%------------------------------------------------------------------------------
% File : iProver---3.9.4
% Problem : CSR115+49 : TPTP v9.3.1. Released v4.0.0.
% Transfm : none
% Format : tptp:raw
% Command : run_iprover 300 /export/starexec/sandbox2/benchmark/theBenchmark.p THM
% Computer : n017.cluster.edu
% Model : x86_64 x86_64
% CPU : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory : 8046.5625MB
% OS : Linux 6.8.0-71-generic
% CPULimit : 300s
% WCLimit : 300s
% DateTime : Fri Sep 25 01:11:11 PM UTC 2026
% Result : Theorem 4.98s 1.62s
% Output : CNFRefutation 4.98s
% Verified :
% SZS Type : Refutation
% Derivation depth : 13
% Number of leaves : 4
% Syntax : Number of formulae : 51 ( 16 unt; 0 def)
% Number of atoms : 1479 ( 0 equ)
% Maximal formula atoms : 180 ( 29 avg)
% Number of connectives : 1505 ( 77 ~; 66 |;1361 &)
% ( 0 <=>; 1 =>; 0 <=; 0 <~>)
% Maximal formula depth : 180 ( 31 avg)
% Maximal term depth : 2 ( 1 avg)
% Number of types : 1 ( 0 usr)
% Number of type conns : 0 ( 0 >; 0 *; 0 +; 0 <<)
% Number of predicates : 22 ( 21 usr; 5 prp; 0-5 aty)
% Number of functors : 47 ( 47 usr; 46 con; 0-2 aty)
% Number of variables : 66 ( 0 sgn 49 !; 17 ?; 20 :)
% Comments :
%------------------------------------------------------------------------------
fof(f97,axiom,
! [X0,X1,X2] :
( ( subs(X0,X1)
& chea(X2,X1) )
=> ? [X3] :
( subs(X3,X2)
& chea(X3,X0) ) ),
file('/export/starexec/sandbox2/benchmark/Axioms/CSR004+0.ax',chea_subs_abs__event) ).
fof(f8535,axiom,
chea(n374bernehmen_1_1,annahme_1_1),
file('/export/starexec/sandbox2/benchmark/Axioms/CSR004+0.ax',fact_8354) ).
fof(f10188,conjecture,
? [X0,X1,X2,X3,X4,X5,X6] :
( val(X2,bmw_0)
& val(X1,bmw_0)
& subs(X4,n374bernehmen_1_1)
& sub(X2,name_1_1)
& sub(X0,firma_1_1)
& sub(X1,name_1_1)
& attr(X5,X6)
& attr(X3,X2)
& attr(X0,X1) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',synth_qa07_007_mira_news_1294) ).
fof(f10189,negated_conjecture,
~ ? [X0,X1,X2,X3,X4,X5,X6] :
( val(X2,bmw_0)
& val(X1,bmw_0)
& subs(X4,n374bernehmen_1_1)
& sub(X2,name_1_1)
& sub(X0,firma_1_1)
& sub(X1,name_1_1)
& attr(X5,X6)
& attr(X3,X2)
& attr(X0,X1) ),
inference(negated_conjecture,[status(cth)],[f10188]) ).
fof(f10190,axiom,
( sort(m__374nchen_0,fe)
& varia(stadt__1_1,varia_c)
& refer(stadt__1_1,refer_c)
& quant(stadt__1_1,one)
& gener(stadt__1_1,ge)
& fact(stadt__1_1,real)
& etype(stadt__1_1,int0)
& card(stadt__1_1,int1)
& sort(stadt__1_1,io)
& sort(stadt__1_1,d)
& varia(c87,varia_c)
& refer(c87,indet)
& quant(c87,one)
& gener(c87,sp)
& fact(c87,real)
& etype(c87,int0)
& card(c87,int1)
& sort(c87,na)
& sort(bmw_0,fe)
& varia(firma_1_1,varia_c)
& refer(firma_1_1,refer_c)
& quant(firma_1_1,one)
& gener(firma_1_1,ge)
& fact(firma_1_1,real)
& etype(firma_1_1,int0)
& card(firma_1_1,int1)
& sort(firma_1_1,io)
& sort(firma_1_1,d)
& varia(c74,varia_c)
& refer(c74,indet)
& quant(c74,one)
& gener(c74,sp)
& fact(c74,real)
& etype(c74,int0)
& card(c74,int1)
& sort(c74,na)
& sort(rover_0,fe)
& sort(britisch__1_1,nq)
& varia(c56,varia_c)
& refer(c56,indet)
& quant(c56,one)
& gener(c56,sp)
& fact(c56,real)
& etype(c56,int0)
& card(c56,int1)
& sort(c56,na)
& varia(annahme_1_1,varia_c)
& refer(annahme_1_1,refer_c)
& quant(annahme_1_1,one)
& gener(annahme_1_1,ge)
& fact(annahme_1_1,real)
& etype(annahme_1_1,int0)
& card(annahme_1_1,int1)
& sort(annahme_1_1,ad)
& varia(c55,con)
& refer(c55,det)
& quant(c55,one)
& gener(c55,sp)
& fact(c55,real)
& etype(c55,int0)
& card(c55,int1)
& sort(c55,io)
& sort(c55,d)
& sort(eu_0,fe)
& varia(name_1_1,varia_c)
& refer(name_1_1,refer_c)
& quant(name_1_1,one)
& gener(name_1_1,ge)
& fact(name_1_1,real)
& etype(name_1_1,int0)
& card(name_1_1,int1)
& sort(name_1_1,na)
& varia(kommission_1_1,varia_c)
& refer(kommission_1_1,refer_c)
& quant(kommission_1_1,quant_c)
& gener(kommission_1_1,ge)
& fact(kommission_1_1,real)
& etype(kommission_1_1,int1)
& card(kommission_1_1,card_c)
& sort(kommission_1_1,io)
& sort(kommission_1_1,d)
& varia(c19,varia_c)
& refer(c19,det)
& quant(c19,one)
& gener(c19,sp)
& fact(c19,real)
& etype(c19,int0)
& card(c19,int1)
& sort(c19,na)
& varia(c86,con)
& refer(c86,det)
& quant(c86,one)
& gener(c86,sp)
& fact(c86,real)
& etype(c86,int0)
& card(c86,int1)
& sort(c86,io)
& sort(c86,d)
& varia(c73,con)
& refer(c73,det)
& quant(c73,one)
& gener(c73,sp)
& fact(c73,real)
& etype(c73,int0)
& card(c73,int1)
& sort(c73,io)
& sort(c73,d)
& varia(c25,con)
& refer(c25,det)
& quant(c25,one)
& gener(c25,sp)
& fact(c25,real)
& etype(c25,int0)
& card(c25,int1)
& sort(c25,ad)
& varia(c18,varia_c)
& refer(c18,det)
& quant(c18,one)
& gener(c18,sp)
& fact(c18,real)
& etype(c18,int1)
& card(c18,int1)
& sort(c18,io)
& sort(c18,d)
& varia(c171,varia_c)
& refer(c171,refer_c)
& quant(c171,quant_c)
& gener(c171,gener_c)
& fact(c171,real)
& etype(c171,etype_c)
& card(c171,card_c)
& sort(c171,ent)
& varia(fabrikant_1_1,varia_c)
& refer(fabrikant_1_1,refer_c)
& quant(fabrikant_1_1,one)
& gener(fabrikant_1_1,ge)
& fact(fabrikant_1_1,real)
& etype(fabrikant_1_1,int0)
& card(fabrikant_1_1,int1)
& sort(fabrikant_1_1,io)
& sort(fabrikant_1_1,d)
& varia(auto__1_1,varia_c)
& refer(auto__1_1,refer_c)
& quant(auto__1_1,one)
& gener(auto__1_1,ge)
& fact(auto__1_1,real)
& etype(auto__1_1,int0)
& card(auto__1_1,int1)
& sort(auto__1_1,d)
& varia(autobauer_1_1,varia_c)
& refer(autobauer_1_1,refer_c)
& quant(autobauer_1_1,one)
& gener(autobauer_1_1,ge)
& fact(autobauer_1_1,real)
& etype(autobauer_1_1,int0)
& card(autobauer_1_1,int1)
& sort(autobauer_1_1,io)
& sort(autobauer_1_1,d)
& val(c87,m__374nchen_0)
& sub(c87,name_1_1)
& sub(c86,stadt__1_1)
& attr(c86,c87)
& val(c74,bmw_0)
& sub(c74,name_1_1)
& sub(c73,firma_1_1)
& attr(c73,c74)
& val(c56,rover_0)
& sub(c56,name_1_1)
& sub(c55,autobauer_1_1)
& prop(c55,britisch__1_1)
& attr(c55,c56)
& subs(c25,annahme_1_1)
& obj(c25,c55)
& val(c19,eu_0)
& sub(c19,name_1_1)
& sub(c18,kommission_1_1)
& attr(c18,c19)
& tupl_p5(c171,c18,c25,c73,c86)
& sub(autobauer_1_1,fabrikant_1_1)
& assoc(autobauer_1_1,auto__1_1) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',ave07_era5_synth_qa07_007_mira_news_1294) ).
