TSTP Solution File: KRS050+1 by SPASS---3.9

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : SPASS---3.9
% Problem  : KRS050+1 : TPTP v8.1.0. Released v3.1.0.
% Transfm  : none
% Format   : tptp
% Command  : run_spass %d %s

% Computer : n024.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 : Sun Jul 17 03:30:24 EDT 2022

% Result   : Satisfiable 0.18s 0.44s
% Output   : Saturation 0.18s
% Verified : 
% SZS Type : ERROR: Analysing output (Could not find formula named 70)

% Comments : 
%------------------------------------------------------------------------------
cnf(73,plain,
    ( ~ cSatisfiable(skf14(u))
    | ca_Vx4(v) ),
    inference(res,[status(thm),theory(equality)],[72,15]),
    [iquote('0:Res:72.1,15.0')] ).

cnf(72,plain,
    ( ~ cSatisfiable(u)
    | ca_Vx2(u) ),
    inference(ssi,[status(thm)],[70,5]),
    [iquote('0:SSi:70.1,5.0')] ).

cnf(65,plain,
    ( ~ ca_Vx4(u)
    | ~ rr(v,u)
    | ca_Vx2(v) ),
    inference(res,[status(thm),theory(equality)],[23,26]),
    [iquote('0:Res:23.1,26.1')] ).

cnf(56,plain,
    ( ~ ca_Vx4(u)
    | ~ rr(v,u)
    | cSatisfiable(v) ),
    inference(con,[status(thm)],[55]),
    [iquote('1:Con:55.2')] ).

cnf(26,axiom,
    ( ~ ca_Vx4(u)
    | ~ rinvR(u,v)
    | ca_Vx2(v) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(61,plain,
    ( ca_Vx4(u)
    | rr(skf14(u),u) ),
    inference(res,[status(thm),theory(equality)],[14,22]),
    [iquote('0:Res:14.1,22.0')] ).

cnf(24,axiom,
    ( ~ ca_Vx2(u)
    | ~ rr1(u,v)
    | cp(v) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(22,axiom,
    ( ~ rinvR(u,v)
    | rr(v,u) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(23,axiom,
    ( ~ rr(u,v)
    | rinvR(v,u) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(60,plain,
    ( ~ cpxcomp(u)
    | ~ cp(u) ),
    inference(res,[status(thm),theory(equality)],[21,20]),
    [iquote('0:Res:21.1,20.1')] ).

cnf(20,axiom,
    ( ~ cp(u)
    | ~ ra_Px1(u,v) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(18,axiom,
    ( ~ cSatisfiable(u)
    | rr(u,skf8(u)) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(19,axiom,
    ( ~ cSatisfiable(u)
    | rr(u,skf9(u)) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(21,axiom,
    ( ~ cpxcomp(u)
    | ra_Px1(u,skf11(u)) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(57,plain,
    ( ca_Vx2(u)
    | cpxcomp(skf12(u)) ),
    inference(res,[status(thm),theory(equality)],[10,54]),
    [iquote('1:Res:10.1,54.0')] ).

cnf(54,plain,
    ( ~ rr1(u,v)
    | cpxcomp(v) ),
    inference(mrr,[status(thm)],[25,52]),
    [iquote('1:MRR:25.0,52.0')] ).

cnf(53,plain,
    ca_Vx5(u),
    inference(mrr,[status(thm)],[17,52]),
    [iquote('1:MRR:17.0,52.0')] ).

cnf(52,plain,
    ca_Vx3(u),
    inference(spt,[],[51]),
    [iquote('1:Spt:51.1')] ).

cnf(50,plain,
    ( cp(u)
    | cpxcomp(u) ),
    inference(res,[status(thm),theory(equality)],[8,9]),
    [iquote('0:Res:8.1,9.0')] ).

cnf(9,axiom,
    ( ~ ra_Px1(u,v)
    | cpxcomp(u) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(14,axiom,
    ( ca_Vx4(u)
    | rinvR(u,skf14(u)) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(10,axiom,
    ( ca_Vx2(u)
    | rr1(u,skf12(u)) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(8,axiom,
    ( cp(u)
    | ra_Px1(u,skf10(u)) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(15,axiom,
    ( ~ ca_Vx2(skf14(u))
    | ca_Vx4(v) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(11,axiom,
    ( ~ cp(skf12(u))
    | ca_Vx2(v) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(7,axiom,
    ( ~ xsd_integer(u)
    | ~ xsd_string(u) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(6,axiom,
    ( xsd_string(u)
    | xsd_integer(u) ),
    file('KRS050+1.p',unknown),
    [] ).

cnf(5,axiom,
    ca_Vx4(skf8(u)),
    file('KRS050+1.p',unknown),
    [] ).

cnf(3,axiom,
    ~ cowlNothing(u),
    file('KRS050+1.p',unknown),
    [] ).

cnf(1,axiom,
    cowlThing(u),
    file('KRS050+1.p',unknown),
    [] ).

cnf(2,axiom,
    cSatisfiable(i2003_11_14_17_16_39209),
    file('KRS050+1.p',unknown),
    [] ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.07/0.12  % Problem  : KRS050+1 : TPTP v8.1.0. Released v3.1.0.
% 0.07/0.12  % Command  : run_spass %d %s
% 0.12/0.33  % Computer : n024.cluster.edu
% 0.12/0.33  % Model    : x86_64 x86_64
% 0.12/0.33  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.12/0.33  % Memory   : 8042.1875MB
% 0.12/0.33  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.12/0.33  % CPULimit : 300
% 0.12/0.33  % WCLimit  : 600
% 0.12/0.33  % DateTime : Tue Jun  7 19:34:34 EDT 2022
% 0.12/0.33  % CPUTime  : 
% 0.18/0.44  
% 0.18/0.44  SPASS V 3.9 
% 0.18/0.44  SPASS beiseite: Completion found.
% 0.18/0.44  % SZS status CounterSatisfiable
% 0.18/0.44  Problem: /export/starexec/sandbox2/benchmark/theBenchmark.p 
% 0.18/0.44  SPASS derived 22 clauses, backtracked 0 clauses, performed 1 splits and kept 41 clauses.
% 0.18/0.44  SPASS allocated 98015 KBytes.
% 0.18/0.44  SPASS spent	0:00:00.10 on the problem.
% 0.18/0.44  		0:00:00.04 for the input.
% 0.18/0.44  		0:00:00.04 for the FLOTTER CNF translation.
% 0.18/0.44  		0:00:00.00 for inferences.
% 0.18/0.44  		0:00:00.00 for the backtracking.
% 0.18/0.44  		0:00:00.00 for the reduction.
% 0.18/0.44  
% 0.18/0.44  
% 0.18/0.44   The saturated set of worked-off clauses is :
% 0.18/0.44  % SZS output start Saturation
% See solution above
%------------------------------------------------------------------------------