_options                  --tstp-format  
% 4.97/5.19  % --stdin                               false
% 4.97/5.19  % --dbg_backtrace                       false
% 4.97/5.19  % --dbg_dump_prop_clauses               false
% 4.97/5.19  % --dbg_dump_prop_clauses_file          -
% 4.97/5.19  % --dbg_out_stat                        false
% 4.97/5.19  
% 4.97/5.19  % ------ General Options
% 4.97/5.19  
% 4.97/5.19  % --fof                                 false
% 4.97/5.19  % --time_out_real                       150.
% 4.97/5.19  % --time_out_prep_mult                  0.2
% 4.97/5.19  % --time_out_virtual                    -1.
% 4.97/5.19  % --schedule                            none
% 4.97/5.19  % --ground_splitting                    input
% 4.97/5.19  % --splitting_nvd                       16
% 4.97/5.19  % --non_eq_to_eq                        false
% 4.97/5.19  % --prep_gs_sim                         true
% 4.97/5.19  % --prep_unflatten                      false
% 4.97/5.19  % --prep_res_sim                        true
% 4.97/5.19  % --prep_upred                          true
% 4.97/5.19  % --res_sim_input                       true
% 4.97/5.19  % --clause_weak_htbl                    true
% 4.97/5.19  % --gc_record_bc_elim                   false
% 4.97/5.19  % --symbol_type_check                   false
% 4.97/5.19  % --clausify_out                        false
% 4.97/5.19  % --large_theory_mode                   false
% 4.97/5.19  % --prep_sem_filter                     none
% 4.97/5.19  % --prep_sem_filter_out                 false
% 4.97/5.19  % --preprocessed_out                    false
% 4.97/5.19  % --sub_typing                          false
% 4.97/5.19  % --brand_transform                     false
% 4.97/5.19  % --pure_diseq_elim                     true
% 4.97/5.19  % --min_unsat_core                      false
% 4.97/5.19  % --pred_elim                           true
% 4.97/5.19  % --add_important_lit                   false
% 4.97/5.19  % --soft_assumptions                    false
% 4.97/5.19  % --reset_solvers                       false
% 4.97/5.19  % --bc_imp_inh                          []
% 4.97/5.19  % --conj_cone_tolerance                 1.5
% 4.97/5.19  % --prolific_symb_bound                 500
% 4.97/5.19  % --lt_threshold                        2000
% 4.97/5.19  
% 4.97/5.19  % ------ SAT Options
% 4.97/5.19  
% 4.97/5.19  % --sat_mode                            false
% 4.97/5.19  % --sat_fm_restart_options              ""
% 4.97/5.19  % --sat_gr_def                          false
% 4.97/5.19  % --sat_epr_types                       true
% 4.97/5.19  % --sat_non_cyclic_types                false
% 4.97/5.19  % --sat_finite_models                   false
% 4.97/5.19  % --sat_fm_lemmas                       false
% 4.97/5.19  % --sat_fm_prep                         false
% 4.97/5.19  % --sat_fm_uc_incr                      true
% 4.97/5.19  % --sat_out_model                       small
% 4.97/5.19  % --sat_out_clauses                     false
% 4.97/5.19  
% 4.97/5.19  % ------ QBF Options
% 4.97/5.19  
% 4.97/5.19  % --qbf_mode                            false
% 4.97/5.19  % --qbf_elim_univ                       true
% 4.97/5.19  % --qbf_sk_in                           true
% 4.97/5.19  % --qbf_pred_elim                       true
% 4.97/5.19  % --qbf_split                           32
% 4.97/5.19  
% 4.97/5.19  % ------ BMC1 Options
% 4.97/5.19  
% 4.97/5.19  % --bmc1_incremental                    false
% 4.97/5.19  % --bmc1_axioms                         reachable_all
% 4.97/5.19  % --bmc1_min_bound                      0
% 4.97/5.19  % --bmc1_max_bound                      -1
% 4.97/5.19  % --bmc1_max_bound_default              -1
% 4.97/5.19  % --bmc1_symbol_reachability            true
% 4.97/5.19  % --bmc1_property_lemmas                false
% 4.97/5.19  % --bmc1_k_induction                    false
% 4.97/5.19  % --bmc1_non_equiv_states               false
% 4.97/5.19  % --bmc1_deadlock                       false
% 4.97/5.19  % --bmc1_ucm                            false
% 4.97/5.19  % --bmc1_add_unsat_core                 none
% 4.97/5.19  % --bmc1_unsat_core_children            false
