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ConnectPP---0.7.2.THM-Prf.s

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%------------------------------------------------------------------------------
% File     : ConnectPP---0.7.2
% Problem  : NUM500+3 : TPTP v9.3.1. Released v4.0.0.
% Transfm  : none
% Format   : tptp:raw
% Command  : /export/starexec/sandbox2/solver/bin/connect++ --verbosity 1 --no-colour --tptp-proof --schedule default --timeout 300 /export/starexec/sandbox2/benchmark/theBenchmark.p

% Computer : n014.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 : Thu Sep 24 08:52:25 AM UTC 2026

% Result   : Theorem 273.86s 274.15s
% Output   : Proof 274.71s
% Verified : 
% SZS Type : ERROR: Analysing output (MakeTreeStats fails)

% Comments : 
%------------------------------------------------------------------------------
fof(mNatSort,axiom,
    ! [W0] :
      ( aNaturalNumber0(W0)
     => $true ),
    file('theBenchmark.p',mNatSort) ).

fof(mSortsC,axiom,
    aNaturalNumber0(sz00),
    file('theBenchmark.p',mSortsC) ).

fof(mSortsC_01,axiom,
    ( sz10 != sz00
    & aNaturalNumber0(sz10) ),
    file('theBenchmark.p',mSortsC_01) ).

fof(mSortsB,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => aNaturalNumber0(sdtpldt0(W0,W1)) ),
    file('theBenchmark.p',mSortsB) ).

fof(mSortsB_02,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => aNaturalNumber0(sdtasdt0(W0,W1)) ),
    file('theBenchmark.p',mSortsB_02) ).

fof(mAddComm,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => sdtpldt0(W0,W1) = sdtpldt0(W1,W0) ),
    file('theBenchmark.p',mAddComm) ).

fof(mAddAsso,axiom,
    ! [W0,W1,W2] :
      ( ( aNaturalNumber0(W2)
        & aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => sdtpldt0(sdtpldt0(W0,W1),W2) = sdtpldt0(W0,sdtpldt0(W1,W2)) ),
    file('theBenchmark.p',mAddAsso) ).

fof(m_AddZero,axiom,
    ! [W0] :
      ( aNaturalNumber0(W0)
     => ( W0 = sdtpldt0(sz00,W0)
        & sdtpldt0(W0,sz00) = W0 ) ),
    file('theBenchmark.p',m_AddZero) ).

fof(mMulComm,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => sdtasdt0(W0,W1) = sdtasdt0(W1,W0) ),
    file('theBenchmark.p',mMulComm) ).

fof(mMulAsso,axiom,
    ! [W0,W1,W2] :
      ( ( aNaturalNumber0(W2)
        & aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => sdtasdt0(sdtasdt0(W0,W1),W2) = sdtasdt0(W0,sdtasdt0(W1,W2)) ),
    file('theBenchmark.p',mMulAsso) ).

fof(m_MulUnit,axiom,
    ! [W0] :
      ( aNaturalNumber0(W0)
     => ( W0 = sdtasdt0(sz10,W0)
        & sdtasdt0(W0,sz10) = W0 ) ),
    file('theBenchmark.p',m_MulUnit) ).

fof(m_MulZero,axiom,
    ! [W0] :
      ( aNaturalNumber0(W0)
     => ( sz00 = sdtasdt0(sz00,W0)
        & sdtasdt0(W0,sz00) = sz00 ) ),
    file('theBenchmark.p',m_MulZero) ).

fof(mAMDistr,axiom,
    ! [W0,W1,W2] :
      ( ( aNaturalNumber0(W2)
        & aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( sdtasdt0(sdtpldt0(W1,W2),W0) = sdtpldt0(sdtasdt0(W1,W0),sdtasdt0(W2,W0))
        & sdtasdt0(W0,sdtpldt0(W1,W2)) = sdtpldt0(sdtasdt0(W0,W1),sdtasdt0(W0,W2)) ) ),
    file('theBenchmark.p',mAMDistr) ).

fof(mAddCanc,axiom,
    ! [W0,W1,W2] :
      ( ( aNaturalNumber0(W2)
        & aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( sdtpldt0(W1,W0) = sdtpldt0(W2,W0)
          | sdtpldt0(W0,W1) = sdtpldt0(W0,W2) )
       => W1 = W2 ) ),
    file('theBenchmark.p',mAddCanc) ).

fof(mMulCanc,axiom,
    ! [W0] :
      ( aNaturalNumber0(W0)
     => ( W0 != sz00
       => ! [W1,W2] :
            ( ( aNaturalNumber0(W2)
              & aNaturalNumber0(W1) )
           => ( ( sdtasdt0(W1,W0) = sdtasdt0(W2,W0)
                | sdtasdt0(W0,W1) = sdtasdt0(W0,W2) )
             => W1 = W2 ) ) ) ),
    file('theBenchmark.p',mMulCanc) ).

fof(mZeroAdd,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( sdtpldt0(W0,W1) = sz00
       => ( W1 = sz00
          & W0 = sz00 ) ) ),
    file('theBenchmark.p',mZeroAdd) ).

fof(mZeroMul,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( sdtasdt0(W0,W1) = sz00
       => ( W1 = sz00
          | W0 = sz00 ) ) ),
    file('theBenchmark.p',mZeroMul) ).

fof(mDefLE,definition,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( sdtlseqdt0(W0,W1)
      <=> ? [W2] :
            ( sdtpldt0(W0,W2) = W1
            & aNaturalNumber0(W2) ) ) ),
    file('theBenchmark.p',mDefLE) ).

fof(mDefDiff,definition,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( sdtlseqdt0(W0,W1)
       => ! [W2] :
            ( W2 = sdtmndt0(W1,W0)
          <=> ( sdtpldt0(W0,W2) = W1
              & aNaturalNumber0(W2) ) ) ) ),
    file('theBenchmark.p',mDefDiff) ).

fof(mLERefl,axiom,
    ! [W0] :
      ( aNaturalNumber0(W0)
     => sdtlseqdt0(W0,W0) ),
    file('theBenchmark.p',mLERefl) ).

fof(mLEAsym,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( sdtlseqdt0(W1,W0)
          & sdtlseqdt0(W0,W1) )
       => W0 = W1 ) ),
    file('theBenchmark.p',mLEAsym) ).

fof(mLETran,axiom,
    ! [W0,W1,W2] :
      ( ( aNaturalNumber0(W2)
        & aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( sdtlseqdt0(W1,W2)
          & sdtlseqdt0(W0,W1) )
       => sdtlseqdt0(W0,W2) ) ),
    file('theBenchmark.p',mLETran) ).

fof(mLETotal,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( sdtlseqdt0(W1,W0)
          & W1 != W0 )
        | sdtlseqdt0(W0,W1) ) ),
    file('theBenchmark.p',mLETotal) ).

fof(mMonAdd,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( sdtlseqdt0(W0,W1)
          & W0 != W1 )
       => ! [W2] :
            ( aNaturalNumber0(W2)
           => ( sdtlseqdt0(sdtpldt0(W0,W2),sdtpldt0(W1,W2))
              & sdtpldt0(W0,W2) != sdtpldt0(W1,W2)
              & sdtlseqdt0(sdtpldt0(W2,W0),sdtpldt0(W2,W1))
              & sdtpldt0(W2,W0) != sdtpldt0(W2,W1) ) ) ) ),
    file('theBenchmark.p',mMonAdd) ).

fof(mMonMul,axiom,
    ! [W0,W1,W2] :
      ( ( aNaturalNumber0(W2)
        & aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( sdtlseqdt0(W1,W2)
          & W1 != W2
          & W0 != sz00 )
       => ( sdtlseqdt0(sdtasdt0(W1,W0),sdtasdt0(W2,W0))
          & sdtasdt0(W1,W0) != sdtasdt0(W2,W0)
          & sdtlseqdt0(sdtasdt0(W0,W1),sdtasdt0(W0,W2))
          & sdtasdt0(W0,W1) != sdtasdt0(W0,W2) ) ) ),
    file('theBenchmark.p',mMonMul) ).

fof(mLENTr,axiom,
    ! [W0] :
      ( aNaturalNumber0(W0)
     => ( ( sdtlseqdt0(sz10,W0)
          & sz10 != W0 )
        | W0 = sz10
        | W0 = sz00 ) ),
    file('theBenchmark.p',mLENTr) ).

fof(mMonMul2,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( W0 != sz00
       => sdtlseqdt0(W1,sdtasdt0(W1,W0)) ) ),
    file('theBenchmark.p',mMonMul2) ).

fof(mIH,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( iLess0(W0,W1)
       => $true ) ),
    file('theBenchmark.p',mIH) ).

fof(mIH_03,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( sdtlseqdt0(W0,W1)
          & W0 != W1 )
       => iLess0(W0,W1) ) ),
    file('theBenchmark.p',mIH_03) ).

fof(mDefDiv,definition,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( doDivides0(W0,W1)
      <=> ? [W2] :
            ( W1 = sdtasdt0(W0,W2)
            & aNaturalNumber0(W2) ) ) ),
    file('theBenchmark.p',mDefDiv) ).

fof(mDefQuot,definition,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( doDivides0(W0,W1)
          & W0 != sz00 )
       => ! [W2] :
            ( W2 = sdtsldt0(W1,W0)
          <=> ( W1 = sdtasdt0(W0,W2)
              & aNaturalNumber0(W2) ) ) ) ),
    file('theBenchmark.p',mDefQuot) ).

fof(mDivTrans,axiom,
    ! [W0,W1,W2] :
      ( ( aNaturalNumber0(W2)
        & aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( doDivides0(W1,W2)
          & doDivides0(W0,W1) )
       => doDivides0(W0,W2) ) ),
    file('theBenchmark.p',mDivTrans) ).