fof(f10191,plain,
( sort(m__374nchen_0,fe)
& varia(stadt__1_1,varia_c)
& refer(stadt__1_1,refer_c)
& quant(stadt__1_1,one)
& gener(stadt__1_1,ge)
& fact(stadt__1_1,real)
& etype(stadt__1_1,int0)
& card(stadt__1_1,int1)
& sort(stadt__1_1,io)
& sort(stadt__1_1,d)
& varia(c87,varia_c)
& refer(c87,indet)
& quant(c87,one)
& gener(c87,sp)
& fact(c87,real)
& etype(c87,int0)
& card(c87,int1)
& sort(c87,na)
& sort(bmw_0,fe)
& varia(firma_1_1,varia_c)
& refer(firma_1_1,refer_c)
& quant(firma_1_1,one)
& gener(firma_1_1,ge)
& fact(firma_1_1,real)
& etype(firma_1_1,int0)
& card(firma_1_1,int1)
& sort(firma_1_1,io)
& sort(firma_1_1,d)
& varia(c74,varia_c)
& refer(c74,indet)
& quant(c74,one)
& gener(c74,sp)
& fact(c74,real)
& etype(c74,int0)
& card(c74,int1)
& sort(c74,na)
& sort(rover_0,fe)
& sort(britisch__1_1,nq)
& varia(c56,varia_c)
& refer(c56,indet)
& quant(c56,one)
& gener(c56,sp)
& fact(c56,real)
& etype(c56,int0)
& card(c56,int1)
& sort(c56,na)
& varia(annahme_1_1,varia_c)
& refer(annahme_1_1,refer_c)
& quant(annahme_1_1,one)
& gener(annahme_1_1,ge)
& fact(annahme_1_1,real)
& etype(annahme_1_1,int0)
& card(annahme_1_1,int1)
& sort(annahme_1_1,ad)
& varia(c55,con)
& refer(c55,det)
& quant(c55,one)
& gener(c55,sp)
& fact(c55,real)
& etype(c55,int0)
& card(c55,int1)
& sort(c55,io)
& sort(c55,d)
& sort(eu_0,fe)
& varia(name_1_1,varia_c)
& refer(name_1_1,refer_c)
& quant(name_1_1,one)
& gener(name_1_1,ge)
& fact(name_1_1,real)
& etype(name_1_1,int0)
& card(name_1_1,int1)
& sort(name_1_1,na)
& varia(kommission_1_1,varia_c)
& refer(kommission_1_1,refer_c)
& quant(kommission_1_1,quant_c)
& gener(kommission_1_1,ge)
& fact(kommission_1_1,real)
& etype(kommission_1_1,int1)
& card(kommission_1_1,card_c)
& sort(kommission_1_1,io)
& sort(kommission_1_1,d)
& varia(c19,varia_c)
& refer(c19,det)
& quant(c19,one)
& gener(c19,sp)
& fact(c19,real)
& etype(c19,int0)
& card(c19,int1)
& sort(c19,na)
& varia(c86,con)
& refer(c86,det)
& quant(c86,one)
& gener(c86,sp)
& fact(c86,real)
& etype(c86,int0)
& card(c86,int1)
& sort(c86,io)
& sort(c86,d)
& varia(c73,con)
& refer(c73,det)
& quant(c73,one)
& gener(c73,sp)
& fact(c73,real)
& etype(c73,int0)
& card(c73,int1)
& sort(c73,io)
& sort(c73,d)
& varia(c25,con)
& refer(c25,det)
& quant(c25,one)
& gener(c25,sp)
& fact(c25,real)
& etype(c25,int0)
& card(c25,int1)
& sort(c25,ad)
& varia(c18,varia_c)
& refer(c18,det)
& quant(c18,one)
& gener(c18,sp)
& fact(c18,real)
& etype(c18,int1)
& card(c18,int1)
& sort(c18,io)
& sort(c18,d)
& varia(c171,varia_c)
& refer(c171,refer_c)
& quant(c171,quant_c)
& gener(c171,gener_c)
& fact(c171,real)
& etype(c171,etype_c)
& card(c171,card_c)
& sort(c171,ent)
& varia(fabrikant_1_1,varia_c)
& refer(fabrikant_1_1,refer_c)
& quant(fabrikant_1_1,one)
& gener(fabrikant_1_1,ge)
& fact(fabrikant_1_1,real)
& etype(fabrikant_1_1,int0)
& card(fabrikant_1_1,int1)
& sort(fabrikant_1_1,io)
& sort(fabrikant_1_1,d)
& varia(auto__1_1,varia_c)
& refer(auto__1_1,refer_c)
& quant(auto__1_1,one)
& gener(auto__1_1,ge)
& fact(auto__1_1,real)
& etype(auto__1_1,int0)
& card(auto__1_1,int1)
& sort(auto__1_1,d)
& varia(autobauer_1_1,varia_c)
& refer(autobauer_1_1,refer_c)
& quant(autobauer_1_1,one)
& gener(autobauer_1_1,ge)
& fact(autobauer_1_1,real)
& etype(autobauer_1_1,int0)
& card(autobauer_1_1,int1)
& sort(autobauer_1_1,io)
& sort(autobauer_1_1,d)
& val(c87,m__374nchen_0)
& sub(c87,name_1_1)
& sub(c86,stadt__1_1)
& attr(c86,c87)
& val(c74,bmw_0)
& sub(c74,name_1_1)
& sub(c73,firma_1_1)
& attr(c73,c74)
& val(c56,rover_0)
& sub(c56,name_1_1)
& sub(c55,autobauer_1_1)
& prop(c55,britisch__1_1)
& attr(c55,c56)
& subs(c25,annahme_1_1)
& obj(c25,c55)
& val(c19,eu_0)
& sub(c19,name_1_1)
& sub(c18,kommission_1_1)
& attr(c18,c19)
& sub(autobauer_1_1,fabrikant_1_1)
& assoc(autobauer_1_1,auto__1_1) ),
inference(pure_predicate_removal,[],[f10190]) ).
fof(f10203,plain,
( sort(m__374nchen_0,fe)
& varia(stadt__1_1,varia_c)
& refer(stadt__1_1,refer_c)
& quant(stadt__1_1,one)
& gener(stadt__1_1,ge)
& fact(stadt__1_1,real)
& etype(stadt__1_1,int0)
& card(stadt__1_1,int1)
& sort(stadt__1_1,io)
& sort(stadt__1_1,d)
& varia(c87,varia_c)
& refer(c87,indet)
& quant(c87,one)
& gener(c87,sp)
& fact(c87,real)
& etype(c87,int0)
& card(c87,int1)
& sort(c87,na)
& sort(bmw_0,fe)
& varia(firma_1_1,varia_c)
& refer(firma_1_1,refer_c)
& quant(firma_1_1,one)
& gener(firma_1_1,ge)
& fact(firma_1_1,real)
& etype(firma_1_1,int0)
& card(firma_1_1,int1)
& sort(firma_1_1,io)
& sort(firma_1_1,d)
& varia(c74,varia_c)
& refer(c74,indet)
& quant(c74,one)
& gener(c74,sp)
& fact(c74,real)
& etype(c74,int0)
& card(c74,int1)
& sort(c74,na)
& sort(rover_0,fe)
& sort(britisch__1_1,nq)
& varia(c56,varia_c)
& refer(c56,indet)
& quant(c56,one)
& gener(c56,sp)
& fact(c56,real)
& etype(c56,int0)
& card(c56,int1)
& sort(c56,na)
& varia(annahme_1_1,varia_c)
& refer(annahme_1_1,refer_c)
& quant(annahme_1_1,one)
& gener(annahme_1_1,ge)
& fact(annahme_1_1,real)
& etype(annahme_1_1,int0)
& card(annahme_1_1,int1)
& sort(annahme_1_1,ad)
& varia(c55,con)
& refer(c55,det)
& quant(c55,one)
& gener(c55,sp)
& fact(c55,real)
& etype(c55,int0)
& card(c55,int1)
& sort(c55,io)
& sort(c55,d)
& sort(eu_0,fe)
& varia(name_1_1,varia_c)
& refer(name_1_1,refer_c)
& quant(name_1_1,one)
& gener(name_1_1,ge)
& fact(name_1_1,real)
& etype(name_1_1,int0)
& card(name_1_1,int1)
& sort(name_1_1,na)
& varia(kommission_1_1,varia_c)
& refer(kommission_1_1,refer_c)
& quant(kommission_1_1,quant_c)
& gener(kommission_1_1,ge)
& fact(kommission_1_1,real)
& etype(kommission_1_1,int1)
& card(kommission_1_1,card_c)
& sort(kommission_1_1,io)
& sort(kommission_1_1,d)
& varia(c19,varia_c)
& refer(c19,det)
& quant(c19,one)
& gener(c19,sp)
& fact(c19,real)
& etype(c19,int0)
& card(c19,int1)
& sort(c19,na)
& varia(c86,con)
& refer(c86,det)
& quant(c86,one)
& gener(c86,sp)
& fact(c86,real)
& etype(c86,int0)
& card(c86,int1)
& sort(c86,io)
& sort(c86,d)
& varia(c73,con)
& refer(c73,det)
& quant(c73,one)
& gener(c73,sp)
& fact(c73,real)
& etype(c73,int0)
& card(c73,int1)
& sort(c73,io)
& sort(c73,d)
& varia(c25,con)
& refer(c25,det)
& quant(c25,one)
& gener(c25,sp)
& fact(c25,real)
& etype(c25,int0)
& card(c25,int1)
& sort(c25,ad)
& varia(c18,varia_c)
& refer(c18,det)
& quant(c18,one)
& gener(c18,sp)
& fact(c18,real)
& etype(c18,int1)
& card(c18,int1)
& sort(c18,io)
& sort(c18,d)
& varia(c171,varia_c)
& refer(c171,refer_c)
& quant(c171,quant_c)
& gener(c171,gener_c)
& fact(c171,real)
& etype(c171,etype_c)
& card(c171,card_c)
& sort(c171,ent)
& varia(fabrikant_1_1,varia_c)
& refer(fabrikant_1_1,refer_c)
& quant(fabrikant_1_1,one)
& gener(fabrikant_1_1,ge)
& fact(fabrikant_1_1,real)
& etype(fabrikant_1_1,int0)
& card(fabrikant_1_1,int1)
& sort(fabrikant_1_1,io)
& sort(fabrikant_1_1,d)
& varia(auto__1_1,varia_c)
& refer(auto__1_1,refer_c)
& quant(auto__1_1,one)
& gener(auto__1_1,ge)
& fact(auto__1_1,real)
& etype(auto__1_1,int0)
& card(auto__1_1,int1)
& sort(auto__1_1,d)
& varia(autobauer_1_1,varia_c)
& refer(autobauer_1_1,refer_c)
& quant(autobauer_1_1,one)
& gener(autobauer_1_1,ge)
& fact(autobauer_1_1,real)
& etype(autobauer_1_1,int0)
& card(autobauer_1_1,int1)
& sort(autobauer_1_1,io)
& sort(autobauer_1_1,d)
& val(c87,m__374nchen_0)
& sub(c87,name_1_1)
& sub(c86,stadt__1_1)
& attr(c86,c87)
& val(c74,bmw_0)
& sub(c74,name_1_1)
& sub(c73,firma_1_1)
& attr(c73,c74)
& val(c56,rover_0)
& sub(c56,name_1_1)
& sub(c55,autobauer_1_1)
& attr(c55,c56)
& subs(c25,annahme_1_1)
& obj(c25,c55)
& val(c19,eu_0)
& sub(c19,name_1_1)
& sub(c18,kommission_1_1)
& attr(c18,c19)
& sub(autobauer_1_1,fabrikant_1_1)
& assoc(autobauer_1_1,auto__1_1) ),
inference(pure_predicate_removal,[],[f10191]) ).
