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LisaST---0.9.THM-CRf.s

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%------------------------------------------------------------------------------
% File     : LisaST---0.9
% Problem  : SWV157+1 : TPTP v9.3.1. Bugfixed v3.3.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : casc-portfolio.sh -t 300 /export/starexec/sandbox/benchmark/theBenchmark.p

% Computer : n008.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 : Sun Sep 27 09:01:32 AM UTC 2026

% Result   : Theorem 86.06s 17.65s
% Output   : CNFRefutation 86.06s
% Verified : 
% SZS Type : Refutation
%            Derivation depth      :   10
%            Number of leaves      :    3
% Syntax   : Number of formulae    :   22 (  11 unt;   0 def)
%            Number of atoms       :   64 (  23 equ)
%            Maximal formula atoms :   15 (   2 avg)
%            Number of connectives :   63 (  21   ~;  11   |;  19   &)
%                                         (   1 <=>;  11  =>;   0  <=;   0 <~>)
%            Maximal formula depth :   12 (   3 avg)
%            Maximal term depth    :   11 (   2 avg)
%            Number of predicates  :    4 (   2 usr;   1 prp; 0-2 aty)
%            Number of functors    :   26 (  26 usr;  17 con; 0-3 aty)
%            Number of variables   :   16 (   0 sgn  10   !;   0   ?)

% Comments : 
%------------------------------------------------------------------------------
fof(leq_gt2,axiom,
    ! [X0,X1] :
      ( ( X0 != X1
        & leq(X0,X1) )
     => gt(X1,X0) ) ).

fof(leq_gt_pred,axiom,
    ! [X0,X1] :
      ( leq(X0,pred(X1))
    <=> gt(X1,X0) ) ).

fof(cl5_nebula_norm_0007,conjecture,
    ( ( ! [X1] :
          ( ( leq(X1,pred(pv10))
            & leq(n0,X1) )
         => sum(n0,n4,'a$uselect3'(q,X1,'tptp$usum$uindex')) = n1 )
      & ! [X0] :
          ( ( leq(X0,pred(pv47))
            & leq(n0,X0) )
         => 'a$uselect3'(q,pv10,X0) = divide(divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X0)),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X0))),'tptp$uminus$u2'),times('a$uselect2'(sigma,X0),'a$uselect2'(sigma,X0)))),'a$uselect2'(rho,X0)),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,X0))),sum(n0,n4,divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex')),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex'))),'tptp$uminus$u2'),times('a$uselect2'(sigma,'tptp$usum$uindex'),'a$uselect2'(sigma,'tptp$usum$uindex')))),'a$uselect2'(rho,'tptp$usum$uindex')),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,'tptp$usum$uindex'))))) )
      & leq(pv47,n4)
      & leq(pv10,n135299)
      & leq(n0,pv47)
      & leq(n0,pv10)
      & pv84 = sum(n0,n4,divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex')),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex'))),'tptp$uminus$u2'),times('a$uselect2'(sigma,'tptp$usum$uindex'),'a$uselect2'(sigma,'tptp$usum$uindex')))),'a$uselect2'(rho,'tptp$usum$uindex')),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,'tptp$usum$uindex')))) )
   => ! [X2] :
        ( ( leq(X2,pv47)
          & leq(n0,X2) )
       => ( pv47 != X2
         => 'a$uselect3'(q,pv10,X2) = divide(divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X2)),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X2))),'tptp$uminus$u2'),times('a$uselect2'(sigma,X2),'a$uselect2'(sigma,X2)))),'a$uselect2'(rho,X2)),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,X2))),sum(n0,n4,divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex')),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex'))),'tptp$uminus$u2'),times('a$uselect2'(sigma,'tptp$usum$uindex'),'a$uselect2'(sigma,'tptp$usum$uindex')))),'a$uselect2'(rho,'tptp$usum$uindex')),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,'tptp$usum$uindex'))))) ) ) ) ).