fof(mDivSum,axiom,
    ! [W0,W1,W2] :
      ( ( aNaturalNumber0(W2)
        & aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( doDivides0(W0,W2)
          & doDivides0(W0,W1) )
       => doDivides0(W0,sdtpldt0(W1,W2)) ) ),
    file('theBenchmark.p',mDivSum) ).

fof(mDivMin,axiom,
    ! [W0,W1,W2] :
      ( ( aNaturalNumber0(W2)
        & aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( doDivides0(W0,sdtpldt0(W1,W2))
          & doDivides0(W0,W1) )
       => doDivides0(W0,W2) ) ),
    file('theBenchmark.p',mDivMin) ).

fof(mDivLE,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( W1 != sz00
          & doDivides0(W0,W1) )
       => sdtlseqdt0(W0,W1) ) ),
    file('theBenchmark.p',mDivLE) ).

fof(mDivAsso,axiom,
    ! [W0,W1] :
      ( ( aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( doDivides0(W0,W1)
          & W0 != sz00 )
       => ! [W2] :
            ( aNaturalNumber0(W2)
           => sdtasdt0(W2,sdtsldt0(W1,W0)) = sdtsldt0(sdtasdt0(W2,W1),W0) ) ) ),
    file('theBenchmark.p',mDivAsso) ).

fof(mDefPrime,definition,
    ! [W0] :
      ( aNaturalNumber0(W0)
     => ( isPrime0(W0)
      <=> ( ! [W1] :
              ( ( doDivides0(W1,W0)
                & aNaturalNumber0(W1) )
             => ( W1 = W0
                | W1 = sz10 ) )
          & W0 != sz10
          & W0 != sz00 ) ) ),
    file('theBenchmark.p',mDefPrime) ).

fof(mPrimDiv,axiom,
    ! [W0] :
      ( ( W0 != sz10
        & W0 != sz00
        & aNaturalNumber0(W0) )
     => ? [W1] :
          ( isPrime0(W1)
          & doDivides0(W1,W0)
          & aNaturalNumber0(W1) ) ),
    file('theBenchmark.p',mPrimDiv) ).

fof(m__1837,hypothesis,
    ( aNaturalNumber0(xp)
    & aNaturalNumber0(xm)
    & aNaturalNumber0(xn) ),
    file('theBenchmark.p',m__1837) ).

fof(m__1799,hypothesis,
    ! [W0,W1,W2] :
      ( ( aNaturalNumber0(W2)
        & aNaturalNumber0(W1)
        & aNaturalNumber0(W0) )
     => ( ( ( doDivides0(W2,sdtasdt0(W0,W1))
            | ? [W3] :
                ( sdtasdt0(W0,W1) = sdtasdt0(W2,W3)
                & aNaturalNumber0(W3) ) )
          & ( isPrime0(W2)
            | ( ! [W3] :
                  ( ( doDivides0(W3,W2)
                    & ? [W4] :
                        ( W2 = sdtasdt0(W3,W4)
                        & aNaturalNumber0(W4) )
                    & aNaturalNumber0(W3) )
                 => ( W3 = W2
                    | W3 = sz10 ) )
              & W2 != sz10
              & W2 != sz00 ) ) )
       => ( iLess0(sdtpldt0(sdtpldt0(W0,W1),W2),sdtpldt0(sdtpldt0(xn,xm),xp))
         => ( ( doDivides0(W2,W1)
              & ? [W3] :
                  ( W1 = sdtasdt0(W2,W3)
                  & aNaturalNumber0(W3) ) )
            | ( doDivides0(W2,W0)
              & ? [W3] :
                  ( W0 = sdtasdt0(W2,W3)
                  & aNaturalNumber0(W3) ) ) ) ) ) ),
    file('theBenchmark.p',m__1799) ).

fof(m__1860,hypothesis,
    ( doDivides0(xp,sdtasdt0(xn,xm))
    & ? [W0] :
        ( sdtasdt0(xn,xm) = sdtasdt0(xp,W0)
        & aNaturalNumber0(W0) )
    & isPrime0(xp)
    & ! [W0] :
        ( ( ( doDivides0(W0,xp)
            | ? [W1] :
                ( xp = sdtasdt0(W0,W1)
                & aNaturalNumber0(W1) ) )
          & aNaturalNumber0(W0) )
       => ( W0 = xp
          | W0 = sz10 ) )
    & xp != sz10
    & xp != sz00 ),
    file('theBenchmark.p',m__1860) ).

fof(m__1870,hypothesis,
    ~ ( sdtlseqdt0(xp,xn)
      | ? [W0] :
          ( sdtpldt0(xp,W0) = xn
          & aNaturalNumber0(W0) ) ),
    file('theBenchmark.p',m__1870) ).

fof(m__2075,hypothesis,
    ~ ( sdtlseqdt0(xp,xm)
      | ? [W0] :
          ( sdtpldt0(xp,W0) = xm
          & aNaturalNumber0(W0) ) ),
    file('theBenchmark.p',m__2075) ).

fof(m__2287,hypothesis,
    ( sdtlseqdt0(xm,xp)
    & ? [W0] :
        ( sdtpldt0(xm,W0) = xp
        & aNaturalNumber0(W0) )
    & xm != xp
    & sdtlseqdt0(xn,xp)
    & ? [W0] :
        ( sdtpldt0(xn,W0) = xp
        & aNaturalNumber0(W0) )
    & xn != xp ),
    file('theBenchmark.p',m__2287) ).

fof(m__2306,hypothesis,
    ( xk = sdtsldt0(sdtasdt0(xn,xm),xp)
    & sdtasdt0(xn,xm) = sdtasdt0(xp,xk)
    & aNaturalNumber0(xk) ),
    file('theBenchmark.p',m__2306) ).

fof(m__2315,hypothesis,
    ~ ( xk = sz10
      | xk = sz00 ),
    file('theBenchmark.p',m__2315) ).

fof(m__2327,hypothesis,
    ( xk != sz10
    & xk != sz00 ),
    file('theBenchmark.p',m__2327) ).

fof(m__,conjecture,
    ? [W0] :
      ( ( isPrime0(W0)
        | ( ! [W1] :
              ( ( doDivides0(W1,W0)
                & ? [W2] :
                    ( W0 = sdtasdt0(W1,W2)
                    & aNaturalNumber0(W2) )
                & aNaturalNumber0(W1) )
             => ( W1 = W0
                | W1 = sz10 ) )
          & W0 != sz10
          & W0 != sz00 ) )
      & ( doDivides0(W0,xk)
        | ? [W1] :
            ( xk = sdtasdt0(W0,W1)
            & aNaturalNumber0(W1) ) )
      & aNaturalNumber0(W0) ),
    file('theBenchmark.p',m__) ).

fof(f_1_1,plain,
    ! [W0] :
      ( $true
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mNatSort]) ).

fof(f_1_2,plain,
    ! [U_0] :
      ( $true
      | ~ aNaturalNumber0(U_0) ),
    inference(variable_rename,[status(thm)],[f_1_1]) ).

fof(f_1_3,plain,
    ( ! [U_0] : ~ aNaturalNumber0(U_0)
    | $true ),
    inference(miniscope,[status(thm)],[f_1_2]) ).

fof(f_1_4,plain,
    ! [U_0] :
      ( ~ aNaturalNumber0(U_0)
      | $true ),
    inference(definitional_conversion,[status(esa)],[f_1_3]) ).

cnf(f_1_5,plain,
    ( ~ aNaturalNumber0(U_0)
    | $true ),
    inference(clausify,[status(thm)],[f_1_4]) ).

fof(f_2_1,plain,
    aNaturalNumber0(sz00),
    inference(fof_nnf,[status(thm)],[mSortsC]) ).

fof(f_2_2,plain,
    aNaturalNumber0(sz00),
    inference(definitional_conversion,[status(esa)],[f_2_1]) ).

cnf(f_2_3,plain,
    aNaturalNumber0(sz00),
    inference(clausify,[status(thm)],[f_2_2]) ).

fof(f_3_1,plain,
    ( sz10 != sz00
    & aNaturalNumber0(sz10) ),
    inference(fof_nnf,[status(thm)],[mSortsC_01]) ).

fof(f_3_2,plain,
    ( sz10 != sz00
    & aNaturalNumber0(sz10) ),
    inference(definitional_conversion,[status(esa)],[f_3_1]) ).

cnf(f_3_3,plain,
    aNaturalNumber0(sz10),
    inference(clausify,[status(thm)],[f_3_2]) ).

cnf(f_3_4,plain,
    sz10 != sz00,
    inference(clausify,[status(thm)],[f_3_2]) ).

fof(f_4_1,plain,
    ! [W0,W1] :
      ( aNaturalNumber0(sdtpldt0(W0,W1))
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mSortsB]) ).

fof(f_4_2,plain,
    ! [U_2,U_1] :
      ( aNaturalNumber0(sdtpldt0(U_2,U_1))
      | ~ aNaturalNumber0(U_1)
      | ~ aNaturalNumber0(U_2) ),
    inference(variable_rename,[status(thm)],[f_4_1]) ).

fof(f_4_3,plain,
    ! [U_2,U_1] :
      ( aNaturalNumber0(sdtpldt0(U_2,U_1))
      | ~ aNaturalNumber0(U_1)
      | ~ aNaturalNumber0(U_2) ),
    inference(definitional_conversion,[status(esa)],[f_4_2]) ).

cnf(f_4_4,plain,
    ( aNaturalNumber0(sdtpldt0(U_2,U_1))
    | ~ aNaturalNumber0(U_1)
    | ~ aNaturalNumber0(U_2) ),
    inference(clausify,[status(thm)],[f_4_3]) ).

fof(f_5_1,plain,
    ! [W0,W1] :
      ( aNaturalNumber0(sdtasdt0(W0,W1))
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mSortsB_02]) ).

fof(f_5_2,plain,
    ! [U_4,U_3] :
      ( aNaturalNumber0(sdtasdt0(U_4,U_3))
      | ~ aNaturalNumber0(U_3)
      | ~ aNaturalNumber0(U_4) ),
    inference(variable_rename,[status(thm)],[f_5_1]) ).