fof(f10206,plain,
( sort(m__374nchen_0,fe)
& varia(stadt__1_1,varia_c)
& refer(stadt__1_1,refer_c)
& quant(stadt__1_1,one)
& gener(stadt__1_1,ge)
& fact(stadt__1_1,real)
& etype(stadt__1_1,int0)
& card(stadt__1_1,int1)
& sort(stadt__1_1,io)
& sort(stadt__1_1,d)
& varia(c87,varia_c)
& refer(c87,indet)
& quant(c87,one)
& gener(c87,sp)
& fact(c87,real)
& etype(c87,int0)
& card(c87,int1)
& sort(c87,na)
& sort(bmw_0,fe)
& varia(firma_1_1,varia_c)
& refer(firma_1_1,refer_c)
& quant(firma_1_1,one)
& gener(firma_1_1,ge)
& fact(firma_1_1,real)
& etype(firma_1_1,int0)
& card(firma_1_1,int1)
& sort(firma_1_1,io)
& sort(firma_1_1,d)
& varia(c74,varia_c)
& refer(c74,indet)
& quant(c74,one)
& gener(c74,sp)
& fact(c74,real)
& etype(c74,int0)
& card(c74,int1)
& sort(c74,na)
& sort(rover_0,fe)
& sort(britisch__1_1,nq)
& varia(c56,varia_c)
& refer(c56,indet)
& quant(c56,one)
& gener(c56,sp)
& fact(c56,real)
& etype(c56,int0)
& card(c56,int1)
& sort(c56,na)
& varia(annahme_1_1,varia_c)
& refer(annahme_1_1,refer_c)
& quant(annahme_1_1,one)
& gener(annahme_1_1,ge)
& fact(annahme_1_1,real)
& etype(annahme_1_1,int0)
& card(annahme_1_1,int1)
& sort(annahme_1_1,ad)
& varia(c55,con)
& refer(c55,det)
& quant(c55,one)
& gener(c55,sp)
& fact(c55,real)
& etype(c55,int0)
& card(c55,int1)
& sort(c55,io)
& sort(c55,d)
& sort(eu_0,fe)
& varia(name_1_1,varia_c)
& refer(name_1_1,refer_c)
& quant(name_1_1,one)
& gener(name_1_1,ge)
& fact(name_1_1,real)
& etype(name_1_1,int0)
& card(name_1_1,int1)
& sort(name_1_1,na)
& varia(kommission_1_1,varia_c)
& refer(kommission_1_1,refer_c)
& quant(kommission_1_1,quant_c)
& gener(kommission_1_1,ge)
& fact(kommission_1_1,real)
& etype(kommission_1_1,int1)
& card(kommission_1_1,card_c)
& sort(kommission_1_1,io)
& sort(kommission_1_1,d)
& varia(c19,varia_c)
& refer(c19,det)
& quant(c19,one)
& gener(c19,sp)
& fact(c19,real)
& etype(c19,int0)
& card(c19,int1)
& sort(c19,na)
& varia(c86,con)
& refer(c86,det)
& quant(c86,one)
& gener(c86,sp)
& fact(c86,real)
& etype(c86,int0)
& card(c86,int1)
& sort(c86,io)
& sort(c86,d)
& varia(c73,con)
& refer(c73,det)
& quant(c73,one)
& gener(c73,sp)
& fact(c73,real)
& etype(c73,int0)
& card(c73,int1)
& sort(c73,io)
& sort(c73,d)
& varia(c25,con)
& refer(c25,det)
& quant(c25,one)
& gener(c25,sp)
& fact(c25,real)
& etype(c25,int0)
& card(c25,int1)
& sort(c25,ad)
& varia(c18,varia_c)
& refer(c18,det)
& quant(c18,one)
& gener(c18,sp)
& fact(c18,real)
& etype(c18,int1)
& card(c18,int1)
& sort(c18,io)
& sort(c18,d)
& varia(c171,varia_c)
& refer(c171,refer_c)
& quant(c171,quant_c)
& gener(c171,gener_c)
& fact(c171,real)
& etype(c171,etype_c)
& card(c171,card_c)
& sort(c171,ent)
& varia(fabrikant_1_1,varia_c)
& refer(fabrikant_1_1,refer_c)
& quant(fabrikant_1_1,one)
& gener(fabrikant_1_1,ge)
& fact(fabrikant_1_1,real)
& etype(fabrikant_1_1,int0)
& card(fabrikant_1_1,int1)
& sort(fabrikant_1_1,io)
& sort(fabrikant_1_1,d)
& varia(auto__1_1,varia_c)
& refer(auto__1_1,refer_c)
& quant(auto__1_1,one)
& gener(auto__1_1,ge)
& fact(auto__1_1,real)
& etype(auto__1_1,int0)
& card(auto__1_1,int1)
& sort(auto__1_1,d)
& varia(autobauer_1_1,varia_c)
& refer(autobauer_1_1,refer_c)
& quant(autobauer_1_1,one)
& gener(autobauer_1_1,ge)
& fact(autobauer_1_1,real)
& etype(autobauer_1_1,int0)
& card(autobauer_1_1,int1)
& sort(autobauer_1_1,io)
& sort(autobauer_1_1,d)
& val(c87,m__374nchen_0)
& sub(c87,name_1_1)
& sub(c86,stadt__1_1)
& attr(c86,c87)
& val(c74,bmw_0)
& sub(c74,name_1_1)
& sub(c73,firma_1_1)
& attr(c73,c74)
& val(c56,rover_0)
& sub(c56,name_1_1)
& sub(c55,autobauer_1_1)
& attr(c55,c56)
& subs(c25,annahme_1_1)
& obj(c25,c55)
& val(c19,eu_0)
& sub(c19,name_1_1)
& sub(c18,kommission_1_1)
& attr(c18,c19)
& sub(autobauer_1_1,fabrikant_1_1) ),
inference(pure_predicate_removal,[],[f10203]) ).
fof(f10227,plain,
( varia(stadt__1_1,varia_c)
& refer(stadt__1_1,refer_c)
& quant(stadt__1_1,one)
& gener(stadt__1_1,ge)
& fact(stadt__1_1,real)
& etype(stadt__1_1,int0)
& card(stadt__1_1,int1)
& varia(c87,varia_c)
& refer(c87,indet)
& quant(c87,one)
& gener(c87,sp)
& fact(c87,real)
& etype(c87,int0)
& card(c87,int1)
& varia(firma_1_1,varia_c)
& refer(firma_1_1,refer_c)
& quant(firma_1_1,one)
& gener(firma_1_1,ge)
& fact(firma_1_1,real)
& etype(firma_1_1,int0)
& card(firma_1_1,int1)
& varia(c74,varia_c)
& refer(c74,indet)
& quant(c74,one)
& gener(c74,sp)
& fact(c74,real)
& etype(c74,int0)
& card(c74,int1)
& varia(c56,varia_c)
& refer(c56,indet)
& quant(c56,one)
& gener(c56,sp)
& fact(c56,real)
& etype(c56,int0)
& card(c56,int1)
& varia(annahme_1_1,varia_c)
& refer(annahme_1_1,refer_c)
& quant(annahme_1_1,one)
& gener(annahme_1_1,ge)
& fact(annahme_1_1,real)
& etype(annahme_1_1,int0)
& card(annahme_1_1,int1)
& varia(c55,con)
& refer(c55,det)
& quant(c55,one)
& gener(c55,sp)
& fact(c55,real)
& etype(c55,int0)
& card(c55,int1)
& varia(name_1_1,varia_c)
& refer(name_1_1,refer_c)
& quant(name_1_1,one)
& gener(name_1_1,ge)
& fact(name_1_1,real)
& etype(name_1_1,int0)
& card(name_1_1,int1)
& varia(kommission_1_1,varia_c)
& refer(kommission_1_1,refer_c)
& quant(kommission_1_1,quant_c)
& gener(kommission_1_1,ge)
& fact(kommission_1_1,real)
& etype(kommission_1_1,int1)
& card(kommission_1_1,card_c)
& varia(c19,varia_c)
& refer(c19,det)
& quant(c19,one)
& gener(c19,sp)
& fact(c19,real)
& etype(c19,int0)
& card(c19,int1)
& varia(c86,con)
& refer(c86,det)
& quant(c86,one)
& gener(c86,sp)
& fact(c86,real)
& etype(c86,int0)
& card(c86,int1)
& varia(c73,con)
& refer(c73,det)
& quant(c73,one)
& gener(c73,sp)
& fact(c73,real)
& etype(c73,int0)
& card(c73,int1)
& varia(c25,con)
& refer(c25,det)
& quant(c25,one)
& gener(c25,sp)
& fact(c25,real)
& etype(c25,int0)
& card(c25,int1)
& varia(c18,varia_c)
& refer(c18,det)
& quant(c18,one)
& gener(c18,sp)
& fact(c18,real)
& etype(c18,int1)
& card(c18,int1)
& varia(c171,varia_c)
& refer(c171,refer_c)
& quant(c171,quant_c)
& gener(c171,gener_c)
& fact(c171,real)
& etype(c171,etype_c)
& card(c171,card_c)
& varia(fabrikant_1_1,varia_c)
& refer(fabrikant_1_1,refer_c)
& quant(fabrikant_1_1,one)
& gener(fabrikant_1_1,ge)
& fact(fabrikant_1_1,real)
& etype(fabrikant_1_1,int0)
& card(fabrikant_1_1,int1)
& varia(auto__1_1,varia_c)
& refer(auto__1_1,refer_c)
& quant(auto__1_1,one)
& gener(auto__1_1,ge)
& fact(auto__1_1,real)
& etype(auto__1_1,int0)
& card(auto__1_1,int1)
& varia(autobauer_1_1,varia_c)
& refer(autobauer_1_1,refer_c)
& quant(autobauer_1_1,one)
& gener(autobauer_1_1,ge)
& fact(autobauer_1_1,real)
& etype(autobauer_1_1,int0)
& card(autobauer_1_1,int1)
& val(c87,m__374nchen_0)
& sub(c87,name_1_1)
& sub(c86,stadt__1_1)
& attr(c86,c87)
& val(c74,bmw_0)
& sub(c74,name_1_1)
& sub(c73,firma_1_1)
& attr(c73,c74)
& val(c56,rover_0)
& sub(c56,name_1_1)
& sub(c55,autobauer_1_1)
& attr(c55,c56)
& subs(c25,annahme_1_1)
& obj(c25,c55)
& val(c19,eu_0)
& sub(c19,name_1_1)
& sub(c18,kommission_1_1)
& attr(c18,c19)
& sub(autobauer_1_1,fabrikant_1_1) ),
inference(pure_predicate_removal,[],[f10206]) ).