% 4.97/5.19  % --bmc1_unsat_core_extrapolate_axioms  false
% 4.97/5.19  % --bmc1_out_stat                       full
% 4.97/5.19  % --bmc1_ground_init                    false
% 4.97/5.19  % --bmc1_pre_inst_next_state            false
% 4.97/5.19  % --bmc1_pre_inst_state                 false
% 4.97/5.19  % --bmc1_pre_inst_reach_state           false
% 4.97/5.19  % --bmc1_out_unsat_core                 false
% 4.97/5.19  % --bmc1_aig_witness_out                false
% 4.97/5.19  % --bmc1_verbose                        false
% 4.97/5.19  % --bmc1_dump_clauses_tptp              false
% 4.97/5.19  % --bmc1_dump_unsat_core_tptp           false
% 4.97/5.19  % --bmc1_dump_file                      -
% 4.97/5.19  % --bmc1_ucm_expand_uc_limit            128
% 4.97/5.19  % --bmc1_ucm_n_expand_iterations        6
% 4.97/5.19  % --bmc1_ucm_extend_mode                1
% 4.97/5.19  % --bmc1_ucm_init_mode                  2
% 4.97/5.19  % --bmc1_ucm_cone_mode                  none
% 4.97/5.19  % --bmc1_ucm_reduced_relation_type      0
% 4.97/5.19  % --bmc1_ucm_relax_model                4
% 4.97/5.19  % --bmc1_ucm_full_tr_after_sat          true
% 4.97/5.19  % --bmc1_ucm_expand_neg_assumptions     false
% 4.97/5.19  % --bmc1_ucm_layered_model              none
% 4.97/5.19  % --bmc1_ucm_max_lemma_size             10
% 4.97/5.19  
% 4.97/5.19  % ------ AIG Options
% 4.97/5.19  
% 4.97/5.19  % --aig_mode                            false
% 4.97/5.19  
% 4.97/5.19  % ------ Instantiation Options
% 4.97/5.19  
% 4.97/5.19  % --instantiation_flag                  true
% 4.97/5.19  % --inst_lit_sel                        [+prop;+sign;+ground;-num_var;-num_symb]
% 4.97/5.19  % --inst_solver_per_active              750
% 4.97/5.19  % --inst_solver_calls_frac              0.5
% 4.97/5.19  % --inst_passive_queue_type             priority_queues
% 4.97/5.19  % --inst_passive_queues                 [[-conj_dist;+conj_symb;-num_var];[+age;-num_symb]]
% 4.97/5.19  % --inst_passive_queues_freq            [25;2]
% 4.97/5.19  % --inst_dismatching                    true
% 4.97/5.19  % --inst_eager_unprocessed_to_passive   true
% 9.86/10.09  % --inst_prop_sim_given                 true
% 9.86/10.09  % --inst_prop_sim_new                   false
% 9.86/10.09  % --inst_orphan_elimination             true
% 9.86/10.09  % --inst_learning_loop_flag             true
% 9.86/10.09  % --inst_learning_start                 3000
% 9.86/10.09  % --inst_learning_factor                2
% 9.86/10.09  % --inst_start_prop_sim_after_learn     3
% 9.86/10.09  % --inst_sel_renew                      solver
% 9.86/10.09  % --inst_lit_activity_flag              true
% 9.86/10.09  % --inst_out_proof                      true
% 9.86/10.09  
% 9.86/10.09  % ------ Resolution Options
% 9.86/10.09  
% 9.86/10.09  % --resolution_flag                     true
% 9.86/10.09  % --res_lit_sel                         kbo_max
% 9.86/10.09  % --res_to_prop_solver                  none
% 9.86/10.09  % --res_prop_simpl_new                  false
% 9.86/10.09  % --res_prop_simpl_given                false
% 9.86/10.09  % --res_passive_queue_type              priority_queues
% 9.86/10.09  % --res_passive_queues                  [[-conj_dist;+conj_symb;-num_symb];[+age;-num_symb]]
% 9.86/10.09  % --res_passive_queues_freq             [15;5]
% 9.86/10.09  % --res_forward_subs                    full
% 9.86/10.09  % --res_backward_subs                   full
% 9.86/10.09  % --res_forward_subs_resolution         true
% 9.86/10.09  % --res_backward_subs_resolution        true
% 9.86/10.09  % --res_orphan_elimination              false
% 9.86/10.09  % --res_time_limit                      1000.
% 9.86/10.09  % --res_out_proof                       true
% 9.86/10.09  % --proof_out_file                      /export/starexec/sandbox/tmp/iprover_proof_32e28e.s
% 9.86/10.09  % --modulo                              true
% 9.86/10.09  
% 9.86/10.09  % ------ Combination Options
% 9.86/10.09  
% 9.86/10.09  % --comb_res_mult                       1000
% 9.86/10.09  % --comb_inst_mult                      300
% 9.86/10.09  % ------ 
% 9.86/10.09  
% 9.86/10.09  
% 9.86/10.09  
% 9.86/10.09  % ------ Proving...