fof(f_5_3,plain,
    ! [U_4,U_3] :
      ( aNaturalNumber0(sdtasdt0(U_4,U_3))
      | ~ aNaturalNumber0(U_3)
      | ~ aNaturalNumber0(U_4) ),
    inference(definitional_conversion,[status(esa)],[f_5_2]) ).

cnf(f_5_4,plain,
    ( aNaturalNumber0(sdtasdt0(U_4,U_3))
    | ~ aNaturalNumber0(U_3)
    | ~ aNaturalNumber0(U_4) ),
    inference(clausify,[status(thm)],[f_5_3]) ).

fof(f_6_1,plain,
    ! [W0,W1] :
      ( sdtpldt0(W0,W1) = sdtpldt0(W1,W0)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mAddComm]) ).

fof(f_6_2,plain,
    ! [U_6,U_5] :
      ( sdtpldt0(U_6,U_5) = sdtpldt0(U_5,U_6)
      | ~ aNaturalNumber0(U_5)
      | ~ aNaturalNumber0(U_6) ),
    inference(variable_rename,[status(thm)],[f_6_1]) ).

fof(f_6_3,plain,
    ! [U_5,U_6] :
      ( sdtpldt0(U_6,U_5) = sdtpldt0(U_5,U_6)
      | ~ aNaturalNumber0(U_5)
      | ~ aNaturalNumber0(U_6) ),
    inference(definitional_conversion,[status(esa)],[f_6_2]) ).

cnf(f_6_4,plain,
    ( sdtpldt0(U_6,U_5) = sdtpldt0(U_5,U_6)
    | ~ aNaturalNumber0(U_5)
    | ~ aNaturalNumber0(U_6) ),
    inference(clausify,[status(thm)],[f_6_3]) ).

fof(f_7_1,plain,
    ! [W0,W1,W2] :
      ( sdtpldt0(sdtpldt0(W0,W1),W2) = sdtpldt0(W0,sdtpldt0(W1,W2))
      | ~ aNaturalNumber0(W2)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mAddAsso]) ).

fof(f_7_2,plain,
    ! [U_9,U_8,U_7] :
      ( sdtpldt0(sdtpldt0(U_9,U_8),U_7) = sdtpldt0(U_9,sdtpldt0(U_8,U_7))
      | ~ aNaturalNumber0(U_7)
      | ~ aNaturalNumber0(U_8)
      | ~ aNaturalNumber0(U_9) ),
    inference(variable_rename,[status(thm)],[f_7_1]) ).

fof(f_7_3,plain,
    ! [U_8,U_7,U_9] :
      ( sdtpldt0(sdtpldt0(U_9,U_8),U_7) = sdtpldt0(U_9,sdtpldt0(U_8,U_7))
      | ~ aNaturalNumber0(U_7)
      | ~ aNaturalNumber0(U_8)
      | ~ aNaturalNumber0(U_9) ),
    inference(definitional_conversion,[status(esa)],[f_7_2]) ).

cnf(f_7_4,plain,
    ( sdtpldt0(sdtpldt0(U_9,U_8),U_7) = sdtpldt0(U_9,sdtpldt0(U_8,U_7))
    | ~ aNaturalNumber0(U_7)
    | ~ aNaturalNumber0(U_8)
    | ~ aNaturalNumber0(U_9) ),
    inference(clausify,[status(thm)],[f_7_3]) ).

fof(f_8_1,plain,
    ! [W0] :
      ( ( W0 = sdtpldt0(sz00,W0)
        & sdtpldt0(W0,sz00) = W0 )
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[m_AddZero]) ).

fof(f_8_2,plain,
    ! [U_10] :
      ( ( U_10 = sdtpldt0(sz00,U_10)
        & sdtpldt0(U_10,sz00) = U_10 )
      | ~ aNaturalNumber0(U_10) ),
    inference(variable_rename,[status(thm)],[f_8_1]) ).

fof(f_8_3,plain,
    ( ! [U_10] :
        ( U_10 = sdtpldt0(sz00,U_10)
        | ~ sP0(U_10) )
    & ! [U_10] :
        ( sdtpldt0(U_10,sz00) = U_10
        | ~ sP0(U_10) )
    & ! [U_10] :
        ( sP0(U_10)
        | ~ aNaturalNumber0(U_10) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP0])],[f_8_2]) ).

cnf(f_8_4,plain,
    ( sP0(U_10)
    | ~ aNaturalNumber0(U_10) ),
    inference(clausify,[status(thm)],[f_8_3]) ).

cnf(f_8_5,plain,
    ( sdtpldt0(U_10,sz00) = U_10
    | ~ sP0(U_10) ),
    inference(clausify,[status(thm)],[f_8_3]) ).

cnf(f_8_6,plain,
    ( U_10 = sdtpldt0(sz00,U_10)
    | ~ sP0(U_10) ),
    inference(clausify,[status(thm)],[f_8_3]) ).

fof(f_9_1,plain,
    ! [W0,W1] :
      ( sdtasdt0(W0,W1) = sdtasdt0(W1,W0)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mMulComm]) ).

fof(f_9_2,plain,
    ! [U_12,U_11] :
      ( sdtasdt0(U_12,U_11) = sdtasdt0(U_11,U_12)
      | ~ aNaturalNumber0(U_11)
      | ~ aNaturalNumber0(U_12) ),
    inference(variable_rename,[status(thm)],[f_9_1]) ).

fof(f_9_3,plain,
    ! [U_11,U_12] :
      ( sdtasdt0(U_12,U_11) = sdtasdt0(U_11,U_12)
      | ~ aNaturalNumber0(U_11)
      | ~ aNaturalNumber0(U_12) ),
    inference(definitional_conversion,[status(esa)],[f_9_2]) ).

cnf(f_9_4,plain,
    ( sdtasdt0(U_12,U_11) = sdtasdt0(U_11,U_12)
    | ~ aNaturalNumber0(U_11)
    | ~ aNaturalNumber0(U_12) ),
    inference(clausify,[status(thm)],[f_9_3]) ).

fof(f_10_1,plain,
    ! [W0,W1,W2] :
      ( sdtasdt0(sdtasdt0(W0,W1),W2) = sdtasdt0(W0,sdtasdt0(W1,W2))
      | ~ aNaturalNumber0(W2)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mMulAsso]) ).

fof(f_10_2,plain,
    ! [U_15,U_14,U_13] :
      ( sdtasdt0(sdtasdt0(U_15,U_14),U_13) = sdtasdt0(U_15,sdtasdt0(U_14,U_13))
      | ~ aNaturalNumber0(U_13)
      | ~ aNaturalNumber0(U_14)
      | ~ aNaturalNumber0(U_15) ),
    inference(variable_rename,[status(thm)],[f_10_1]) ).

fof(f_10_3,plain,
    ! [U_15,U_14,U_13] :
      ( sdtasdt0(sdtasdt0(U_15,U_14),U_13) = sdtasdt0(U_15,sdtasdt0(U_14,U_13))
      | ~ aNaturalNumber0(U_13)
      | ~ aNaturalNumber0(U_14)
      | ~ aNaturalNumber0(U_15) ),
    inference(definitional_conversion,[status(esa)],[f_10_2]) ).

cnf(f_10_4,plain,
    ( sdtasdt0(sdtasdt0(U_15,U_14),U_13) = sdtasdt0(U_15,sdtasdt0(U_14,U_13))
    | ~ aNaturalNumber0(U_13)
    | ~ aNaturalNumber0(U_14)
    | ~ aNaturalNumber0(U_15) ),
    inference(clausify,[status(thm)],[f_10_3]) ).

fof(f_11_1,plain,
    ! [W0] :
      ( ( W0 = sdtasdt0(sz10,W0)
        & sdtasdt0(W0,sz10) = W0 )
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[m_MulUnit]) ).

fof(f_11_2,plain,
    ! [U_16] :
      ( ( U_16 = sdtasdt0(sz10,U_16)
        & sdtasdt0(U_16,sz10) = U_16 )
      | ~ aNaturalNumber0(U_16) ),
    inference(variable_rename,[status(thm)],[f_11_1]) ).

fof(f_11_3,plain,
    ( ! [U_16] :
        ( U_16 = sdtasdt0(sz10,U_16)
        | ~ sP1(U_16) )
    & ! [U_16] :
        ( sdtasdt0(U_16,sz10) = U_16
        | ~ sP1(U_16) )
    & ! [U_16] :
        ( sP1(U_16)
        | ~ aNaturalNumber0(U_16) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP1])],[f_11_2]) ).

cnf(f_11_4,plain,
    ( sP1(U_16)
    | ~ aNaturalNumber0(U_16) ),
    inference(clausify,[status(thm)],[f_11_3]) ).

cnf(f_11_5,plain,
    ( sdtasdt0(U_16,sz10) = U_16
    | ~ sP1(U_16) ),
    inference(clausify,[status(thm)],[f_11_3]) ).

cnf(f_11_6,plain,
    ( U_16 = sdtasdt0(sz10,U_16)
    | ~ sP1(U_16) ),
    inference(clausify,[status(thm)],[f_11_3]) ).

fof(f_12_1,plain,
    ! [W0] :
      ( ( sz00 = sdtasdt0(sz00,W0)
        & sdtasdt0(W0,sz00) = sz00 )
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[m_MulZero]) ).

fof(f_12_2,plain,
    ! [U_17] :
      ( ( sz00 = sdtasdt0(sz00,U_17)
        & sdtasdt0(U_17,sz00) = sz00 )
      | ~ aNaturalNumber0(U_17) ),
    inference(variable_rename,[status(thm)],[f_12_1]) ).