fof(f10230,plain,
( varia(stadt__1_1,varia_c)
& refer(stadt__1_1,refer_c)
& gener(stadt__1_1,ge)
& fact(stadt__1_1,real)
& etype(stadt__1_1,int0)
& card(stadt__1_1,int1)
& varia(c87,varia_c)
& refer(c87,indet)
& gener(c87,sp)
& fact(c87,real)
& etype(c87,int0)
& card(c87,int1)
& varia(firma_1_1,varia_c)
& refer(firma_1_1,refer_c)
& gener(firma_1_1,ge)
& fact(firma_1_1,real)
& etype(firma_1_1,int0)
& card(firma_1_1,int1)
& varia(c74,varia_c)
& refer(c74,indet)
& gener(c74,sp)
& fact(c74,real)
& etype(c74,int0)
& card(c74,int1)
& varia(c56,varia_c)
& refer(c56,indet)
& gener(c56,sp)
& fact(c56,real)
& etype(c56,int0)
& card(c56,int1)
& varia(annahme_1_1,varia_c)
& refer(annahme_1_1,refer_c)
& gener(annahme_1_1,ge)
& fact(annahme_1_1,real)
& etype(annahme_1_1,int0)
& card(annahme_1_1,int1)
& varia(c55,con)
& refer(c55,det)
& gener(c55,sp)
& fact(c55,real)
& etype(c55,int0)
& card(c55,int1)
& varia(name_1_1,varia_c)
& refer(name_1_1,refer_c)
& gener(name_1_1,ge)
& fact(name_1_1,real)
& etype(name_1_1,int0)
& card(name_1_1,int1)
& varia(kommission_1_1,varia_c)
& refer(kommission_1_1,refer_c)
& gener(kommission_1_1,ge)
& fact(kommission_1_1,real)
& etype(kommission_1_1,int1)
& card(kommission_1_1,card_c)
& varia(c19,varia_c)
& refer(c19,det)
& gener(c19,sp)
& fact(c19,real)
& etype(c19,int0)
& card(c19,int1)
& varia(c86,con)
& refer(c86,det)
& gener(c86,sp)
& fact(c86,real)
& etype(c86,int0)
& card(c86,int1)
& varia(c73,con)
& refer(c73,det)
& gener(c73,sp)
& fact(c73,real)
& etype(c73,int0)
& card(c73,int1)
& varia(c25,con)
& refer(c25,det)
& gener(c25,sp)
& fact(c25,real)
& etype(c25,int0)
& card(c25,int1)
& varia(c18,varia_c)
& refer(c18,det)
& gener(c18,sp)
& fact(c18,real)
& etype(c18,int1)
& card(c18,int1)
& varia(c171,varia_c)
& refer(c171,refer_c)
& gener(c171,gener_c)
& fact(c171,real)
& etype(c171,etype_c)
& card(c171,card_c)
& varia(fabrikant_1_1,varia_c)
& refer(fabrikant_1_1,refer_c)
& gener(fabrikant_1_1,ge)
& fact(fabrikant_1_1,real)
& etype(fabrikant_1_1,int0)
& card(fabrikant_1_1,int1)
& varia(auto__1_1,varia_c)
& refer(auto__1_1,refer_c)
& gener(auto__1_1,ge)
& fact(auto__1_1,real)
& etype(auto__1_1,int0)
& card(auto__1_1,int1)
& varia(autobauer_1_1,varia_c)
& refer(autobauer_1_1,refer_c)
& gener(autobauer_1_1,ge)
& fact(autobauer_1_1,real)
& etype(autobauer_1_1,int0)
& card(autobauer_1_1,int1)
& val(c87,m__374nchen_0)
& sub(c87,name_1_1)
& sub(c86,stadt__1_1)
& attr(c86,c87)
& val(c74,bmw_0)
& sub(c74,name_1_1)
& sub(c73,firma_1_1)
& attr(c73,c74)
& val(c56,rover_0)
& sub(c56,name_1_1)
& sub(c55,autobauer_1_1)
& attr(c55,c56)
& subs(c25,annahme_1_1)
& obj(c25,c55)
& val(c19,eu_0)
& sub(c19,name_1_1)
& sub(c18,kommission_1_1)
& attr(c18,c19)
& sub(autobauer_1_1,fabrikant_1_1) ),
inference(pure_predicate_removal,[],[f10227]) ).
fof(f10233,plain,
( varia(stadt__1_1,varia_c)
& refer(stadt__1_1,refer_c)
& gener(stadt__1_1,ge)
& fact(stadt__1_1,real)
& etype(stadt__1_1,int0)
& varia(c87,varia_c)
& refer(c87,indet)
& gener(c87,sp)
& fact(c87,real)
& etype(c87,int0)
& varia(firma_1_1,varia_c)
& refer(firma_1_1,refer_c)
& gener(firma_1_1,ge)
& fact(firma_1_1,real)
& etype(firma_1_1,int0)
& varia(c74,varia_c)
& refer(c74,indet)
& gener(c74,sp)
& fact(c74,real)
& etype(c74,int0)
& varia(c56,varia_c)
& refer(c56,indet)
& gener(c56,sp)
& fact(c56,real)
& etype(c56,int0)
& varia(annahme_1_1,varia_c)
& refer(annahme_1_1,refer_c)
& gener(annahme_1_1,ge)
& fact(annahme_1_1,real)
& etype(annahme_1_1,int0)
& varia(c55,con)
& refer(c55,det)
& gener(c55,sp)
& fact(c55,real)
& etype(c55,int0)
& varia(name_1_1,varia_c)
& refer(name_1_1,refer_c)
& gener(name_1_1,ge)
& fact(name_1_1,real)
& etype(name_1_1,int0)
& varia(kommission_1_1,varia_c)
& refer(kommission_1_1,refer_c)
& gener(kommission_1_1,ge)
& fact(kommission_1_1,real)
& etype(kommission_1_1,int1)
& varia(c19,varia_c)
& refer(c19,det)
& gener(c19,sp)
& fact(c19,real)
& etype(c19,int0)
& varia(c86,con)
& refer(c86,det)
& gener(c86,sp)
& fact(c86,real)
& etype(c86,int0)
& varia(c73,con)
& refer(c73,det)
& gener(c73,sp)
& fact(c73,real)
& etype(c73,int0)
& varia(c25,con)
& refer(c25,det)
& gener(c25,sp)
& fact(c25,real)
& etype(c25,int0)
& varia(c18,varia_c)
& refer(c18,det)
& gener(c18,sp)
& fact(c18,real)
& etype(c18,int1)
& varia(c171,varia_c)
& refer(c171,refer_c)
& gener(c171,gener_c)
& fact(c171,real)
& etype(c171,etype_c)
& varia(fabrikant_1_1,varia_c)
& refer(fabrikant_1_1,refer_c)
& gener(fabrikant_1_1,ge)
& fact(fabrikant_1_1,real)
& etype(fabrikant_1_1,int0)
& varia(auto__1_1,varia_c)
& refer(auto__1_1,refer_c)
& gener(auto__1_1,ge)
& fact(auto__1_1,real)
& etype(auto__1_1,int0)
& varia(autobauer_1_1,varia_c)
& refer(autobauer_1_1,refer_c)
& gener(autobauer_1_1,ge)
& fact(autobauer_1_1,real)
& etype(autobauer_1_1,int0)
& val(c87,m__374nchen_0)
& sub(c87,name_1_1)
& sub(c86,stadt__1_1)
& attr(c86,c87)
& val(c74,bmw_0)
& sub(c74,name_1_1)
& sub(c73,firma_1_1)
& attr(c73,c74)
& val(c56,rover_0)
& sub(c56,name_1_1)
& sub(c55,autobauer_1_1)
& attr(c55,c56)
& subs(c25,annahme_1_1)
& obj(c25,c55)
& val(c19,eu_0)
& sub(c19,name_1_1)
& sub(c18,kommission_1_1)
& attr(c18,c19)
& sub(autobauer_1_1,fabrikant_1_1) ),
inference(pure_predicate_removal,[],[f10230]) ).
