TSTP Solution File: NLP048+1 by SPASS---3.9
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- Process Solution
%------------------------------------------------------------------------------
% File : SPASS---3.9
% Problem : NLP048+1 : TPTP v8.1.0. Released v2.4.0.
% Transfm : none
% Format : tptp
% Command : run_spass %d %s
% Computer : n010.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 05:26:10 EDT 2022
% Result : CounterSatisfiable 0.17s 0.47s
% Output : Saturation 0.17s
% Verified :
% SZS Type : ERROR: Analysing output (Could not find formula named 133)
% Comments :
%------------------------------------------------------------------------------
cnf(134,plain,
~ nonhuman(skc12,skc13),
inference(mrr,[status(thm)],[133,50,51]),
[iquote('2:MRR:133.0,133.1,50.0,51.0')] ).
cnf(93,plain,
( ~ group(skc12,u)
| ~ five(skc12,u)
| ~ nonhuman(skc12,u)
| ~ skP0(u,u,skc12)
| ~ skP0(v,u,skc12)
| agent(skc12,skf8(skc12,skf5(skc12,u),v),v) ),
inference(res,[status(thm),theory(equality)],[90,40]),
[iquote('1:Res:90.4,40.0')] ).
cnf(103,plain,
( ~ group(skc12,u)
| ~ five(skc12,u)
| ~ nonhuman(skc12,u)
| ~ skP0(u,u,skc12)
| patient(skc12,skf8(skc12,skf5(skc12,u),v),skf5(skc12,u)) ),
inference(con,[status(thm)],[92]),
[iquote('1:Con:92.4')] ).
cnf(102,plain,
( ~ group(skc12,u)
| ~ five(skc12,u)
| ~ nonhuman(skc12,u)
| ~ skP0(u,u,skc12)
| event(skc12,skf8(skc12,v,w)) ),
inference(con,[status(thm)],[94]),
[iquote('1:Con:94.4')] ).
cnf(101,plain,
( ~ group(skc12,u)
| ~ five(skc12,u)
| ~ nonhuman(skc12,u)
| ~ skP0(u,u,skc12)
| nonreflexive(skc12,skf8(skc12,v,w)) ),
inference(con,[status(thm)],[95]),
[iquote('1:Con:95.4')] ).
cnf(100,plain,
( ~ group(skc12,u)
| ~ five(skc12,u)
| ~ nonhuman(skc12,u)
| ~ skP0(u,u,skc12)
| present(skc12,skf8(skc12,v,w)) ),
inference(con,[status(thm)],[96]),
[iquote('1:Con:96.4')] ).
cnf(99,plain,
( ~ group(skc12,u)
| ~ five(skc12,u)
| ~ nonhuman(skc12,u)
| ~ skP0(u,u,skc12)
| cost(skc12,skf8(skc12,v,w)) ),
inference(con,[status(thm)],[97]),
[iquote('1:Con:97.4')] ).
cnf(86,plain,
( ~ actual_world(u)
| ~ skP0(v,w,u)
| ~ mia_forename(u,x)
| ~ forename(u,x)
| ~ woman(u,v)
| ~ past(u,skf8(u,skf10(y,u,w),v))
| ~ order(u,skf8(u,skf10(y,u,w),v))
| ~ shake_beverage(u,z)
| ~ group(u,x1)
| ~ five(u,x1)
| ~ nonhuman(u,x1)
| ~ of(u,x,v)
| ~ patient(u,skf8(u,skf10(y,u,w),v),z)
| ~ skP0(x1,x1,u)
| skP0(y,w,u)
| member(u,skf5(u,x1),x1) ),
inference(mrr,[status(thm)],[83,77,74]),
[iquote('1:MRR:83.5,83.7,77.2,74.2')] ).
cnf(90,plain,
( ~ group(skc12,u)
| ~ five(skc12,u)
| ~ nonhuman(skc12,u)
| ~ skP0(u,u,skc12)
| member(skc12,skf5(skc12,u),u) ),
inference(mrr,[status(thm)],[89,60]),
[iquote('1:MRR:89.0,60.0')] ).
cnf(66,plain,
( ~ actual_world(u)
| ~ mia_forename(u,v)
| ~ forename(u,v)
| ~ woman(u,w)
| ~ event(u,x)
| ~ past(u,x)
| ~ nonreflexive(u,x)
| ~ order(u,x)
| ~ shake_beverage(u,y)
| ~ group(u,z)
| ~ five(u,z)
| ~ nonhuman(u,z)
| ~ agent(u,x,w)
| ~ of(u,v,w)
| ~ patient(u,x,y)
| ~ skP0(z,z,u)
| member(u,skf5(u,z),z) ),
inference(mrr,[status(thm)],[46,49]),
[iquote('1:MRR:46.1,49.0')] ).