fof(f_12_3,plain,
    ( ! [U_17] :
        ( sz00 = sdtasdt0(sz00,U_17)
        | ~ sP2(U_17) )
    & ! [U_17] :
        ( sdtasdt0(U_17,sz00) = sz00
        | ~ sP2(U_17) )
    & ! [U_17] :
        ( sP2(U_17)
        | ~ aNaturalNumber0(U_17) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP2])],[f_12_2]) ).

cnf(f_12_4,plain,
    ( sP2(U_17)
    | ~ aNaturalNumber0(U_17) ),
    inference(clausify,[status(thm)],[f_12_3]) ).

cnf(f_12_5,plain,
    ( sdtasdt0(U_17,sz00) = sz00
    | ~ sP2(U_17) ),
    inference(clausify,[status(thm)],[f_12_3]) ).

cnf(f_12_6,plain,
    ( sz00 = sdtasdt0(sz00,U_17)
    | ~ sP2(U_17) ),
    inference(clausify,[status(thm)],[f_12_3]) ).

fof(f_13_1,plain,
    ! [W0,W1,W2] :
      ( ( sdtasdt0(sdtpldt0(W1,W2),W0) = sdtpldt0(sdtasdt0(W1,W0),sdtasdt0(W2,W0))
        & sdtasdt0(W0,sdtpldt0(W1,W2)) = sdtpldt0(sdtasdt0(W0,W1),sdtasdt0(W0,W2)) )
      | ~ aNaturalNumber0(W2)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mAMDistr]) ).

fof(f_13_2,plain,
    ! [U_20,U_19,U_18] :
      ( ( sdtasdt0(sdtpldt0(U_19,U_18),U_20) = sdtpldt0(sdtasdt0(U_19,U_20),sdtasdt0(U_18,U_20))
        & sdtasdt0(U_20,sdtpldt0(U_19,U_18)) = sdtpldt0(sdtasdt0(U_20,U_19),sdtasdt0(U_20,U_18)) )
      | ~ aNaturalNumber0(U_18)
      | ~ aNaturalNumber0(U_19)
      | ~ aNaturalNumber0(U_20) ),
    inference(variable_rename,[status(thm)],[f_13_1]) ).

fof(f_13_3,plain,
    ( ! [U_18,U_19,U_20] :
        ( sdtasdt0(sdtpldt0(U_19,U_18),U_20) = sdtpldt0(sdtasdt0(U_19,U_20),sdtasdt0(U_18,U_20))
        | ~ sP3(U_18,U_19,U_20) )
    & ! [U_18,U_19,U_20] :
        ( sdtasdt0(U_20,sdtpldt0(U_19,U_18)) = sdtpldt0(sdtasdt0(U_20,U_19),sdtasdt0(U_20,U_18))
        | ~ sP3(U_18,U_19,U_20) )
    & ! [U_18,U_19,U_20] :
        ( sP3(U_18,U_19,U_20)
        | ~ aNaturalNumber0(U_18)
        | ~ aNaturalNumber0(U_19)
        | ~ aNaturalNumber0(U_20) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP3])],[f_13_2]) ).

cnf(f_13_4,plain,
    ( sP3(U_18,U_19,U_20)
    | ~ aNaturalNumber0(U_18)
    | ~ aNaturalNumber0(U_19)
    | ~ aNaturalNumber0(U_20) ),
    inference(clausify,[status(thm)],[f_13_3]) ).

cnf(f_13_5,plain,
    ( sdtasdt0(U_20,sdtpldt0(U_19,U_18)) = sdtpldt0(sdtasdt0(U_20,U_19),sdtasdt0(U_20,U_18))
    | ~ sP3(U_18,U_19,U_20) ),
    inference(clausify,[status(thm)],[f_13_3]) ).

cnf(f_13_6,plain,
    ( sdtasdt0(sdtpldt0(U_19,U_18),U_20) = sdtpldt0(sdtasdt0(U_19,U_20),sdtasdt0(U_18,U_20))
    | ~ sP3(U_18,U_19,U_20) ),
    inference(clausify,[status(thm)],[f_13_3]) ).

fof(f_14_1,plain,
    ! [W0,W1,W2] :
      ( W1 = W2
      | ( sdtpldt0(W1,W0) != sdtpldt0(W2,W0)
        & sdtpldt0(W0,W1) != sdtpldt0(W0,W2) )
      | ~ aNaturalNumber0(W2)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mAddCanc]) ).

fof(f_14_2,plain,
    ! [U_23,U_22,U_21] :
      ( U_22 = U_21
      | ( sdtpldt0(U_22,U_23) != sdtpldt0(U_21,U_23)
        & sdtpldt0(U_23,U_22) != sdtpldt0(U_23,U_21) )
      | ~ aNaturalNumber0(U_21)
      | ~ aNaturalNumber0(U_22)
      | ~ aNaturalNumber0(U_23) ),
    inference(variable_rename,[status(thm)],[f_14_1]) ).

fof(f_14_3,plain,
    ( ! [U_23,U_22,U_21] :
        ( sdtpldt0(U_22,U_23) != sdtpldt0(U_21,U_23)
        | ~ sP4(U_23,U_22,U_21) )
    & ! [U_23,U_22,U_21] :
        ( sdtpldt0(U_23,U_22) != sdtpldt0(U_23,U_21)
        | ~ sP4(U_23,U_22,U_21) )
    & ! [U_23,U_22,U_21] :
        ( U_22 = U_21
        | sP4(U_23,U_22,U_21)
        | ~ aNaturalNumber0(U_21)
        | ~ aNaturalNumber0(U_22)
        | ~ aNaturalNumber0(U_23) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP4])],[f_14_2]) ).

cnf(f_14_4,plain,
    ( U_22 = U_21
    | sP4(U_23,U_22,U_21)
    | ~ aNaturalNumber0(U_21)
    | ~ aNaturalNumber0(U_22)
    | ~ aNaturalNumber0(U_23) ),
    inference(clausify,[status(thm)],[f_14_3]) ).

cnf(f_14_5,plain,
    ( sdtpldt0(U_23,U_22) != sdtpldt0(U_23,U_21)
    | ~ sP4(U_23,U_22,U_21) ),
    inference(clausify,[status(thm)],[f_14_3]) ).

cnf(f_14_6,plain,
    ( sdtpldt0(U_22,U_23) != sdtpldt0(U_21,U_23)
    | ~ sP4(U_23,U_22,U_21) ),
    inference(clausify,[status(thm)],[f_14_3]) ).

fof(f_15_1,plain,
    ! [W0] :
      ( ! [W1,W2] :
          ( W1 = W2
          | ( sdtasdt0(W1,W0) != sdtasdt0(W2,W0)
            & sdtasdt0(W0,W1) != sdtasdt0(W0,W2) )
          | ~ aNaturalNumber0(W2)
          | ~ aNaturalNumber0(W1) )
      | W0 = sz00
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mMulCanc]) ).

fof(f_15_2,plain,
    ! [U_26] :
      ( ! [U_25,U_24] :
          ( U_25 = U_24
          | ( sdtasdt0(U_25,U_26) != sdtasdt0(U_24,U_26)
            & sdtasdt0(U_26,U_25) != sdtasdt0(U_26,U_24) )
          | ~ aNaturalNumber0(U_24)
          | ~ aNaturalNumber0(U_25) )
      | U_26 = sz00
      | ~ aNaturalNumber0(U_26) ),
    inference(variable_rename,[status(thm)],[f_15_1]) ).

fof(f_15_3,plain,
    ( ! [U_26,U_24,U_25] :
        ( sdtasdt0(U_25,U_26) != sdtasdt0(U_24,U_26)
        | ~ sP5(U_26,U_24,U_25) )
    & ! [U_26,U_24,U_25] :
        ( sdtasdt0(U_26,U_25) != sdtasdt0(U_26,U_24)
        | ~ sP5(U_26,U_24,U_25) )
    & ! [U_26,U_24,U_25] :
        ( U_25 = U_24
        | sP5(U_26,U_24,U_25)
        | ~ aNaturalNumber0(U_24)
        | ~ aNaturalNumber0(U_25)
        | U_26 = sz00
        | ~ aNaturalNumber0(U_26) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP5])],[f_15_2]) ).

cnf(f_15_4,plain,
    ( U_25 = U_24
    | sP5(U_26,U_24,U_25)
    | ~ aNaturalNumber0(U_24)
    | ~ aNaturalNumber0(U_25)
    | U_26 = sz00
    | ~ aNaturalNumber0(U_26) ),
    inference(clausify,[status(thm)],[f_15_3]) ).

cnf(f_15_5,plain,
    ( sdtasdt0(U_26,U_25) != sdtasdt0(U_26,U_24)
    | ~ sP5(U_26,U_24,U_25) ),
    inference(clausify,[status(thm)],[f_15_3]) ).

cnf(f_15_6,plain,
    ( sdtasdt0(U_25,U_26) != sdtasdt0(U_24,U_26)
    | ~ sP5(U_26,U_24,U_25) ),
    inference(clausify,[status(thm)],[f_15_3]) ).

fof(f_16_1,plain,
    ! [W0,W1] :
      ( ( W1 = sz00
        & W0 = sz00 )
      | sdtpldt0(W0,W1) != sz00
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mZeroAdd]) ).

fof(f_16_2,plain,
    ! [U_28,U_27] :
      ( ( U_27 = sz00
        & U_28 = sz00 )
      | sdtpldt0(U_28,U_27) != sz00
      | ~ aNaturalNumber0(U_27)
      | ~ aNaturalNumber0(U_28) ),
    inference(variable_rename,[status(thm)],[f_16_1]) ).

fof(f_16_3,plain,
    ( ! [U_28,U_27] :
        ( U_27 = sz00
        | ~ sP6(U_28,U_27) )
    & ! [U_28,U_27] :
        ( U_28 = sz00
        | ~ sP6(U_28,U_27) )
    & ! [U_28,U_27] :
        ( sP6(U_28,U_27)
        | sdtpldt0(U_28,U_27) != sz00
        | ~ aNaturalNumber0(U_27)
        | ~ aNaturalNumber0(U_28) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP6])],[f_16_2]) ).