% 9.86/10.09  % warning:  shown sat in sat incomplete mode 
% 9.86/10.09  % 
% 9.86/10.09  
% 9.86/10.09  
% 9.86/10.09  ------ Building Model...Done
% 9.86/10.09  
% 9.86/10.09  %------ The model is defined over ground terms (initial term algebra).
% 9.86/10.09  %------ Predicates are defined as (\forall x_1,..,x_n  ((~)P(x_1,..,x_n) <=> (\phi(x_1,..,x_n)))) 
% 9.86/10.09  %------ where \phi is a formula over the term algebra.
% 9.86/10.09  %------ If we have equality in the problem then it is also defined as a predicate above, 
% 9.86/10.09  %------ with "=" on the right-hand-side of the definition interpreted over the term algebra term_algebra_type
% 9.86/10.09  %------ See help for --sat_out_model for different model outputs.
% 9.86/10.09  %------ equality_sorted(X0,X1,X2) can be used in the place of usual "="
% 9.86/10.09  %------ where the first argument stands for the sort ($i in the unsorted case)
% 9.86/10.09  
% 9.86/10.09  
% 9.86/10.09  
% 9.86/10.09  
% 9.86/10.09  %------ Negative definition of equality_sorted 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X0,X1] : 
% 9.86/10.09        ( ~(equality_sorted(X0,X0,X1)) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=$i & X0=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of member 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2] : 
% 9.86/10.09        ( member(X0,X1,X2) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) & X2=sk2_esk7_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) & X2=sk2_esk7_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of jules_forename 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( jules_forename(X0,X1) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of forename 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( forename(X0,X1) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of relname 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( relname(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk4_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of furniture 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( furniture(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of instrumentality 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( instrumentality(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of seat 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( seat(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of frontseat 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( frontseat(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of location 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( location(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of object 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( object(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of city 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( city(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of hollywood_placename 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( hollywood_placename(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk4_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of placename 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( placename(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk4_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of abstraction 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( abstraction(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk4_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of unisex 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( unisex(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk4_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk6_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk2_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk1_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of general 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( general(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk4_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of nonhuman 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( nonhuman(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk4_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of thing 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( thing(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk4_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk6_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk2_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk1_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of relation 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( relation(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk4_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of transport 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( transport(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of vehicle 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( vehicle(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of car 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( car(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of chevy 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( chevy(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of way 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( way(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of artifact 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( artifact(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of street 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( street(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of barrel 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( barrel(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk6_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of event 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( event(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk6_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk2_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk1_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of two 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( two(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk7_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of group 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( group(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk7_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk10_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of man 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( man(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of male 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( male(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of human_person 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( human_person(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of animate 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( animate(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of human 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( human(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of organism 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( organism(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of living 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( living(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Negative definition of impartial 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( ~(impartial(X0,X1)) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of entity 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( entity(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of fellow 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( fellow(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of wear 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( wear(X0,X1) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of set 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( set(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk7_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk10_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of multiple 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( multiple(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk7_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk10_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of clothes 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( clothes(X0,X1) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of coat 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( coat(X0,X1) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of nonliving 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( nonliving(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of existent 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( existent(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of specific 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( specific(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk6_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk2_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk1_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of device 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( device(X0,X1) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of wheel 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( wheel(X0,X1) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of eventuality 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( eventuality(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk6_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk2_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk1_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of state 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( state(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk2_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk1_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of nonexistent 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( nonexistent(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk6_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk2_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk1_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of singleton 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( singleton(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk4_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk6_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk2_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk1_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of white 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( white(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of black 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( black(X0,X1) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of young 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( young(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of old 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( old(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of nonreflexive 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( nonreflexive(X0,X1) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Negative definition of agent 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2] : 