cnf(67,plain,
( ~ actual_world(u)
| ~ mia_forename(u,v)
| ~ forename(u,v)
| ~ woman(u,w)
| ~ event(u,x)
| ~ past(u,x)
| ~ nonreflexive(u,x)
| ~ order(u,x)
| ~ shake_beverage(u,y)
| ~ group(u,z)
| ~ five(u,z)
| ~ nonhuman(u,z)
| ~ dollar(u,skf5(u,x1))
| ~ agent(u,x,w)
| ~ of(u,v,w)
| ~ patient(u,x,y)
| ~ skP0(z,z,u) ),
inference(mrr,[status(thm)],[45,49]),
[iquote('1:MRR:45.1,49.0')] ).
cnf(42,axiom,
( ~ cost(u,v)
| ~ nonreflexive(u,v)
| ~ present(u,v)
| ~ event(u,v)
| ~ agent(u,v,w)
| ~ patient(u,v,skf10(w,u,x))
| skP0(w,y,u) ),
file('NLP048+1.p',unknown),
[] ).
cnf(80,plain,
( ~ skP0(u,v,w)
| skP0(x,v,w)
| patient(w,skf8(w,skf10(x,w,v),y),skf10(x,w,v)) ),
inference(res,[status(thm),theory(equality)],[35,41]),
[iquote('0:Res:35.1,41.0')] ).
cnf(79,plain,
( ~ skP0(u,v,w)
| skP0(x,v,w)
| agent(w,skf8(w,skf10(x,w,v),u),u) ),
inference(res,[status(thm),theory(equality)],[35,40]),
[iquote('0:Res:35.1,40.0')] ).
cnf(41,axiom,
( ~ member(u,v,w)
| ~ skP0(x,w,u)
| patient(u,skf8(u,v,y),v) ),
file('NLP048+1.p',unknown),
[] ).
cnf(40,axiom,
( ~ member(u,v,w)
| ~ skP0(x,w,u)
| agent(u,skf8(u,v,x),x) ),
file('NLP048+1.p',unknown),
[] ).
cnf(77,plain,
( ~ skP0(u,v,w)
| skP0(x,v,w)
| event(w,skf8(w,y,z)) ),
inference(res,[status(thm),theory(equality)],[35,36]),
[iquote('0:Res:35.1,36.0')] ).
cnf(36,axiom,
( ~ member(u,v,w)
| ~ skP0(x,w,u)
| event(u,skf8(u,y,z)) ),
file('NLP048+1.p',unknown),
[] ).
cnf(74,plain,
( ~ skP0(u,v,w)
| skP0(x,v,w)
| nonreflexive(w,skf8(w,y,z)) ),
inference(res,[status(thm),theory(equality)],[35,38]),
[iquote('0:Res:35.1,38.0')] ).
cnf(73,plain,
( ~ skP0(u,v,w)
| skP0(x,v,w)
| present(w,skf8(w,y,z)) ),
inference(res,[status(thm),theory(equality)],[35,37]),
[iquote('0:Res:35.1,37.0')] ).
cnf(38,axiom,
( ~ member(u,v,w)
| ~ skP0(x,w,u)
| nonreflexive(u,skf8(u,y,z)) ),
file('NLP048+1.p',unknown),
[] ).
cnf(37,axiom,
( ~ member(u,v,w)
| ~ skP0(x,w,u)
| present(u,skf8(u,y,z)) ),
file('NLP048+1.p',unknown),
[] ).
cnf(71,plain,
skP0(u,skc13,skc12),
inference(spt,[],[70]),
[iquote('2:Spt:70.0')] ).
cnf(69,plain,
( ~ skP0(u,v,w)
| skP0(x,v,w)
| cost(w,skf8(w,y,z)) ),
inference(res,[status(thm),theory(equality)],[35,39]),
[iquote('0:Res:35.1,39.0')] ).
cnf(39,axiom,
( ~ member(u,v,w)
| ~ skP0(x,w,u)
| cost(u,skf8(u,y,z)) ),
file('NLP048+1.p',unknown),
[] ).
cnf(35,axiom,
( skP0(u,v,w)
| member(w,skf10(u,w,v),v) ),
file('NLP048+1.p',unknown),
[] ).
cnf(65,plain,
( ~ member(skc12,u,skc13)
| dollar(skc12,u) ),
inference(mrr,[status(thm)],[34,49]),
[iquote('1:MRR:34.0,49.0')] ).