cnf(f_16_4,plain,
    ( sP6(U_28,U_27)
    | sdtpldt0(U_28,U_27) != sz00
    | ~ aNaturalNumber0(U_27)
    | ~ aNaturalNumber0(U_28) ),
    inference(clausify,[status(thm)],[f_16_3]) ).

cnf(f_16_5,plain,
    ( U_28 = sz00
    | ~ sP6(U_28,U_27) ),
    inference(clausify,[status(thm)],[f_16_3]) ).

cnf(f_16_6,plain,
    ( U_27 = sz00
    | ~ sP6(U_28,U_27) ),
    inference(clausify,[status(thm)],[f_16_3]) ).

fof(f_17_1,plain,
    ! [W0,W1] :
      ( W1 = sz00
      | W0 = sz00
      | sdtasdt0(W0,W1) != sz00
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mZeroMul]) ).

fof(f_17_2,plain,
    ! [U_30,U_29] :
      ( U_29 = sz00
      | U_30 = sz00
      | sdtasdt0(U_30,U_29) != sz00
      | ~ aNaturalNumber0(U_29)
      | ~ aNaturalNumber0(U_30) ),
    inference(variable_rename,[status(thm)],[f_17_1]) ).

fof(f_17_3,plain,
    ! [U_30,U_29] :
      ( U_29 = sz00
      | U_30 = sz00
      | sdtasdt0(U_30,U_29) != sz00
      | ~ aNaturalNumber0(U_29)
      | ~ aNaturalNumber0(U_30) ),
    inference(definitional_conversion,[status(esa)],[f_17_2]) ).

cnf(f_17_4,plain,
    ( U_29 = sz00
    | U_30 = sz00
    | sdtasdt0(U_30,U_29) != sz00
    | ~ aNaturalNumber0(U_29)
    | ~ aNaturalNumber0(U_30) ),
    inference(clausify,[status(thm)],[f_17_3]) ).

fof(f_18_1,plain,
    ! [W0,W1] :
      ( ( ( sdtlseqdt0(W0,W1)
          | ! [W2] :
              ( sdtpldt0(W0,W2) != W1
              | ~ aNaturalNumber0(W2) ) )
        & ( ? [W2] :
              ( sdtpldt0(W0,W2) = W1
              & aNaturalNumber0(W2) )
          | ~ sdtlseqdt0(W0,W1) ) )
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mDefLE]) ).

fof(f_18_2,plain,
    ! [U_34,U_33] :
      ( ( ( sdtlseqdt0(U_34,U_33)
          | ! [U_32] :
              ( sdtpldt0(U_34,U_32) != U_33
              | ~ aNaturalNumber0(U_32) ) )
        & ( ? [U_31] :
              ( sdtpldt0(U_34,U_31) = U_33
              & aNaturalNumber0(U_31) )
          | ~ sdtlseqdt0(U_34,U_33) ) )
      | ~ aNaturalNumber0(U_33)
      | ~ aNaturalNumber0(U_34) ),
    inference(variable_rename,[status(thm)],[f_18_1]) ).

fof(f_18_3,plain,
    ! [U_34,U_33] :
      ( ( ( sdtlseqdt0(U_34,U_33)
          | ! [U_32] :
              ( sdtpldt0(U_34,U_32) != U_33
              | ~ aNaturalNumber0(U_32) ) )
        & ( ( sdtpldt0(U_34,sK1(U_34,U_33)) = U_33
            & aNaturalNumber0(sK1(U_34,U_33)) )
          | ~ sdtlseqdt0(U_34,U_33) ) )
      | ~ aNaturalNumber0(U_33)
      | ~ aNaturalNumber0(U_34) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK1]),skolemize(U_31,sK1(U_34,U_33))],[f_18_2]) ).

fof(f_18_4,plain,
    ( ! [U_34,U_33] :
        ( sdtpldt0(U_34,sK1(U_34,U_33)) = U_33
        | ~ sP7(U_34,U_33) )
    & ! [U_34,U_33] :
        ( aNaturalNumber0(sK1(U_34,U_33))
        | ~ sP7(U_34,U_33) )
    & ! [U_34,U_33,U_32] :
        ( sdtlseqdt0(U_34,U_33)
        | sdtpldt0(U_34,U_32) != U_33
        | ~ aNaturalNumber0(U_32)
        | ~ sP8(U_34,U_33,U_32) )
    & ! [U_34,U_33,U_32] :
        ( sP7(U_34,U_33)
        | ~ sdtlseqdt0(U_34,U_33)
        | ~ sP8(U_34,U_33,U_32) )
    & ! [U_34,U_33,U_32] :
        ( sP8(U_34,U_33,U_32)
        | ~ aNaturalNumber0(U_33)
        | ~ aNaturalNumber0(U_34) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP7,sP8])],[f_18_3]) ).

cnf(f_18_5,plain,
    ( sP8(U_34,U_33,U_32)
    | ~ aNaturalNumber0(U_33)
    | ~ aNaturalNumber0(U_34) ),
    inference(clausify,[status(thm)],[f_18_4]) ).

cnf(f_18_6,plain,
    ( sP7(U_34,U_33)
    | ~ sdtlseqdt0(U_34,U_33)
    | ~ sP8(U_34,U_33,U_32) ),
    inference(clausify,[status(thm)],[f_18_4]) ).

cnf(f_18_7,plain,
    ( sdtlseqdt0(U_34,U_33)
    | sdtpldt0(U_34,U_32) != U_33
    | ~ aNaturalNumber0(U_32)
    | ~ sP8(U_34,U_33,U_32) ),
    inference(clausify,[status(thm)],[f_18_4]) ).

cnf(f_18_8,plain,
    ( aNaturalNumber0(sK1(U_34,U_33))
    | ~ sP7(U_34,U_33) ),
    inference(clausify,[status(thm)],[f_18_4]) ).

cnf(f_18_9,plain,
    ( sdtpldt0(U_34,sK1(U_34,U_33)) = U_33
    | ~ sP7(U_34,U_33) ),
    inference(clausify,[status(thm)],[f_18_4]) ).

fof(f_19_1,plain,
    ! [W0,W1] :
      ( ! [W2] :
          ( ( W2 = sdtmndt0(W1,W0)
            | sdtpldt0(W0,W2) != W1
            | ~ aNaturalNumber0(W2) )
          & ( ( sdtpldt0(W0,W2) = W1
              & aNaturalNumber0(W2) )
            | W2 != sdtmndt0(W1,W0) ) )
      | ~ sdtlseqdt0(W0,W1)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mDefDiff]) ).

fof(f_19_2,plain,
    ! [U_37,U_36] :
      ( ! [U_35] :
          ( ( U_35 = sdtmndt0(U_36,U_37)
            | sdtpldt0(U_37,U_35) != U_36
            | ~ aNaturalNumber0(U_35) )
          & ( ( sdtpldt0(U_37,U_35) = U_36
              & aNaturalNumber0(U_35) )
            | U_35 != sdtmndt0(U_36,U_37) ) )
      | ~ sdtlseqdt0(U_37,U_36)
      | ~ aNaturalNumber0(U_36)
      | ~ aNaturalNumber0(U_37) ),
    inference(variable_rename,[status(thm)],[f_19_1]) ).

fof(f_19_3,plain,
    ! [U_37,U_36] :
      ( ( ! [U_39] :
            ( U_39 = sdtmndt0(U_36,U_37)
            | sdtpldt0(U_37,U_39) != U_36
            | ~ aNaturalNumber0(U_39) )
        & ! [U_38] :
            ( ( sdtpldt0(U_37,U_38) = U_36
              & aNaturalNumber0(U_38) )
            | U_38 != sdtmndt0(U_36,U_37) ) )
      | ~ sdtlseqdt0(U_37,U_36)
      | ~ aNaturalNumber0(U_36)
      | ~ aNaturalNumber0(U_37) ),
    inference(miniscope,[status(thm)],[f_19_2]) ).

fof(f_19_4,plain,
    ( ! [U_36,U_37,U_38] :
        ( sdtpldt0(U_37,U_38) = U_36
        | ~ sP9(U_36,U_37,U_38) )
    & ! [U_36,U_37,U_38] :
        ( aNaturalNumber0(U_38)
        | ~ sP9(U_36,U_37,U_38) )
    & ! [U_36,U_37,U_39,U_38] :
        ( U_39 = sdtmndt0(U_36,U_37)
        | sdtpldt0(U_37,U_39) != U_36
        | ~ aNaturalNumber0(U_39)
        | ~ sP10(U_36,U_37,U_39,U_38) )
    & ! [U_36,U_37,U_39,U_38] :
        ( sP9(U_36,U_37,U_38)
        | U_38 != sdtmndt0(U_36,U_37)
        | ~ sP10(U_36,U_37,U_39,U_38) )
    & ! [U_36,U_37,U_39,U_38] :
        ( sP10(U_36,U_37,U_39,U_38)
        | ~ sdtlseqdt0(U_37,U_36)
        | ~ aNaturalNumber0(U_36)
        | ~ aNaturalNumber0(U_37) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP9,sP10])],[f_19_3]) ).

cnf(f_19_5,plain,
    ( sP10(U_36,U_37,U_39,U_38)
    | ~ sdtlseqdt0(U_37,U_36)
    | ~ aNaturalNumber0(U_36)
    | ~ aNaturalNumber0(U_37) ),
    inference(clausify,[status(thm)],[f_19_4]) ).

cnf(f_19_6,plain,
    ( sP9(U_36,U_37,U_38)
    | U_38 != sdtmndt0(U_36,U_37)
    | ~ sP10(U_36,U_37,U_39,U_38) ),
    inference(clausify,[status(thm)],[f_19_4]) ).