fof(f10236,plain,
( varia(stadt__1_1,varia_c)
& gener(stadt__1_1,ge)
& fact(stadt__1_1,real)
& etype(stadt__1_1,int0)
& varia(c87,varia_c)
& gener(c87,sp)
& fact(c87,real)
& etype(c87,int0)
& varia(firma_1_1,varia_c)
& gener(firma_1_1,ge)
& fact(firma_1_1,real)
& etype(firma_1_1,int0)
& varia(c74,varia_c)
& gener(c74,sp)
& fact(c74,real)
& etype(c74,int0)
& varia(c56,varia_c)
& gener(c56,sp)
& fact(c56,real)
& etype(c56,int0)
& varia(annahme_1_1,varia_c)
& gener(annahme_1_1,ge)
& fact(annahme_1_1,real)
& etype(annahme_1_1,int0)
& varia(c55,con)
& gener(c55,sp)
& fact(c55,real)
& etype(c55,int0)
& varia(name_1_1,varia_c)
& gener(name_1_1,ge)
& fact(name_1_1,real)
& etype(name_1_1,int0)
& varia(kommission_1_1,varia_c)
& gener(kommission_1_1,ge)
& fact(kommission_1_1,real)
& etype(kommission_1_1,int1)
& varia(c19,varia_c)
& gener(c19,sp)
& fact(c19,real)
& etype(c19,int0)
& varia(c86,con)
& gener(c86,sp)
& fact(c86,real)
& etype(c86,int0)
& varia(c73,con)
& gener(c73,sp)
& fact(c73,real)
& etype(c73,int0)
& varia(c25,con)
& gener(c25,sp)
& fact(c25,real)
& etype(c25,int0)
& varia(c18,varia_c)
& gener(c18,sp)
& fact(c18,real)
& etype(c18,int1)
& varia(c171,varia_c)
& gener(c171,gener_c)
& fact(c171,real)
& etype(c171,etype_c)
& varia(fabrikant_1_1,varia_c)
& gener(fabrikant_1_1,ge)
& fact(fabrikant_1_1,real)
& etype(fabrikant_1_1,int0)
& varia(auto__1_1,varia_c)
& gener(auto__1_1,ge)
& fact(auto__1_1,real)
& etype(auto__1_1,int0)
& varia(autobauer_1_1,varia_c)
& gener(autobauer_1_1,ge)
& fact(autobauer_1_1,real)
& etype(autobauer_1_1,int0)
& val(c87,m__374nchen_0)
& sub(c87,name_1_1)
& sub(c86,stadt__1_1)
& attr(c86,c87)
& val(c74,bmw_0)
& sub(c74,name_1_1)
& sub(c73,firma_1_1)
& attr(c73,c74)
& val(c56,rover_0)
& sub(c56,name_1_1)
& sub(c55,autobauer_1_1)
& attr(c55,c56)
& subs(c25,annahme_1_1)
& obj(c25,c55)
& val(c19,eu_0)
& sub(c19,name_1_1)
& sub(c18,kommission_1_1)
& attr(c18,c19)
& sub(autobauer_1_1,fabrikant_1_1) ),
inference(pure_predicate_removal,[],[f10233]) ).
fof(f10241,plain,
( varia(stadt__1_1,varia_c)
& gener(stadt__1_1,ge)
& etype(stadt__1_1,int0)
& varia(c87,varia_c)
& gener(c87,sp)
& etype(c87,int0)
& varia(firma_1_1,varia_c)
& gener(firma_1_1,ge)
& etype(firma_1_1,int0)
& varia(c74,varia_c)
& gener(c74,sp)
& etype(c74,int0)
& varia(c56,varia_c)
& gener(c56,sp)
& etype(c56,int0)
& varia(annahme_1_1,varia_c)
& gener(annahme_1_1,ge)
& etype(annahme_1_1,int0)
& varia(c55,con)
& gener(c55,sp)
& etype(c55,int0)
& varia(name_1_1,varia_c)
& gener(name_1_1,ge)
& etype(name_1_1,int0)
& varia(kommission_1_1,varia_c)
& gener(kommission_1_1,ge)
& etype(kommission_1_1,int1)
& varia(c19,varia_c)
& gener(c19,sp)
& etype(c19,int0)
& varia(c86,con)
& gener(c86,sp)
& etype(c86,int0)
& varia(c73,con)
& gener(c73,sp)
& etype(c73,int0)
& varia(c25,con)
& gener(c25,sp)
& etype(c25,int0)
& varia(c18,varia_c)
& gener(c18,sp)
& etype(c18,int1)
& varia(c171,varia_c)
& gener(c171,gener_c)
& etype(c171,etype_c)
& varia(fabrikant_1_1,varia_c)
& gener(fabrikant_1_1,ge)
& etype(fabrikant_1_1,int0)
& varia(auto__1_1,varia_c)
& gener(auto__1_1,ge)
& etype(auto__1_1,int0)
& varia(autobauer_1_1,varia_c)
& gener(autobauer_1_1,ge)
& etype(autobauer_1_1,int0)
& val(c87,m__374nchen_0)
& sub(c87,name_1_1)
& sub(c86,stadt__1_1)
& attr(c86,c87)
& val(c74,bmw_0)
& sub(c74,name_1_1)
& sub(c73,firma_1_1)
& attr(c73,c74)
& val(c56,rover_0)
& sub(c56,name_1_1)
& sub(c55,autobauer_1_1)
& attr(c55,c56)
& subs(c25,annahme_1_1)
& obj(c25,c55)
& val(c19,eu_0)
& sub(c19,name_1_1)
& sub(c18,kommission_1_1)
& attr(c18,c19)
& sub(autobauer_1_1,fabrikant_1_1) ),
inference(pure_predicate_removal,[],[f10236]) ).
fof(f10245,plain,
( gener(stadt__1_1,ge)
& etype(stadt__1_1,int0)
& gener(c87,sp)
& etype(c87,int0)
& gener(firma_1_1,ge)
& etype(firma_1_1,int0)
& gener(c74,sp)
& etype(c74,int0)
& gener(c56,sp)
& etype(c56,int0)
& gener(annahme_1_1,ge)
& etype(annahme_1_1,int0)
& gener(c55,sp)
& etype(c55,int0)
& gener(name_1_1,ge)
& etype(name_1_1,int0)
& gener(kommission_1_1,ge)
& etype(kommission_1_1,int1)
& gener(c19,sp)
& etype(c19,int0)
& gener(c86,sp)
& etype(c86,int0)
& gener(c73,sp)
& etype(c73,int0)
& gener(c25,sp)
& etype(c25,int0)
& gener(c18,sp)
& etype(c18,int1)
& gener(c171,gener_c)
& etype(c171,etype_c)
& gener(fabrikant_1_1,ge)
& etype(fabrikant_1_1,int0)
& gener(auto__1_1,ge)
& etype(auto__1_1,int0)
& gener(autobauer_1_1,ge)
& etype(autobauer_1_1,int0)
& val(c87,m__374nchen_0)
& sub(c87,name_1_1)
& sub(c86,stadt__1_1)
& attr(c86,c87)
& val(c74,bmw_0)
& sub(c74,name_1_1)
& sub(c73,firma_1_1)
& attr(c73,c74)
& val(c56,rover_0)
& sub(c56,name_1_1)
& sub(c55,autobauer_1_1)
& attr(c55,c56)
& subs(c25,annahme_1_1)
& obj(c25,c55)
& val(c19,eu_0)
& sub(c19,name_1_1)
& sub(c18,kommission_1_1)
& attr(c18,c19)
& sub(autobauer_1_1,fabrikant_1_1) ),
inference(pure_predicate_removal,[],[f10241]) ).
fof(f10249,plain,
( etype(stadt__1_1,int0)
& etype(c87,int0)
& etype(firma_1_1,int0)
& etype(c74,int0)
& etype(c56,int0)
& etype(annahme_1_1,int0)
& etype(c55,int0)
& etype(name_1_1,int0)
& etype(kommission_1_1,int1)
& etype(c19,int0)
& etype(c86,int0)
& etype(c73,int0)
& etype(c25,int0)
& etype(c18,int1)
& etype(c171,etype_c)
& etype(fabrikant_1_1,int0)
& etype(auto__1_1,int0)
& etype(autobauer_1_1,int0)
& val(c87,m__374nchen_0)
& sub(c87,name_1_1)
& sub(c86,stadt__1_1)
& attr(c86,c87)
& val(c74,bmw_0)
& sub(c74,name_1_1)
& sub(c73,firma_1_1)
& attr(c73,c74)
& val(c56,rover_0)
& sub(c56,name_1_1)
& sub(c55,autobauer_1_1)
& attr(c55,c56)
& subs(c25,annahme_1_1)
& obj(c25,c55)
& val(c19,eu_0)
& sub(c19,name_1_1)
& sub(c18,kommission_1_1)
& attr(c18,c19)
& sub(autobauer_1_1,fabrikant_1_1) ),
inference(pure_predicate_removal,[],[f10245]) ).
fof(f10252,plain,
! [X0,X1,X2,X3,X4,X5,X6] :
( ~ val(X2,bmw_0)
| ~ val(X1,bmw_0)
| ~ subs(X4,n374bernehmen_1_1)
| ~ sub(X2,name_1_1)
| ~ sub(X0,firma_1_1)
| ~ sub(X1,name_1_1)
| ~ attr(X5,X6)
| ~ attr(X3,X2)
| ~ attr(X0,X1) ),
inference(ennf_transformation,[],[f10189]) ).
fof(f10255,plain,
! [X0,X1,X2] :
( ~ subs(X0,X1)
| ~ chea(X2,X1)
| ? [X3] :
( subs(X3,X2)
& chea(X3,X0) ) ),
inference(ennf_transformation,[],[f97]) ).
fof(f10256,plain,
! [X0,X1,X2] :
( ~ subs(X0,X1)
| ~ chea(X2,X1)
| ? [X3] :
( subs(X3,X2)
& chea(X3,X0) ) ),
inference(flattening,[],[f10255]) ).