cnf(64,plain,
patient(skc12,skc14,skc15),
inference(mrr,[status(thm)],[29,49]),
[iquote('1:MRR:29.0,49.0')] ).
cnf(63,plain,
of(skc12,skc16,skc17),
inference(mrr,[status(thm)],[30,49]),
[iquote('1:MRR:30.0,49.0')] ).
cnf(62,plain,
agent(skc12,skc14,skc17),
inference(mrr,[status(thm)],[31,49]),
[iquote('1:MRR:31.0,49.0')] ).
cnf(60,plain,
shake_beverage(skc12,skc15),
inference(mrr,[status(thm)],[14,49]),
[iquote('1:MRR:14.0,49.0')] ).
cnf(59,plain,
order(skc12,skc14),
inference(mrr,[status(thm)],[15,49]),
[iquote('1:MRR:15.0,49.0')] ).
cnf(58,plain,
nonreflexive(skc12,skc14),
inference(mrr,[status(thm)],[16,49]),
[iquote('1:MRR:16.0,49.0')] ).
cnf(57,plain,
past(skc12,skc14),
inference(mrr,[status(thm)],[17,49]),
[iquote('1:MRR:17.0,49.0')] ).
cnf(56,plain,
event(skc12,skc14),
inference(mrr,[status(thm)],[18,49]),
[iquote('1:MRR:18.0,49.0')] ).
cnf(55,plain,
woman(skc12,skc17),
inference(mrr,[status(thm)],[19,49]),
[iquote('1:MRR:19.0,49.0')] ).
cnf(54,plain,
forename(skc12,skc16),
inference(mrr,[status(thm)],[20,49]),
[iquote('1:MRR:20.0,49.0')] ).
cnf(53,plain,
mia_forename(skc12,skc16),
inference(mrr,[status(thm)],[21,49]),
[iquote('1:MRR:21.0,49.0')] ).
cnf(52,plain,
nonhuman(skc12,skc16),
inference(mrr,[status(thm)],[22,49]),
[iquote('1:MRR:22.0,49.0')] ).
cnf(51,plain,
five(skc12,skc13),
inference(mrr,[status(thm)],[23,49]),
[iquote('1:MRR:23.0,49.0')] ).
cnf(50,plain,
group(skc12,skc13),
inference(mrr,[status(thm)],[24,49]),
[iquote('1:MRR:24.0,49.0')] ).
cnf(1,axiom,
actual_world(skc21),
file('NLP048+1.p',unknown),
[] ).
cnf(2,axiom,
actual_world(skc12),
file('NLP048+1.p',unknown),
[] ).
cnf(49,plain,
skC0,
inference(spt,[],[13]),
[iquote('1:Spt:13.0')] ).
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.11/0.11 % Problem : NLP048+1 : TPTP v8.1.0. Released v2.4.0.
% 0.11/0.12 % Command : run_spass %d %s
% 0.11/0.32 % Computer : n010.cluster.edu
% 0.11/0.32 % Model : x86_64 x86_64
% 0.11/0.32 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.11/0.32 % Memory : 8042.1875MB
% 0.11/0.32 % OS : Linux 3.10.0-693.el7.x86_64
% 0.11/0.32 % CPULimit : 300
% 0.11/0.32 % WCLimit : 600
% 0.11/0.32 % DateTime : Thu Jun 30 22:18:03 EDT 2022
% 0.11/0.32 % CPUTime :
% 0.17/0.47
% 0.17/0.47 SPASS V 3.9
% 0.17/0.47 SPASS beiseite: Completion found.
% 0.17/0.47 % SZS status CounterSatisfiable
% 0.17/0.47 Problem: /export/starexec/sandbox/benchmark/theBenchmark.p
% 0.17/0.47 SPASS derived 58 clauses, backtracked 0 clauses, performed 2 splits and kept 98 clauses.
% 0.17/0.47 SPASS allocated 98137 KBytes.
% 0.17/0.47 SPASS spent 0:00:00.14 on the problem.
% 0.17/0.47 0:00:00.04 for the input.
% 0.17/0.47 0:00:00.06 for the FLOTTER CNF translation.
% 0.17/0.47 0:00:00.00 for inferences.
% 0.17/0.47 0:00:00.00 for the backtracking.
% 0.17/0.47 0:00:00.01 for the reduction.
% 0.17/0.47
% 0.17/0.47
% 0.17/0.47 The saturated set of worked-off clauses is :
% 0.17/0.47 % SZS output start Saturation
% See solution above
%------------------------------------------------------------------------------