cnf(f_19_7,plain,
    ( U_39 = sdtmndt0(U_36,U_37)
    | sdtpldt0(U_37,U_39) != U_36
    | ~ aNaturalNumber0(U_39)
    | ~ sP10(U_36,U_37,U_39,U_38) ),
    inference(clausify,[status(thm)],[f_19_4]) ).

cnf(f_19_8,plain,
    ( aNaturalNumber0(U_38)
    | ~ sP9(U_36,U_37,U_38) ),
    inference(clausify,[status(thm)],[f_19_4]) ).

cnf(f_19_9,plain,
    ( sdtpldt0(U_37,U_38) = U_36
    | ~ sP9(U_36,U_37,U_38) ),
    inference(clausify,[status(thm)],[f_19_4]) ).

fof(f_20_1,plain,
    ! [W0] :
      ( sdtlseqdt0(W0,W0)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mLERefl]) ).

fof(f_20_2,plain,
    ! [U_40] :
      ( sdtlseqdt0(U_40,U_40)
      | ~ aNaturalNumber0(U_40) ),
    inference(variable_rename,[status(thm)],[f_20_1]) ).

fof(f_20_3,plain,
    ! [U_40] :
      ( sdtlseqdt0(U_40,U_40)
      | ~ aNaturalNumber0(U_40) ),
    inference(definitional_conversion,[status(esa)],[f_20_2]) ).

cnf(f_20_4,plain,
    ( sdtlseqdt0(U_40,U_40)
    | ~ aNaturalNumber0(U_40) ),
    inference(clausify,[status(thm)],[f_20_3]) ).

fof(f_21_1,plain,
    ! [W0,W1] :
      ( W0 = W1
      | ~ sdtlseqdt0(W1,W0)
      | ~ sdtlseqdt0(W0,W1)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mLEAsym]) ).

fof(f_21_2,plain,
    ! [U_42,U_41] :
      ( U_42 = U_41
      | ~ sdtlseqdt0(U_41,U_42)
      | ~ sdtlseqdt0(U_42,U_41)
      | ~ aNaturalNumber0(U_41)
      | ~ aNaturalNumber0(U_42) ),
    inference(variable_rename,[status(thm)],[f_21_1]) ).

fof(f_21_3,plain,
    ! [U_42,U_41] :
      ( U_42 = U_41
      | ~ sdtlseqdt0(U_41,U_42)
      | ~ sdtlseqdt0(U_42,U_41)
      | ~ aNaturalNumber0(U_41)
      | ~ aNaturalNumber0(U_42) ),
    inference(definitional_conversion,[status(esa)],[f_21_2]) ).

cnf(f_21_4,plain,
    ( U_42 = U_41
    | ~ sdtlseqdt0(U_41,U_42)
    | ~ sdtlseqdt0(U_42,U_41)
    | ~ aNaturalNumber0(U_41)
    | ~ aNaturalNumber0(U_42) ),
    inference(clausify,[status(thm)],[f_21_3]) ).

fof(f_22_1,plain,
    ! [W0,W1,W2] :
      ( sdtlseqdt0(W0,W2)
      | ~ sdtlseqdt0(W1,W2)
      | ~ sdtlseqdt0(W0,W1)
      | ~ aNaturalNumber0(W2)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mLETran]) ).

fof(f_22_2,plain,
    ! [U_45,U_44,U_43] :
      ( sdtlseqdt0(U_45,U_43)
      | ~ sdtlseqdt0(U_44,U_43)
      | ~ sdtlseqdt0(U_45,U_44)
      | ~ aNaturalNumber0(U_43)
      | ~ aNaturalNumber0(U_44)
      | ~ aNaturalNumber0(U_45) ),
    inference(variable_rename,[status(thm)],[f_22_1]) ).

fof(f_22_3,plain,
    ! [U_43,U_45,U_44] :
      ( sdtlseqdt0(U_45,U_43)
      | ~ sdtlseqdt0(U_44,U_43)
      | ~ sdtlseqdt0(U_45,U_44)
      | ~ aNaturalNumber0(U_43)
      | ~ aNaturalNumber0(U_44)
      | ~ aNaturalNumber0(U_45) ),
    inference(definitional_conversion,[status(esa)],[f_22_2]) ).

cnf(f_22_4,plain,
    ( sdtlseqdt0(U_45,U_43)
    | ~ sdtlseqdt0(U_44,U_43)
    | ~ sdtlseqdt0(U_45,U_44)
    | ~ aNaturalNumber0(U_43)
    | ~ aNaturalNumber0(U_44)
    | ~ aNaturalNumber0(U_45) ),
    inference(clausify,[status(thm)],[f_22_3]) ).

fof(f_23_1,plain,
    ! [W0,W1] :
      ( ( sdtlseqdt0(W1,W0)
        & W1 != W0 )
      | sdtlseqdt0(W0,W1)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mLETotal]) ).

fof(f_23_2,plain,
    ! [U_47,U_46] :
      ( ( sdtlseqdt0(U_46,U_47)
        & U_46 != U_47 )
      | sdtlseqdt0(U_47,U_46)
      | ~ aNaturalNumber0(U_46)
      | ~ aNaturalNumber0(U_47) ),
    inference(variable_rename,[status(thm)],[f_23_1]) ).

fof(f_23_3,plain,
    ( ! [U_47,U_46] :
        ( sdtlseqdt0(U_46,U_47)
        | ~ sP11(U_47,U_46) )
    & ! [U_47,U_46] :
        ( U_46 != U_47
        | ~ sP11(U_47,U_46) )
    & ! [U_47,U_46] :
        ( sP11(U_47,U_46)
        | sdtlseqdt0(U_47,U_46)
        | ~ aNaturalNumber0(U_46)
        | ~ aNaturalNumber0(U_47) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP11])],[f_23_2]) ).

cnf(f_23_4,plain,
    ( sP11(U_47,U_46)
    | sdtlseqdt0(U_47,U_46)
    | ~ aNaturalNumber0(U_46)
    | ~ aNaturalNumber0(U_47) ),
    inference(clausify,[status(thm)],[f_23_3]) ).

cnf(f_23_5,plain,
    ( U_46 != U_47
    | ~ sP11(U_47,U_46) ),
    inference(clausify,[status(thm)],[f_23_3]) ).

cnf(f_23_6,plain,
    ( sdtlseqdt0(U_46,U_47)
    | ~ sP11(U_47,U_46) ),
    inference(clausify,[status(thm)],[f_23_3]) ).

fof(f_24_1,plain,
    ! [W0,W1] :
      ( ! [W2] :
          ( ( sdtlseqdt0(sdtpldt0(W0,W2),sdtpldt0(W1,W2))
            & sdtpldt0(W0,W2) != sdtpldt0(W1,W2)
            & sdtlseqdt0(sdtpldt0(W2,W0),sdtpldt0(W2,W1))
            & sdtpldt0(W2,W0) != sdtpldt0(W2,W1) )
          | ~ aNaturalNumber0(W2) )
      | ~ sdtlseqdt0(W0,W1)
      | W0 = W1
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mMonAdd]) ).

fof(f_24_2,plain,
    ! [U_50,U_49] :
      ( ! [U_48] :
          ( ( sdtlseqdt0(sdtpldt0(U_50,U_48),sdtpldt0(U_49,U_48))
            & sdtpldt0(U_50,U_48) != sdtpldt0(U_49,U_48)
            & sdtlseqdt0(sdtpldt0(U_48,U_50),sdtpldt0(U_48,U_49))
            & sdtpldt0(U_48,U_50) != sdtpldt0(U_48,U_49) )
          | ~ aNaturalNumber0(U_48) )
      | ~ sdtlseqdt0(U_50,U_49)
      | U_50 = U_49
      | ~ aNaturalNumber0(U_49)
      | ~ aNaturalNumber0(U_50) ),
    inference(variable_rename,[status(thm)],[f_24_1]) ).

fof(f_24_3,plain,
    ( ! [U_48,U_49,U_50] :
        ( sdtlseqdt0(sdtpldt0(U_50,U_48),sdtpldt0(U_49,U_48))
        | ~ sP12(U_48,U_49,U_50) )
    & ! [U_48,U_49,U_50] :
        ( sdtpldt0(U_50,U_48) != sdtpldt0(U_49,U_48)
        | ~ sP12(U_48,U_49,U_50) )
    & ! [U_48,U_49,U_50] :
        ( sdtlseqdt0(sdtpldt0(U_48,U_50),sdtpldt0(U_48,U_49))
        | ~ sP12(U_48,U_49,U_50) )
    & ! [U_48,U_49,U_50] :
        ( sdtpldt0(U_48,U_50) != sdtpldt0(U_48,U_49)
        | ~ sP12(U_48,U_49,U_50) )
    & ! [U_48,U_49,U_50] :
        ( sP12(U_48,U_49,U_50)
        | ~ aNaturalNumber0(U_48)
        | ~ sdtlseqdt0(U_50,U_49)
        | U_50 = U_49
        | ~ aNaturalNumber0(U_49)
        | ~ aNaturalNumber0(U_50) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP12])],[f_24_2]) ).

cnf(f_24_4,plain,
    ( sP12(U_48,U_49,U_50)
    | ~ aNaturalNumber0(U_48)
    | ~ sdtlseqdt0(U_50,U_49)
    | U_50 = U_49
    | ~ aNaturalNumber0(U_49)
    | ~ aNaturalNumber0(U_50) ),
    inference(clausify,[status(thm)],[f_24_3]) ).

cnf(f_24_5,plain,
    ( sdtpldt0(U_48,U_50) != sdtpldt0(U_48,U_49)
    | ~ sP12(U_48,U_49,U_50) ),
    inference(clausify,[status(thm)],[f_24_3]) ).

cnf(f_24_6,plain,
    ( sdtlseqdt0(sdtpldt0(U_48,U_50),sdtpldt0(U_48,U_49))
    | ~ sP12(U_48,U_49,U_50) ),
    inference(clausify,[status(thm)],[f_24_3]) ).