% 9.86/10.09        ( ~(agent(X0,X1,X2)) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of of 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2] : 
% 9.86/10.09        ( of(X0,X1,X2) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk4_0 & X2=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of be 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3] : 
% 9.86/10.09        ( be(X0,X1,X2,X3) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk2_2(sk2_esk1_0,sk2_esk7_0)) & X2=sk1_esk2_2(sk2_esk1_0,sk2_esk7_0) & X3=sk2_esk9_1(sk1_esk2_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk8_1(sk1_esk1_2(sk2_esk1_0,sk2_esk7_0)) & X2=sk1_esk1_2(sk2_esk1_0,sk2_esk7_0) & X3=sk2_esk9_1(sk1_esk1_2(sk2_esk1_0,sk2_esk7_0)) )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Negative definition of actual_world 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0] : 
% 9.86/10.09        ( ~(actual_world(X0)) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of dirty 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( dirty(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk3_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of lonely 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( lonely(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of present 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1] : 
% 9.86/10.09        ( present(X0,X1) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk6_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Negative definition of down 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2] : 
% 9.86/10.09        ( ~(down(X0,X1,X2)) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of in 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2] : 
% 9.86/10.09        ( in(X0,X1,X2) <=>
% 9.86/10.09             (
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk6_0 & X2=sk2_esk5_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk9_1(sk1_esk2_2(sk2_esk1_0,sk2_esk7_0)) & X2=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09               | 
% 9.86/10.09                (
% 9.86/10.09                  ( X0=sk2_esk1_0 & X1=sk2_esk9_1(sk1_esk1_2(sk2_esk1_0,sk2_esk7_0)) & X2=sk2_esk2_0 )
% 9.86/10.09                )
% 9.86/10.09  
% 9.86/10.09             )
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of behind 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2] : 
% 9.86/10.09        ( behind(X0,X1,X2) <=>
% 9.86/10.09            $false
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP0_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP0_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP3_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP3_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP6_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP6_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP9_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP9_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP12_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP12_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP15_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP15_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP18_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP18_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP21_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP21_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP24_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP24_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP27_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP27_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP30_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP30_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP33_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP33_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP36_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP36_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP39_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP39_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP42_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP42_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP45_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP45_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP48_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP48_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP51_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP51_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP54_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP54_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP57_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP57_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP60_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP60_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP63_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP63_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP66_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP66_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP69_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP69_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP72_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP72_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP75_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP75_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP78_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP78_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP81_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP81_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP84_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP84_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP87_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP87_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP90_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP90_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP93_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP93_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP96_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP96_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP99_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP99_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP102_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP102_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP105_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP105_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP108_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP108_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP111_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP111_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP114_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP114_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP117_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11] : 
% 9.86/10.09        ( sP117_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10,X11) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP120_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP120_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP123_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP123_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP126_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP126_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP129_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP129_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP132_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP132_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP135_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP135_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP138_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP138_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  %------ Positive definition of sP141_iProver_split 
% 9.86/10.09  fof(lit_def,axiom,
% 9.86/10.09      (! [X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10] : 
% 9.86/10.09        ( sP141_iProver_split(X0,X1,X2,X3,X4,X5,X6,X7,X8,X9,X10) <=>
% 9.86/10.09            $true
% 9.86/10.09        )
% 9.86/10.09      )
% 9.86/10.09     ).
% 9.86/10.09  
% 9.86/10.09  
% 9.86/10.09  
% 9.86/10.09  % ------                             Statistics
% 9.86/10.09  
% 9.86/10.09  % ------ General
% 9.86/10.09  
% 9.86/10.09  % num_of_input_clauses:                 233
% 9.86/10.09  % num_of_input_neg_conjectures:         59
% 9.86/10.09  % num_of_splits:                        144
% 9.86/10.09  % num_of_split_atoms:                   144
% 9.86/10.09  % num_of_sem_filtered_clauses:          0
% 9.86/10.09  % num_of_subtypes:                      0
% 9.86/10.09  % monotx_restored_types:                0
% 9.86/10.09  % sat_num_of_epr_types:                 0
% 9.86/10.09  % sat_num_of_non_cyclic_types:          0
% 9.86/10.09  % sat_guarded_non_collapsed_types:      0
% 9.86/10.09  % is_epr:                               0
% 9.86/10.09  % is_horn:                              0
% 9.86/10.09  % has_eq:                               1
% 9.86/10.09  % num_pure_diseq_elim:                  0
% 9.86/10.09  % simp_replaced_by:                     0
% 9.86/10.09  % res_preprocessed:                     262
% 9.86/10.09  % prep_upred:                           0
% 9.86/10.09  % prep_unflattend:                      1732
% 9.86/10.09  % pred_elim_cands:                      144
% 9.86/10.09  % pred_elim:                            60
% 9.86/10.09  % pred_elim_cl:                         60
% 9.86/10.09  % pred_elim_cycles:                     152
% 9.86/10.09  % forced_gc_time:                       0
% 9.86/10.09  % gc_basic_clause_elim:                 0
% 9.86/10.09  % parsing_time:                         0.01
% 9.86/10.09  % sem_filter_time:                      0.
% 9.86/10.09  % pred_elim_time:                       0.175
% 9.86/10.09  % out_proof_time:                       0.