fof(negated_conjecture,negated_conjecture,
    ~ ( ( ! [X1] :
            ( ( leq(X1,pred(pv10))
              & leq(n0,X1) )
           => sum(n0,n4,'a$uselect3'(q,X1,'tptp$usum$uindex')) = n1 )
        & ! [X0] :
            ( ( leq(X0,pred(pv47))
              & leq(n0,X0) )
           => 'a$uselect3'(q,pv10,X0) = divide(divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X0)),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X0))),'tptp$uminus$u2'),times('a$uselect2'(sigma,X0),'a$uselect2'(sigma,X0)))),'a$uselect2'(rho,X0)),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,X0))),sum(n0,n4,divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex')),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex'))),'tptp$uminus$u2'),times('a$uselect2'(sigma,'tptp$usum$uindex'),'a$uselect2'(sigma,'tptp$usum$uindex')))),'a$uselect2'(rho,'tptp$usum$uindex')),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,'tptp$usum$uindex'))))) )
        & leq(pv47,n4)
        & leq(pv10,n135299)
        & leq(n0,pv47)
        & leq(n0,pv10)
        & pv84 = sum(n0,n4,divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex')),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex'))),'tptp$uminus$u2'),times('a$uselect2'(sigma,'tptp$usum$uindex'),'a$uselect2'(sigma,'tptp$usum$uindex')))),'a$uselect2'(rho,'tptp$usum$uindex')),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,'tptp$usum$uindex')))) )
     => ! [X2] :
          ( ( leq(X2,pv47)
            & leq(n0,X2) )
         => ( pv47 != X2
           => 'a$uselect3'(q,pv10,X2) = divide(divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X2)),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X2))),'tptp$uminus$u2'),times('a$uselect2'(sigma,X2),'a$uselect2'(sigma,X2)))),'a$uselect2'(rho,X2)),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,X2))),sum(n0,n4,divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex')),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex'))),'tptp$uminus$u2'),times('a$uselect2'(sigma,'tptp$usum$uindex'),'a$uselect2'(sigma,'tptp$usum$uindex')))),'a$uselect2'(rho,'tptp$usum$uindex')),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,'tptp$usum$uindex'))))) ) ) ),
    inference(negate_conjecture,[status(cth)],[cl5_nebula_norm_0007]) ).

cnf(c57,plain,
    ( gt(X1,X0)
    | X0 = X1
    | ~ leq(X0,X1) ),
    inference(clausification,[status(esa)],[leq_gt2]) ).

cnf(c59,plain,
    ( ~ gt(X1,X0)
    | leq(X0,pred(X1)) ),
    inference(clausification,[status(esa)],[leq_gt_pred]) ).

cnf(c171,plain,
    pv84 = sum(n0,n4,divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex')),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex'))),'tptp$uminus$u2'),times('a$uselect2'(sigma,'tptp$usum$uindex'),'a$uselect2'(sigma,'tptp$usum$uindex')))),'a$uselect2'(rho,'tptp$usum$uindex')),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,'tptp$usum$uindex')))),
    inference(clausification,[status(esa)],[negated_conjecture]) ).

cnf(c176,plain,
    ( 'a$uselect3'(q,pv10,X0) = divide(divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X0)),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X0))),'tptp$uminus$u2'),times('a$uselect2'(sigma,X0),'a$uselect2'(sigma,X0)))),'a$uselect2'(rho,X0)),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,X0))),sum(n0,n4,divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex')),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex'))),'tptp$uminus$u2'),times('a$uselect2'(sigma,'tptp$usum$uindex'),'a$uselect2'(sigma,'tptp$usum$uindex')))),'a$uselect2'(rho,'tptp$usum$uindex')),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,'tptp$usum$uindex')))))
    | ~ leq(X0,pred(pv47))
    | ~ leq(n0,X0) ),
    inference(clausification,[status(esa)],[negated_conjecture]) ).

cnf(c178,plain,
    leq(n0,sK183),
    inference(clausification,[status(esa)],[negated_conjecture]) ).

cnf(c179,plain,
    leq(sK183,pv47),
    inference(clausification,[status(esa)],[negated_conjecture]) ).

cnf(c180,plain,
    pv47 != sK183,
    inference(clausification,[status(esa)],[negated_conjecture]) ).