cnf(f_24_7,plain,
    ( sdtpldt0(U_50,U_48) != sdtpldt0(U_49,U_48)
    | ~ sP12(U_48,U_49,U_50) ),
    inference(clausify,[status(thm)],[f_24_3]) ).

cnf(f_24_8,plain,
    ( sdtlseqdt0(sdtpldt0(U_50,U_48),sdtpldt0(U_49,U_48))
    | ~ sP12(U_48,U_49,U_50) ),
    inference(clausify,[status(thm)],[f_24_3]) ).

fof(f_25_1,plain,
    ! [W0,W1,W2] :
      ( ( sdtlseqdt0(sdtasdt0(W1,W0),sdtasdt0(W2,W0))
        & sdtasdt0(W1,W0) != sdtasdt0(W2,W0)
        & sdtlseqdt0(sdtasdt0(W0,W1),sdtasdt0(W0,W2))
        & sdtasdt0(W0,W1) != sdtasdt0(W0,W2) )
      | ~ sdtlseqdt0(W1,W2)
      | W1 = W2
      | W0 = sz00
      | ~ aNaturalNumber0(W2)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mMonMul]) ).

fof(f_25_2,plain,
    ! [U_53,U_52,U_51] :
      ( ( sdtlseqdt0(sdtasdt0(U_52,U_53),sdtasdt0(U_51,U_53))
        & sdtasdt0(U_52,U_53) != sdtasdt0(U_51,U_53)
        & sdtlseqdt0(sdtasdt0(U_53,U_52),sdtasdt0(U_53,U_51))
        & sdtasdt0(U_53,U_52) != sdtasdt0(U_53,U_51) )
      | ~ sdtlseqdt0(U_52,U_51)
      | U_52 = U_51
      | U_53 = sz00
      | ~ aNaturalNumber0(U_51)
      | ~ aNaturalNumber0(U_52)
      | ~ aNaturalNumber0(U_53) ),
    inference(variable_rename,[status(thm)],[f_25_1]) ).

fof(f_25_3,plain,
    ( ! [U_53,U_52,U_51] :
        ( sdtlseqdt0(sdtasdt0(U_52,U_53),sdtasdt0(U_51,U_53))
        | ~ sP13(U_53,U_52,U_51) )
    & ! [U_53,U_52,U_51] :
        ( sdtasdt0(U_52,U_53) != sdtasdt0(U_51,U_53)
        | ~ sP13(U_53,U_52,U_51) )
    & ! [U_53,U_52,U_51] :
        ( sdtlseqdt0(sdtasdt0(U_53,U_52),sdtasdt0(U_53,U_51))
        | ~ sP13(U_53,U_52,U_51) )
    & ! [U_53,U_52,U_51] :
        ( sdtasdt0(U_53,U_52) != sdtasdt0(U_53,U_51)
        | ~ sP13(U_53,U_52,U_51) )
    & ! [U_53,U_52,U_51] :
        ( sP13(U_53,U_52,U_51)
        | ~ sdtlseqdt0(U_52,U_51)
        | U_52 = U_51
        | U_53 = sz00
        | ~ aNaturalNumber0(U_51)
        | ~ aNaturalNumber0(U_52)
        | ~ aNaturalNumber0(U_53) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP13])],[f_25_2]) ).

cnf(f_25_4,plain,
    ( sP13(U_53,U_52,U_51)
    | ~ sdtlseqdt0(U_52,U_51)
    | U_52 = U_51
    | U_53 = sz00
    | ~ aNaturalNumber0(U_51)
    | ~ aNaturalNumber0(U_52)
    | ~ aNaturalNumber0(U_53) ),
    inference(clausify,[status(thm)],[f_25_3]) ).

cnf(f_25_5,plain,
    ( sdtasdt0(U_53,U_52) != sdtasdt0(U_53,U_51)
    | ~ sP13(U_53,U_52,U_51) ),
    inference(clausify,[status(thm)],[f_25_3]) ).

cnf(f_25_6,plain,
    ( sdtlseqdt0(sdtasdt0(U_53,U_52),sdtasdt0(U_53,U_51))
    | ~ sP13(U_53,U_52,U_51) ),
    inference(clausify,[status(thm)],[f_25_3]) ).

cnf(f_25_7,plain,
    ( sdtasdt0(U_52,U_53) != sdtasdt0(U_51,U_53)
    | ~ sP13(U_53,U_52,U_51) ),
    inference(clausify,[status(thm)],[f_25_3]) ).

cnf(f_25_8,plain,
    ( sdtlseqdt0(sdtasdt0(U_52,U_53),sdtasdt0(U_51,U_53))
    | ~ sP13(U_53,U_52,U_51) ),
    inference(clausify,[status(thm)],[f_25_3]) ).

fof(f_26_1,plain,
    ! [W0] :
      ( ( sdtlseqdt0(sz10,W0)
        & sz10 != W0 )
      | W0 = sz10
      | W0 = sz00
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mLENTr]) ).

fof(f_26_2,plain,
    ! [U_54] :
      ( ( sdtlseqdt0(sz10,U_54)
        & sz10 != U_54 )
      | U_54 = sz10
      | U_54 = sz00
      | ~ aNaturalNumber0(U_54) ),
    inference(variable_rename,[status(thm)],[f_26_1]) ).

fof(f_26_3,plain,
    ( ! [U_54] :
        ( sdtlseqdt0(sz10,U_54)
        | ~ sP14(U_54) )
    & ! [U_54] :
        ( sz10 != U_54
        | ~ sP14(U_54) )
    & ! [U_54] :
        ( sP14(U_54)
        | U_54 = sz10
        | U_54 = sz00
        | ~ aNaturalNumber0(U_54) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP14])],[f_26_2]) ).

cnf(f_26_4,plain,
    ( sP14(U_54)
    | U_54 = sz10
    | U_54 = sz00
    | ~ aNaturalNumber0(U_54) ),
    inference(clausify,[status(thm)],[f_26_3]) ).

cnf(f_26_5,plain,
    ( sz10 != U_54
    | ~ sP14(U_54) ),
    inference(clausify,[status(thm)],[f_26_3]) ).

cnf(f_26_6,plain,
    ( sdtlseqdt0(sz10,U_54)
    | ~ sP14(U_54) ),
    inference(clausify,[status(thm)],[f_26_3]) ).

fof(f_27_1,plain,
    ! [W0,W1] :
      ( sdtlseqdt0(W1,sdtasdt0(W1,W0))
      | W0 = sz00
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mMonMul2]) ).

fof(f_27_2,plain,
    ! [U_56,U_55] :
      ( sdtlseqdt0(U_55,sdtasdt0(U_55,U_56))
      | U_56 = sz00
      | ~ aNaturalNumber0(U_55)
      | ~ aNaturalNumber0(U_56) ),
    inference(variable_rename,[status(thm)],[f_27_1]) ).

fof(f_27_3,plain,
    ! [U_55,U_56] :
      ( sdtlseqdt0(U_55,sdtasdt0(U_55,U_56))
      | U_56 = sz00
      | ~ aNaturalNumber0(U_55)
      | ~ aNaturalNumber0(U_56) ),
    inference(definitional_conversion,[status(esa)],[f_27_2]) ).

cnf(f_27_4,plain,
    ( sdtlseqdt0(U_55,sdtasdt0(U_55,U_56))
    | U_56 = sz00
    | ~ aNaturalNumber0(U_55)
    | ~ aNaturalNumber0(U_56) ),
    inference(clausify,[status(thm)],[f_27_3]) ).

fof(f_28_1,plain,
    ! [W0,W1] :
      ( $true
      | ~ iLess0(W0,W1)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mIH]) ).

fof(f_28_2,plain,
    ! [U_58,U_57] :
      ( $true
      | ~ iLess0(U_58,U_57)
      | ~ aNaturalNumber0(U_57)
      | ~ aNaturalNumber0(U_58) ),
    inference(variable_rename,[status(thm)],[f_28_1]) ).

fof(f_28_3,plain,
    ! [U_57,U_58] :
      ( $true
      | ~ iLess0(U_58,U_57)
      | ~ aNaturalNumber0(U_57)
      | ~ aNaturalNumber0(U_58) ),
    inference(definitional_conversion,[status(esa)],[f_28_2]) ).

cnf(f_28_4,plain,
    ( $true
    | ~ iLess0(U_58,U_57)
    | ~ aNaturalNumber0(U_57)
    | ~ aNaturalNumber0(U_58) ),
    inference(clausify,[status(thm)],[f_28_3]) ).

fof(f_29_1,plain,
    ! [W0,W1] :
      ( iLess0(W0,W1)
      | ~ sdtlseqdt0(W0,W1)
      | W0 = W1
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mIH_03]) ).

fof(f_29_2,plain,
    ! [U_60,U_59] :
      ( iLess0(U_60,U_59)
      | ~ sdtlseqdt0(U_60,U_59)
      | U_60 = U_59
      | ~ aNaturalNumber0(U_59)
      | ~ aNaturalNumber0(U_60) ),
    inference(variable_rename,[status(thm)],[f_29_1]) ).

fof(f_29_3,plain,
    ! [U_59,U_60] :
      ( iLess0(U_60,U_59)
      | ~ sdtlseqdt0(U_60,U_59)
      | U_60 = U_59
      | ~ aNaturalNumber0(U_59)
      | ~ aNaturalNumber0(U_60) ),
    inference(definitional_conversion,[status(esa)],[f_29_2]) ).

cnf(f_29_4,plain,
    ( iLess0(U_60,U_59)
    | ~ sdtlseqdt0(U_60,U_59)
    | U_60 = U_59
    | ~ aNaturalNumber0(U_59)
    | ~ aNaturalNumber0(U_60) ),
    inference(clausify,[status(thm)],[f_29_3]) ).