% 9.86/10.09  % monotx_time:                          0.
% 9.86/10.09  % subtype_inf_time:                     0.
% 9.86/10.09  % unif_index_cands_time:                0.004
% 9.86/10.09  % unif_index_add_time:                  0.006
% 9.86/10.09  % total_time:                           5.158
% 9.86/10.09  % num_of_symbols:                       259
% 9.86/10.09  % num_of_terms:                         12861
% 9.86/10.09  
% 9.86/10.09  % ------ Propositional Solver
% 9.86/10.09  
% 9.86/10.09  % prop_solver_calls:                    11
% 9.86/10.09  % prop_fast_solver_calls:               7201
% 9.86/10.09  % prop_num_of_clauses:                  1294
% 9.86/10.09  % prop_preprocess_simplified:           4715
% 9.86/10.09  % prop_fo_subsumed:                     2
% 9.86/10.09  % prop_solver_time:                     0.
% 9.86/10.09  % prop_fast_solver_time:                0.01
% 9.86/10.09  % prop_unsat_core_time:                 0.
% 9.86/10.09  
% 9.86/10.09  % ------ QBF 
% 9.86/10.09  
% 9.86/10.09  % qbf_q_res:                            0
% 9.86/10.09  % qbf_num_tautologies:                  0
% 9.86/10.09  % qbf_prep_cycles:                      0
% 9.86/10.09  
% 9.86/10.09  % ------ BMC1
% 9.86/10.09  
% 9.86/10.09  % bmc1_current_bound:                   -1
% 9.86/10.09  % bmc1_last_solved_bound:               -1
% 9.86/10.09  % bmc1_unsat_core_size:                 -1
% 9.86/10.09  % bmc1_unsat_core_parents_size:         -1
% 9.86/10.09  % bmc1_merge_next_fun:                  0
% 9.86/10.09  % bmc1_unsat_core_clauses_time:         0.
% 9.86/10.09  
% 9.86/10.09  % ------ Instantiation
% 9.86/10.09  
% 9.86/10.09  % inst_num_of_clauses:                  641
% 9.86/10.09  % inst_num_in_passive:                  0
% 9.86/10.09  % inst_num_in_active:                   641
% 9.86/10.09  % inst_num_in_unprocessed:              0
% 9.86/10.09  % inst_num_of_loops:                    653
% 9.86/10.09  % inst_num_of_learning_restarts:        0
% 9.86/10.09  % inst_num_moves_active_passive:        0
% 9.86/10.09  % inst_lit_activity:                    67
% 9.86/10.09  % inst_lit_activity_moves:              0
% 9.86/10.09  % inst_num_tautologies:                 0
% 9.86/10.09  % inst_num_prop_implied:                0
% 9.86/10.09  % inst_num_existing_simplified:         0
% 9.86/10.09  % inst_num_eq_res_simplified:           0
% 9.86/10.09  % inst_num_child_elim:                  0
% 9.86/10.09  % inst_num_of_dismatching_blockings:    0
% 9.86/10.09  % inst_num_of_non_proper_insts:         274
% 9.86/10.09  % inst_num_of_duplicates:               156
% 9.86/10.09  % inst_inst_num_from_inst_to_res:       0
% 9.86/10.09  % inst_dismatching_checking_time:       0.
% 9.86/10.09  
% 9.86/10.09  % ------ Resolution
% 9.86/10.09  
% 9.86/10.09  % res_num_of_clauses:                   8872
% 9.86/10.09  % res_num_in_passive:                   6289
% 9.86/10.09  % res_num_in_active:                    2481
% 9.86/10.09  % res_num_of_loops:                     3000
% 9.86/10.09  % res_forward_subset_subsumed:          1218
% 9.86/10.09  % res_backward_subset_subsumed:         0
% 9.86/10.09  % res_forward_subsumed:                 2
% 9.86/10.09  % res_backward_subsumed:                0
% 9.86/10.09  % res_forward_subsumption_resolution:   1656
% 9.86/10.09  % res_backward_subsumption_resolution:  0
% 9.86/10.09  % res_clause_to_clause_subsumption:     30178
% 9.86/10.09  % res_orphan_elimination:               0
% 9.86/10.09  % res_tautology_del:                    369
% 9.86/10.09  % res_num_eq_res_simplified:            0
% 9.86/10.09  % res_num_sel_changes:                  0
% 9.86/10.09  % res_moves_from_active_to_pass:        0
% 9.86/10.09  
% 9.86/10.09  % Status Unknown
% 9.86/10.09  % Last status :
% 9.86/10.09  % SZS status Unknown
%------------------------------------------------------------------------------