cnf(c181,plain,
    'a$uselect3'(q,pv10,sK183) != divide(divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,sK183)),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,sK183))),'tptp$uminus$u2'),times('a$uselect2'(sigma,sK183),'a$uselect2'(sigma,sK183)))),'a$uselect2'(rho,sK183)),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,sK183))),sum(n0,n4,divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex')),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,'tptp$usum$uindex'))),'tptp$uminus$u2'),times('a$uselect2'(sigma,'tptp$usum$uindex'),'a$uselect2'(sigma,'tptp$usum$uindex')))),'a$uselect2'(rho,'tptp$usum$uindex')),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,'tptp$usum$uindex'))))),
    inference(clausification,[status(esa)],[negated_conjecture]) ).

cnf(d0,plain,
    ( gt(pv47,sK183)
    | sK183 = pv47 ),
    inference(resolution,[status(thm)],[c57,c179]) ).

cnf(d1,plain,
    'a$uselect3'(q,pv10,sK183) != divide(divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,sK183)),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,sK183))),'tptp$uminus$u2'),times('a$uselect2'(sigma,sK183),'a$uselect2'(sigma,sK183)))),'a$uselect2'(rho,sK183)),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,sK183))),pv84),
    inference(demodulation,[status(thm)],[c181,c171]) ).

cnf(d2,plain,
    ( ~ leq(n0,X0)
    | ~ leq(X0,pred(pv47))
    | 'a$uselect3'(q,pv10,X0) = divide(divide(times(exp(divide(divide(times(minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X0)),minus('a$uselect2'(x,pv10),'a$uselect2'(mu,X0))),'tptp$uminus$u2'),times('a$uselect2'(sigma,X0),'a$uselect2'(sigma,X0)))),'a$uselect2'(rho,X0)),times(sqrt(times(n2,'tptp$upi')),'a$uselect2'(sigma,X0))),pv84) ),
    inference(demodulation,[status(thm)],[c176,c171]) ).

cnf(d3,plain,
    ( ~ leq(n0,sK183)
    | ~ leq(sK183,pred(pv47))
    | 'a$uselect3'(q,pv10,sK183) != 'a$uselect3'(q,pv10,sK183) ),
    inference(superposition,[status(thm)],[d2,d1]) ).

cnf(d4,plain,
    ( ~ leq(sK183,pred(pv47))
    | 'a$uselect3'(q,pv10,sK183) != 'a$uselect3'(q,pv10,sK183) ),
    inference(resolution,[status(thm)],[c178,d3]) ).

cnf(d5,plain,
    ~ leq(sK183,pred(pv47)),
    inference(equality_resolution,[status(thm)],[d4]) ).

cnf(d6,plain,
    ~ gt(pv47,sK183),
    inference(resolution,[status(thm)],[d5,c59]) ).

cnf(d7,plain,
    sK183 = pv47,
    inference(resolution,[status(thm)],[d6,d0]) ).

cnf(d8,plain,
    sK183 != sK183,
    inference(demodulation,[status(thm)],[c180,d7]) ).

cnf(d9,plain,
    $false,
    inference(equality_resolution,[status(thm)],[d8]) ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.02  % Problem  : SWV157+1 : TPTP v9.3.1. Bugfixed v3.3.0.
% 0.00/0.04  % Command  : casc-portfolio.sh -t 300 /export/starexec/sandbox/benchmark/theBenchmark.p
% 0.09/0.36  % Computer : n008.cluster.edu
% 0.09/0.36  % Model    : x86_64 x86_64
% 0.09/0.36  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.09/0.36  % Memory   : 8046.5625MB
% 0.09/0.36  % OS       : Linux 6.8.0-71-generic
% 0.09/0.36  % CPULimit : 300
% 0.09/0.36  % WCLimit  : 300
% 0.09/0.36  % DateTime : Sat Sep 26 13:17:54 UTC 2026
% 0.13/0.36  % CPUTime  : 
% 0.13/0.36  Running casc-portfolio.sh -t 300 /export/starexec/sandbox/benchmark/theBenchmark.p
% 86.06/17.65  % SZS status Theorem for theBenchmark.p
% 86.06/17.65  % SZS output start CNFRefutation for theBenchmark.p
% See solution above
%------------------------------------------------------------------------------