fof(f10283,plain,
! [X0,X1,X2] :
( ~ subs(X0,X1)
| ~ chea(X2,X1)
| ( subs(sK0(X0,X2),X2)
& chea(sK0(X0,X2),X0) ) ),
inference(skolemize,[status(esa),new_symbols(skolem,[sK0]),skolemize(X3,sK0(X0,X2))],[f10256]) ).
fof(f10285,plain,
! [X2,X3,X0,X1,X6,X4,X5] :
( ~ val(X2,bmw_0)
| ~ val(X1,bmw_0)
| ~ subs(X4,n374bernehmen_1_1)
| ~ sub(X2,name_1_1)
| ~ sub(X0,firma_1_1)
| ~ sub(X1,name_1_1)
| ~ attr(X5,X6)
| ~ attr(X3,X2)
| ~ attr(X0,X1) ),
inference(cnf_transformation,[],[f10252]) ).
fof(f10308,plain,
val(c74,bmw_0),
inference(cnf_transformation,[],[f10249]) ).
fof(f10309,plain,
sub(c74,name_1_1),
inference(cnf_transformation,[],[f10249]) ).
fof(f10310,plain,
sub(c73,firma_1_1),
inference(cnf_transformation,[],[f10249]) ).
fof(f10311,plain,
attr(c73,c74),
inference(cnf_transformation,[],[f10249]) ).
fof(f10316,plain,
subs(c25,annahme_1_1),
inference(cnf_transformation,[],[f10249]) ).
fof(f10321,plain,
attr(c18,c19),
inference(cnf_transformation,[],[f10249]) ).
fof(f10324,plain,
! [X2,X0,X1] :
( ~ subs(X0,X1)
| ~ chea(X2,X1)
| subs(sK0(X0,X2),X2) ),
inference(cnf_transformation,[],[f10283]) ).
fof(f10329,plain,
chea(n374bernehmen_1_1,annahme_1_1),
inference(cnf_transformation,[],[f8535]) ).
tcf(c_49,negated_conjecture,
! [X0: $i,X1: $i,X2: $i,X3: $i,X4: $i,X5: $i,X6: $i] :
( ~ val(X3,bmw_0)
| ~ val(X1,bmw_0)
| ~ subs(X6,n374bernehmen_1_1)
| ~ sub(X3,name_1_1)
| ~ sub(X1,name_1_1)
| ~ sub(X0,firma_1_1)
| ~ attr(X4,X5)
| ~ attr(X2,X3)
| ~ attr(X0,X1) ),
inference(cnf_transformation,[],[f10285]) ).
tcf(c_51,plain,
attr(c18,c19),
inference(cnf_transformation,[],[f10321]) ).
tcf(c_56,plain,
subs(c25,annahme_1_1),
inference(cnf_transformation,[],[f10316]) ).
tcf(c_61,plain,
attr(c73,c74),
inference(cnf_transformation,[],[f10311]) ).
tcf(c_62,plain,
sub(c73,firma_1_1),
inference(cnf_transformation,[],[f10310]) ).
tcf(c_63,plain,
sub(c74,name_1_1),
inference(cnf_transformation,[],[f10309]) ).
tcf(c_64,plain,
val(c74,bmw_0),
inference(cnf_transformation,[],[f10308]) ).
tcf(c_89,plain,
! [X0: $i,X1: $i,X2: $i] :
( subs(sK0(X0,X2),X2)
| ~ chea(X2,X1)
| ~ subs(X0,X1) ),
inference(cnf_transformation,[],[f10324]) ).
tcf(c_93,plain,
chea(n374bernehmen_1_1,annahme_1_1),
inference(cnf_transformation,[],[f10329]) ).
tcf(c_1727,negated_conjecture,
! [X0: $i] :
( ~ iPr_def_10
| ~ subs(X0,n374bernehmen_1_1) ),
inference(splitting,[splitting(split),new_symbols(definition,[iPr_def_10])],[c_49]) ).
tcf(c_1728,negated_conjecture,
! [X0: $i,X1: $i] :
( ~ iPr_def_11
| ~ attr(X0,X1) ),
inference(splitting,[splitting(split),new_symbols(definition,[iPr_def_11])],[c_49]) ).
tcf(c_1729,negated_conjecture,
! [X0: $i,X1: $i] :
( ~ iPr_def_12
| ~ attr(X1,X0)
| ~ sub(X0,name_1_1)
| ~ val(X0,bmw_0) ),
inference(splitting,[splitting(split),new_symbols(definition,[iPr_def_12])],[c_49]) ).
tcf(c_1730,negated_conjecture,
! [X0: $i,X1: $i] :
( ~ iPr_def_13
| ~ attr(X1,X0)
| ~ sub(X0,name_1_1)
| ~ sub(X1,firma_1_1)
| ~ val(X0,bmw_0) ),
inference(splitting,[splitting(split),new_symbols(definition,[iPr_def_13])],[c_49]) ).
tcf(c_1731,negated_conjecture,
( iPr_def_13
| iPr_def_12
| iPr_def_11
| iPr_def_10 ),
inference(splitting,[splitting(split),new_symbols(definition,[])],[c_49]) ).
tcf(c_1768,plain,
! [X0: $i] :
( subs(sK0(c25,X0),X0)
| ~ subs(c25,annahme_1_1)
| ~ chea(X0,annahme_1_1) ),
inference(instantiation,[status(thm)],[c_89]) ).
tcf(c_1819,plain,
( subs(sK0(c25,n374bernehmen_1_1),n374bernehmen_1_1)
| ~ chea(n374bernehmen_1_1,annahme_1_1)
| ~ subs(c25,annahme_1_1) ),
inference(instantiation,[status(thm)],[c_1768]) ).
tcf(c_1831,plain,
( ~ iPr_def_10
| ~ subs(sK0(c25,n374bernehmen_1_1),n374bernehmen_1_1) ),
inference(instantiation,[status(thm)],[c_1727]) ).
tcf(c_1853,plain,
( ~ iPr_def_11
| ~ attr(c18,c19) ),
inference(instantiation,[status(thm)],[c_1728]) ).
tcf(c_1859,plain,
! [X0: $i] :
( ~ iPr_def_12
| ~ val(c74,bmw_0)
| ~ sub(c74,name_1_1)
| ~ attr(X0,c74) ),
inference(instantiation,[status(thm)],[c_1729]) ).
tcf(c_1871,plain,
( ~ iPr_def_12
| ~ val(c74,bmw_0)
| ~ sub(c74,name_1_1)
| ~ attr(c73,c74) ),
inference(instantiation,[status(thm)],[c_1859]) ).
tcf(c_1905,plain,
! [X0: $i] :
( ~ iPr_def_13
| ~ val(c74,bmw_0)
| ~ sub(c74,name_1_1)
| ~ sub(X0,firma_1_1)
| ~ attr(X0,c74) ),
inference(instantiation,[status(thm)],[c_1730]) ).
tcf(c_1952,plain,
( ~ iPr_def_13
| ~ val(c74,bmw_0)
| ~ sub(c74,name_1_1)
| ~ sub(c73,firma_1_1)
| ~ attr(c73,c74) ),
inference(instantiation,[status(thm)],[c_1905]) ).
tcf(c_1953,plain,
$false,
inference(prop_impl_just,[status(thm)],[c_1952,c_1871,c_1853,c_1831,c_1819,c_1731,c_51,c_56,c_61,c_62,c_63,c_64,c_93]) ).
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.02 % Problem : CSR115+49 : TPTP v9.3.1. Released v4.0.0.
% 0.00/0.04 % Command : run_iprover 300 /export/starexec/sandbox2/benchmark/theBenchmark.p THM
% 0.09/0.37 % Computer : n017.cluster.edu
% 0.09/0.37 % Model : x86_64 x86_64
% 0.09/0.37 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.09/0.37 % Memory : 8046.5625MB
% 0.09/0.37 % OS : Linux 6.8.0-71-generic
% 0.09/0.37 % CPULimit : 300
% 0.09/0.37 % WCLimit : 300
% 0.09/0.37 % DateTime : Fri Sep 25 09:28:03 UTC 2026
% 0.09/0.38 % CPUTime :
% 0.09/0.38 Running run_iprover 300 /export/starexec/sandbox2/benchmark/theBenchmark.p THM
% 0.09/0.41 Running first-order theorem proving
% 0.09/0.41 Running: /export/starexec/sandbox2/solver/bin/iproveropt-multi-core.sh -d -n -l tptp -s fof_schedule -t 300 /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.09/0.42
% 0.09/0.42 % ======== iProver multi-core TPTP/SMT =========
% 0.09/0.42
% 0.09/0.42 % Detected problem language: tptp
% 0.09/0.44 % Proving...
% 4.98/1.62 % SZS status Started for theBenchmark.p
% 4.98/1.62 ERROR - "ProverProcess:heur/409474:1.0" ran with exit code 2 and error: iprover.ml: Unexpected exception: Failure("Clausification error: res/vclausify_rel exits with an error status: 1")
% 4.98/1.62 Fatal error: exception Failure("Clausification error: res/vclausify_rel exits with an error status: 1")
% 4.98/1.62 ERROR - cmd was: ulimit -v 4023281; ./res/iproveropt --abstr_ref "[]" --abstr_ref_under "[]" --comb_inst_mult 3 --comb_mode clause_based --comb_res_mult 4 --comb_sup_deep_mult 2 --comb_sup_mult 0 --conj_cone_tolerance 3. --demod_completeness_check fast --demod_use_ground true --eq_ax_congr_red true --extra_neg_conj none --inst_activity_threshold 500 --inst_dismatching true --inst_eager_unprocessed_to_passive true --inst_eq_res_simp false --inst_learning_factor 2 --inst_learning_loop_flag true --inst_learning_start 3000 --inst_lit_activity_flag true --inst_lit_sel "[+prop;+sign;+ground;-num_var;-num_symb]" --inst_lit_sel_side num_symb --inst_orphan_elimination true --inst_passive_queue_type priority_queues --inst_passive_queues "[[-conj_dist;+conj_symb;-num_var];[+age;-num_symb]]" --inst_passive_queues_freq "[25;2]" --inst_prop_sim_given true --inst_prop_sim_new false --inst_restr_to_given false --inst_sel_renew solver --inst_solver_calls_frac 1. --inst_solver_per_active 1400 --inst_sos_flag false --inst_start_prop_sim_after_learn 3 --inst_subs_given false --inst_subs_new false --instantiation_flag true --out_options none --pred_elim true --prep_def_merge true --prep_def_merge_mbd true --prep_def_merge_prop_impl false --prep_def_merge_tr_cl false --prep_def_merge_tr_red false --prep_gs_sim true --prep_res_sim true --prep_sem_filter exhaustive --prep_sup_sim_all true --prep_sup_sim_sup false --prep_unflatten true --prep_upred true --preprocessing_flag true --prolific_symb_bound 256 --prop_solver_per_cl 1024 --pure_diseq_elim true --res_backward_subs full --res_backward_subs_resolution false --res_forward_subs subset_subsumption --res_forward_subs_resolution true --res_lit_sel pos_max --res_lit_sel_side num_var --res_ordering kbo_pred --res_passive_queue_type priority_queues --res_passive_queues "[[-num_lits];[-conj_symb;-num_symb;+num_symb]]" --res_passive_queues_freq "[15;3]" --res_prop_simpl_given false --res_prop_simpl_new true --res_sim_input true --res_time_limit 202.80 --res_to_prop_solver passive --resolution_flag true --schedule none --share_sel_clauses true --smt_ac_axioms fast --smt_preprocessing true --splitting_cvd false --splitting_cvd_svl false --splitting_grd true --splitting_mode input --splitting_nvd 32 --stats_out none --sub_typing true --subs_bck_mult 8 --sup_full_bw "[]" --sup_full_fw "[]" --sup_full_triv "[PropSubs]" --sup_fun_splitting false --sup_immed_bw_immed "[]" --sup_immed_bw_main "[]" --sup_immed_fw_immed "[ACNormalisation]" --sup_immed_fw_main "[]" --sup_immed_triv "[]" --sup_indices_passive "[]" --sup_input_bw "[]" --sup_input_fw "[ACNormalisation]" --sup_input_triv "[Unflattening]" --sup_iter_deepening 2 --sup_passive_queue_type priority_queues --sup_passive_queues "[[-conj_dist;-num_symb];[+age;-num_symb];[+score;-num_symb]]" --sup_passive_queues_freq "[8;4;4]" --sup_prop_simpl_given true --sup_prop_simpl_new true --sup_restarts_mult 2 --sup_score sim_d_gen --sup_share_max_num_cl 500 --sup_share_score_frac 0.2 --sup_smt_interval 10000 --sup_symb_ordering invfreq --sup_to_prop_solver passive --superposition_flag true --time_out_prep_mult 0.1 --suppress_sat_res true --tptp_safe_out true --proof_out true --sat_out_model pos --clausifier res/vclausify_rel --clausifier_options "--mode clausify -t 0.33" --time_out_real 1.00 /export/starexec/sandbox2/benchmark/theBenchmark.p 1>> /export/starexec/sandbox2/tmp/iprover_out__ue91od4/o3vt1fp_ 2>> /export/starexec/sandbox2/tmp/iprover_out__ue91od4/o3vt1fp__error
% 4.98/1.62 ERROR - "ProverProcess:heur/469571:1.0" ran with exit code 2 and error: iprover.ml: Unexpected exception: Failure("Clausification error: res/vclausify_rel exits with an error status: 1")
% 4.98/1.62 Fatal error: exception Failure("Clausification error: res/vclausify_rel exits with an error status: 1")
% 4.98/1.62 ERROR - cmd was: ulimit -v 4023281; ./res/iproveropt --abstr_ref "[]" --abstr_ref_under "[]" --comb_inst_mult 6 --comb_mode clause_based --comb_res_mult 1 --comb_sup_deep_mult 2 --comb_sup_mult 0 --conj_cone_tolerance 3.0 --demod_completeness_check fast --demod_use_ground true --eq_ax_congr_red true --extra_neg_conj none --inst_activity_threshold 32 --inst_dismatching false --inst_eager_unprocessed_to_passive false --inst_eq_res_simp false --inst_learning_factor 10 --inst_learning_loop_flag true --inst_learning_start 256 --inst_lit_activity_flag true --inst_lit_sel "[+sign;-ground;-non_prol_conj_symb;-num_var]" --inst_lit_sel_side num_lit --inst_orphan_elimination true --inst_passive_queue_type list --inst_passive_queues "[[-ground;-epr]]" --inst_passive_queues_freq "[2]" --inst_prop_sim_given false --inst_prop_sim_new false --inst_restr_to_given true --inst_sel_renew solver --inst_solver_calls_frac 0.6939020527068606 --inst_solver_per_active 8 --inst_sos_flag false --inst_start_prop_sim_after_learn 9 --inst_subs_given false --inst_subs_new false --instantiation_flag true --out_options none --pred_elim true --prep_def_merge true --prep_def_merge_mbd true --prep_def_merge_prop_impl false --prep_def_merge_tr_cl false --prep_def_merge_tr_red false --prep_gs_sim true --prep_res_sim true --prep_sem_filter exhaustive --prep_sup_sim_all true --prep_sup_sim_sup false --prep_unflatten true --prep_upred true --preprocessing_flag true --prolific_symb_bound 2048 --prop_solver_per_cl 128 --pure_diseq_elim true --res_backward_subs full --res_backward_subs_resolution true --res_forward_subs full --res_forward_subs_resolution true --res_lit_sel adaptive --res_lit_sel_side none --res_ordering kbo --res_passive_queue_type priority_queues --res_passive_queues "[[-conj_dist;+conj_symb;-num_symb];[+age;-num_symb]]" --res_passive_queues_freq "[15;5]" --res_prop_simpl_given true --res_prop_simpl_new false --res_sim_input true --res_time_limit 300.00 --res_to_prop_solver active --resolution_flag true --schedule none --share_sel_clauses true --smt_ac_axioms fast --smt_preprocessing true --splitting_cvd false --splitting_cvd_svl false --splitting_grd true --splitting_mode input --splitting_nvd 32 --stats_out none --sub_typing true --subs_bck_mult 8 --sup_full_bw "[]" --sup_full_fw "[]" --sup_full_triv "[PropSubs]" --sup_fun_splitting false --sup_immed_bw_immed "[]" --sup_immed_bw_main "[]" --sup_immed_fw_immed "[ACNormalisation]" --sup_immed_fw_main "[]" --sup_immed_triv "[]" --sup_indices_passive "[]" --sup_input_bw "[]" --sup_input_fw "[DemodLightNormLoopTriv;ACNormalisation]" --sup_input_triv "[Unflattening]" --sup_iter_deepening 2 --sup_passive_queue_type priority_queues --sup_passive_queues "[[-conj_dist;-num_symb];[+age;-num_symb];[+score;-num_symb]]" --sup_passive_queues_freq "[8;4;4]" --sup_prop_simpl_given true --sup_prop_simpl_new true --sup_restarts_mult 2 --sup_score sim_d_gen --sup_share_max_num_cl 640 --sup_share_score_frac 0.1 --sup_smt_interval 10000 --sup_symb_ordering invfreq --sup_to_prop_solver passive --superposition_flag true --time_out_prep_mult 0.1 --suppress_sat_res true --tptp_safe_out true --proof_out true --sat_out_model pos --clausifier res/vclausify_rel --clausifier_options "--mode clausify -t 0.33" --time_out_real 1.00 /export/starexec/sandbox2/benchmark/theBenchmark.p 1>> /export/starexec/sandbox2/tmp/iprover_out__ue91od4/kwwbe4s4 2>> /export/starexec/sandbox2/tmp/iprover_out__ue91od4/kwwbe4s4_error
% 4.98/1.62 ERROR - "ProverProcess:heur/381325:1.0" ran with exit code 2 and error: iprover.ml: Unexpected exception: Failure("Clausification error: res/vclausify_rel exits with an error status: 1")
% 4.98/1.62 Fatal error: exception Failure("Clausification error: res/vclausify_rel exits with an error status: 1")
% 4.98/1.62 ERROR - cmd was: ulimit -v 4023281; ./res/iproveropt --abstr_ref "[]" --abstr_ref_under "[]" --comb_inst_mult 3 --comb_mode clause_based --comb_res_mult 1 --comb_sup_deep_mult 1 --comb_sup_mult 3 --conj_cone_tolerance 3. --demod_completeness_check full --demod_use_ground true --eq_ax_congr_red true --extra_neg_conj none --inst_activity_threshold 500 --inst_dismatching true --inst_eager_unprocessed_to_passive true --inst_eq_res_simp false --inst_learning_factor 2 --inst_learning_loop_flag true --inst_learning_start 3000 --inst_lit_activity_flag true --inst_lit_sel "[+prop;+sign;+ground;-num_var;-num_symb]" --inst_lit_sel_side num_symb --inst_orphan_elimination true --inst_passive_queue_type priority_queues --inst_passive_queues "[[-conj_dist;+conj_symb;-num_var];[+age;-num_symb]]" --inst_passive_queues_freq "[25;2]" --inst_prop_sim_given true --inst_prop_sim_new false --inst_restr_to_given false --inst_sel_renew solver --inst_solver_calls_frac 1. --inst_solver_per_active 1400 --inst_sos_flag false --inst_start_prop_sim_after_learn 3 --inst_subs_given false --inst_subs_new false --instantiation_flag true --out_options none --pred_elim true --prep_def_merge true --prep_def_merge_mbd true --prep_def_merge_prop_impl false --prep_def_merge_tr_cl false --prep_def_merge_tr_red false --prep_gs_sim true --prep_res_sim true --prep_sem_filter exhaustive --prep_sup_sim_all true --prep_sup_sim_sup false --prep_unflatten true --prep_upred true --preprocessing_flag true --prolific_symb_bound 256 --prop_solver_per_cl 1024 --pure_diseq_elim true --res_backward_subs full --res_backward_subs_resolution true --res_forward_subs full --res_forward_subs_resolution true --res_lit_sel adaptive --res_lit_sel_side none --res_ordering kbo --res_passive_queue_type priority_queues --res_passive_queues "[[-conj_dist;+conj_symb;-num_symb];[+age;-num_symb]]" --res_passive_queues_freq "[15;5]" --res_prop_simpl_given true --res_prop_simpl_new false --res_sim_input true --res_time_limit 300.00 --res_to_prop_solver active --resolution_flag true --schedule none --share_sel_clauses true --smt_ac_axioms fast --smt_preprocessing true --splitting_cvd false --splitting_cvd_svl false --splitting_grd true --splitting_mode input --splitting_nvd 32 --stats_out none --sub_typing true --subs_bck_mult 8 --sup_full_bw "[]" --sup_full_fw "[Demod;DemodLoopTriv;LightNorm;ACNormalisation]" --sup_full_triv "[]" --sup_fun_splitting true --sup_immed_bw_immed "[]" --sup_immed_bw_main "[SubsumptionRes;UnitSubsAndRes]" --sup_immed_fw_immed "[Subsumption;UnitSubsAndRes;Demod;DemodLoopTriv;LightNorm;DemodLightNormLoopTriv]" --sup_immed_fw_main "[Subsumption;SubsumptionRes;LightNorm;DemodLightNormLoopTriv]" --sup_immed_triv "[PropSubs]" --sup_indices_passive "[UnitSubsumption;NonunitSubsumption;FwDemod]" --sup_input_bw "[UnitSubsAndRes]" --sup_input_fw "[]" --sup_input_triv "[PropSubs]" --sup_iter_deepening 0 --sup_passive_queue_type priority_queues --sup_passive_queues "[[-conj_symb;-max_atom_input_occur];[+horn];[+bc_imp_inh;+ground;-conj_dist]]" --sup_passive_queues_freq "[3;1;25]" --sup_prop_simpl_given true --sup_prop_simpl_new false --sup_restarts_mult 8 --sup_score sim_d_gen --sup_share_max_num_cl 40 --sup_share_score_frac 0.1 --sup_smt_interval 10000 --sup_symb_ordering arity_random --sup_to_prop_solver active --superposition_flag true --time_out_prep_mult 0.1 --suppress_sat_res true --tptp_safe_out true --proof_out true --sat_out_model pos --clausifier res/vclausify_rel --clausifier_options "--mode clausify -t 0.33" --time_out_real 1.00 /export/starexec/sandbox2/benchmark/theBenchmark.p 1>> /export/starexec/sandbox2/tmp/iprover_out__ue91od4/2y11ehs6 2>> /export/starexec/sandbox2/tmp/iprover_out__ue91od4/2y11ehs6_error
% 4.98/1.62 ERROR - "ProverProcess:heur/346297:1.0" ran with exit code 2 and error: iprover.ml: Unexpected exception: Failure("Clausification error: res/vclausify_rel exits with an error status: 1")
% 4.98/1.62 Fatal error: exception Failure("Clausification error: res/vclausify_rel exits with an error status: 1")
% 4.98/1.62 ERROR - cmd was: ulimit -v 4023281; ./res/iproveropt --abstr_ref_under "[]" --comb_inst_mult 3 --comb_mode time_based --comb_sup_deep_mult 6 --comb_sup_mult 32 --conj_cone_tolerance 2.7380125131254 --demod_completeness_check full --demod_use_ground true --eq_ax_congr_red false --extra_neg_conj none --inst_activity_threshold 16 --inst_dismatching false --inst_eager_unprocessed_to_passive false --inst_eq_res_simp true --inst_learning_factor 6 --inst_learning_loop_flag true --inst_learning_start 1024 --inst_lit_activity_flag true --inst_lit_sel "[+depth;+sign;+num_symb;-split;-eq]" --inst_lit_sel_side cnt --inst_orphan_elimination true --inst_passive_queue_type list --inst_passive_queues "[[-num_lits];[-max_atom_input_occur;-ground]]" --inst_passive_queues_freq "[8;50]" --inst_prop_sim_given false --inst_prop_sim_new false --inst_restr_to_given false --inst_sel_renew solver --inst_solver_calls_frac 0.21724605765256222 --inst_solver_per_active 256 --inst_sos_flag true --inst_sos_phase true --inst_sos_sth_lit_sel "[-depth;+non_prol_conj_symb;-split;-ground;+num_var]" --inst_start_prop_sim_after_learn 8 --inst_subs_given false --inst_subs_new false --instantiation_flag true --out_options none --pred_elim true --prep_def_merge true --prep_def_merge_mbd false --prep_def_merge_prop_impl true --prep_def_merge_tr_cl true --prep_def_merge_tr_red false --prep_gs_sim true --prep_res_sim false --prep_sem_filter none --prep_sup_sim_all true --prep_sup_sim_sup false --prep_unflatten false --prep_upred true --preprocessing_flag true --prolific_symb_bound 2048 --prop_solver_per_cl 32 --pure_diseq_elim false --resolution_flag false --schedule none --share_sel_clauses false --smt_ac_axioms full --smt_preprocessing true --splitting_cvd true --splitting_cvd_svl false --splitting_grd true --splitting_mode full --splitting_nvd 128 --stats_out none --sub_typing true --subs_bck_mult 0 --sup_full_bw "[Demod]" --sup_full_fw "[Subsumption;SubsumptionRes;UnitSubsAndRes;DemodLoopTriv;DemodLightNormLoopTriv;ACJoinability;ACNormalisation]" --sup_full_triv "[PropSubs;Unflattening]" --sup_fun_splitting false --sup_immed_bw_immed "[]" --sup_immed_bw_main "[]" --sup_immed_fw_immed "[Subsumption;SubsumptionRes;UnitSubsAndRes;Demod;ACJoinability]" --sup_immed_fw_main "[SubsumptionRes;DemodLoopTriv;DemodLightNormLoopTriv;ACJoinability;ACNormalisation]" --sup_immed_triv "[]" --sup_indices_passive "[UnitSubsumption;NonunitSubsumption;Subsumption;FwDemod;BwDemod;LightNorm]" --sup_input_bw "[]" --sup_input_fw "[]" --sup_input_triv "[PropSubs;Unflattening]" --sup_iter_deepening 4 --sup_passive_queue_type queue --sup_passive_queues "[[+num_symb]]" --sup_passive_queues_freq "[5]" --sup_prop_simpl_given true --sup_prop_simpl_new false --sup_restarts_mult 4 --sup_smt_interval 10000 --sup_symb_ordering arity_random --sup_to_prop_solver passive --superposition_flag true --time_out_prep_mult 0.4432297345384799 --suppress_sat_res true --tptp_safe_out true --proof_out true --sat_out_model pos --clausifier res/vclausify_rel --clausifier_options "--mode clausify -t 0.33" --time_out_real 1.00 /export/starexec/sandbox2/benchmark/theBenchmark.p 1>> /export/starexec/sandbox2/tmp/iprover_out__ue91od4/liplry9l 2>> /export/starexec/sandbox2/tmp/iprover_out__ue91od4/liplry9l_error
% 4.98/1.62 % SZS status Theorem for theBenchmark.p
% 4.98/1.62
% 4.98/1.62 %---------------- iProver v3.9.4 (pre CASC 2026/SMT-COMP 2026) ----------------%
% 4.98/1.62
% 4.98/1.62 % ------ iProver source info
% 4.98/1.62
% 4.98/1.62 % git: date: 2026-07-19 20:42:38 +0200
% 4.98/1.62 % git: sha1: 804e7d636a263075307957e923b7a22a4035de61
% 4.98/1.62 % git: non_committed_changes: false
% 4.98/1.62
% 4.98/1.62 % ------ Parsing...
% 4.98/1.62 % ------ Clausification by vclausify_rel & Parsing by iProver...%
% 4.98/1.62
% 4.98/1.62 % ------ Preprocessing... sf_s rm: 11 0s sf_e pe_s pe:1:0s pe:2:0s pe_e sf_s rm: 6 0s sf_e pe_s pe_e sf_s rm: 0 0s sf_e pe_s pe_e %
% 4.98/1.62
% 4.98/1.62 % ------ Preprocessing... gs_s sp: 4 0s gs_e snvd_s sp: 0 0s snvd_e
% 4.98/1.62 % ------ Proving...
% 4.98/1.62 % ------ Problem Properties
% 4.98/1.62
% 4.98/1.62 %
% 4.98/1.62 % clauses 45
% 4.98/1.62 % conjectures 5
% 4.98/1.62 % EPR 41
% 4.98/1.62 % Horn 44
% 4.98/1.62 % unary 33
% 4.98/1.62 % binary 2
% 4.98/1.62 % lits 73
% 4.98/1.62 % lits eq 0
% 4.98/1.62 % fd_pure 0
% 4.98/1.62 % fd_pseudo 0
% 4.98/1.62 % fd_cond 0
% 4.98/1.62 % fd_pseudo_cond 0
% 4.98/1.62 % AC symbols 0
% 4.98/1.62
% 4.98/1.62 % ------ Schedule dynamic 5 is on
% 4.98/1.62
% 4.98/1.62 % ------ no equalities: superposition off
% 4.98/1.62
% 4.98/1.62 % ------ Input Options "--resolution_flag false --inst_lit_sel_side none" Time Limit: 10.
% 4.98/1.62
% 4.98/1.62
% 4.98/1.62 % ------
% 4.98/1.62 % Current options:
% 4.98/1.62 % ------
% 4.98/1.62
% 4.98/1.62
% 4.98/1.62 %
% 4.98/1.62
% 4.98/1.62 % ------ Proving...
% 4.98/1.62 %
% 4.98/1.62
% 4.98/1.62 % SZS status Theorem for theBenchmark.p
% 4.98/1.62
% 4.98/1.62 % SZS output start CNFRefutation for theBenchmark.p
% See solution above
% 4.98/1.62
% 4.98/1.62
%------------------------------------------------------------------------------