fof(f_30_1,plain,
    ! [W0,W1] :
      ( ( ( doDivides0(W0,W1)
          | ! [W2] :
              ( W1 != sdtasdt0(W0,W2)
              | ~ aNaturalNumber0(W2) ) )
        & ( ? [W2] :
              ( W1 = sdtasdt0(W0,W2)
              & aNaturalNumber0(W2) )
          | ~ doDivides0(W0,W1) ) )
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mDefDiv]) ).

fof(f_30_2,plain,
    ! [U_64,U_63] :
      ( ( ( doDivides0(U_64,U_63)
          | ! [U_62] :
              ( U_63 != sdtasdt0(U_64,U_62)
              | ~ aNaturalNumber0(U_62) ) )
        & ( ? [U_61] :
              ( U_63 = sdtasdt0(U_64,U_61)
              & aNaturalNumber0(U_61) )
          | ~ doDivides0(U_64,U_63) ) )
      | ~ aNaturalNumber0(U_63)
      | ~ aNaturalNumber0(U_64) ),
    inference(variable_rename,[status(thm)],[f_30_1]) ).

fof(f_30_3,plain,
    ! [U_64,U_63] :
      ( ( ( doDivides0(U_64,U_63)
          | ! [U_62] :
              ( U_63 != sdtasdt0(U_64,U_62)
              | ~ aNaturalNumber0(U_62) ) )
        & ( ( U_63 = sdtasdt0(U_64,sK2(U_64,U_63))
            & aNaturalNumber0(sK2(U_64,U_63)) )
          | ~ doDivides0(U_64,U_63) ) )
      | ~ aNaturalNumber0(U_63)
      | ~ aNaturalNumber0(U_64) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK2]),skolemize(U_61,sK2(U_64,U_63))],[f_30_2]) ).

fof(f_30_4,plain,
    ( ! [U_63,U_64] :
        ( U_63 = sdtasdt0(U_64,sK2(U_64,U_63))
        | ~ sP15(U_63,U_64) )
    & ! [U_63,U_64] :
        ( aNaturalNumber0(sK2(U_64,U_63))
        | ~ sP15(U_63,U_64) )
    & ! [U_63,U_64,U_62] :
        ( doDivides0(U_64,U_63)
        | U_63 != sdtasdt0(U_64,U_62)
        | ~ aNaturalNumber0(U_62)
        | ~ sP16(U_63,U_64,U_62) )
    & ! [U_63,U_64,U_62] :
        ( sP15(U_63,U_64)
        | ~ doDivides0(U_64,U_63)
        | ~ sP16(U_63,U_64,U_62) )
    & ! [U_63,U_64,U_62] :
        ( sP16(U_63,U_64,U_62)
        | ~ aNaturalNumber0(U_63)
        | ~ aNaturalNumber0(U_64) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP15,sP16])],[f_30_3]) ).

cnf(f_30_5,plain,
    ( sP16(U_63,U_64,U_62)
    | ~ aNaturalNumber0(U_63)
    | ~ aNaturalNumber0(U_64) ),
    inference(clausify,[status(thm)],[f_30_4]) ).

cnf(f_30_6,plain,
    ( sP15(U_63,U_64)
    | ~ doDivides0(U_64,U_63)
    | ~ sP16(U_63,U_64,U_62) ),
    inference(clausify,[status(thm)],[f_30_4]) ).

cnf(f_30_7,plain,
    ( doDivides0(U_64,U_63)
    | U_63 != sdtasdt0(U_64,U_62)
    | ~ aNaturalNumber0(U_62)
    | ~ sP16(U_63,U_64,U_62) ),
    inference(clausify,[status(thm)],[f_30_4]) ).

cnf(f_30_8,plain,
    ( aNaturalNumber0(sK2(U_64,U_63))
    | ~ sP15(U_63,U_64) ),
    inference(clausify,[status(thm)],[f_30_4]) ).

cnf(f_30_9,plain,
    ( U_63 = sdtasdt0(U_64,sK2(U_64,U_63))
    | ~ sP15(U_63,U_64) ),
    inference(clausify,[status(thm)],[f_30_4]) ).

fof(f_31_1,plain,
    ! [W0,W1] :
      ( ! [W2] :
          ( ( W2 = sdtsldt0(W1,W0)
            | W1 != sdtasdt0(W0,W2)
            | ~ aNaturalNumber0(W2) )
          & ( ( W1 = sdtasdt0(W0,W2)
              & aNaturalNumber0(W2) )
            | W2 != sdtsldt0(W1,W0) ) )
      | ~ doDivides0(W0,W1)
      | W0 = sz00
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mDefQuot]) ).

fof(f_31_2,plain,
    ! [U_67,U_66] :
      ( ! [U_65] :
          ( ( U_65 = sdtsldt0(U_66,U_67)
            | U_66 != sdtasdt0(U_67,U_65)
            | ~ aNaturalNumber0(U_65) )
          & ( ( U_66 = sdtasdt0(U_67,U_65)
              & aNaturalNumber0(U_65) )
            | U_65 != sdtsldt0(U_66,U_67) ) )
      | ~ doDivides0(U_67,U_66)
      | U_67 = sz00
      | ~ aNaturalNumber0(U_66)
      | ~ aNaturalNumber0(U_67) ),
    inference(variable_rename,[status(thm)],[f_31_1]) ).

fof(f_31_3,plain,
    ! [U_67,U_66] :
      ( ( ! [U_69] :
            ( U_69 = sdtsldt0(U_66,U_67)
            | U_66 != sdtasdt0(U_67,U_69)
            | ~ aNaturalNumber0(U_69) )
        & ! [U_68] :
            ( ( U_66 = sdtasdt0(U_67,U_68)
              & aNaturalNumber0(U_68) )
            | U_68 != sdtsldt0(U_66,U_67) ) )
      | ~ doDivides0(U_67,U_66)
      | U_67 = sz00
      | ~ aNaturalNumber0(U_66)
      | ~ aNaturalNumber0(U_67) ),
    inference(miniscope,[status(thm)],[f_31_2]) ).

fof(f_31_4,plain,
    ( ! [U_68,U_66,U_67] :
        ( U_66 = sdtasdt0(U_67,U_68)
        | ~ sP17(U_68,U_66,U_67) )
    & ! [U_68,U_66,U_67] :
        ( aNaturalNumber0(U_68)
        | ~ sP17(U_68,U_66,U_67) )
    & ! [U_68,U_69,U_66,U_67] :
        ( U_69 = sdtsldt0(U_66,U_67)
        | U_66 != sdtasdt0(U_67,U_69)
        | ~ aNaturalNumber0(U_69)
        | ~ sP18(U_68,U_69,U_66,U_67) )
    & ! [U_68,U_69,U_66,U_67] :
        ( sP17(U_68,U_66,U_67)
        | U_68 != sdtsldt0(U_66,U_67)
        | ~ sP18(U_68,U_69,U_66,U_67) )
    & ! [U_68,U_69,U_66,U_67] :
        ( sP18(U_68,U_69,U_66,U_67)
        | ~ doDivides0(U_67,U_66)
        | U_67 = sz00
        | ~ aNaturalNumber0(U_66)
        | ~ aNaturalNumber0(U_67) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP17,sP18])],[f_31_3]) ).

cnf(f_31_5,plain,
    ( sP18(U_68,U_69,U_66,U_67)
    | ~ doDivides0(U_67,U_66)
    | U_67 = sz00
    | ~ aNaturalNumber0(U_66)
    | ~ aNaturalNumber0(U_67) ),
    inference(clausify,[status(thm)],[f_31_4]) ).

cnf(f_31_6,plain,
    ( sP17(U_68,U_66,U_67)
    | U_68 != sdtsldt0(U_66,U_67)
    | ~ sP18(U_68,U_69,U_66,U_67) ),
    inference(clausify,[status(thm)],[f_31_4]) ).

cnf(f_31_7,plain,
    ( U_69 = sdtsldt0(U_66,U_67)
    | U_66 != sdtasdt0(U_67,U_69)
    | ~ aNaturalNumber0(U_69)
    | ~ sP18(U_68,U_69,U_66,U_67) ),
    inference(clausify,[status(thm)],[f_31_4]) ).

cnf(f_31_8,plain,
    ( aNaturalNumber0(U_68)
    | ~ sP17(U_68,U_66,U_67) ),
    inference(clausify,[status(thm)],[f_31_4]) ).

cnf(f_31_9,plain,
    ( U_66 = sdtasdt0(U_67,U_68)
    | ~ sP17(U_68,U_66,U_67) ),
    inference(clausify,[status(thm)],[f_31_4]) ).

fof(f_32_1,plain,
    ! [W0,W1,W2] :
      ( doDivides0(W0,W2)
      | ~ doDivides0(W1,W2)
      | ~ doDivides0(W0,W1)
      | ~ aNaturalNumber0(W2)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mDivTrans]) ).

fof(f_32_2,plain,
    ! [U_72,U_71,U_70] :
      ( doDivides0(U_72,U_70)
      | ~ doDivides0(U_71,U_70)
      | ~ doDivides0(U_72,U_71)
      | ~ aNaturalNumber0(U_70)
      | ~ aNaturalNumber0(U_71)
      | ~ aNaturalNumber0(U_72) ),
    inference(variable_rename,[status(thm)],[f_32_1]) ).

fof(f_32_3,plain,
    ! [U_70,U_72,U_71] :
      ( doDivides0(U_72,U_70)
      | ~ doDivides0(U_71,U_70)
      | ~ doDivides0(U_72,U_71)
      | ~ aNaturalNumber0(U_70)
      | ~ aNaturalNumber0(U_71)
      | ~ aNaturalNumber0(U_72) ),
    inference(definitional_conversion,[status(esa)],[f_32_2]) ).

cnf(f_32_4,plain,
    ( doDivides0(U_72,U_70)
    | ~ doDivides0(U_71,U_70)
    | ~ doDivides0(U_72,U_71)
    | ~ aNaturalNumber0(U_70)
    | ~ aNaturalNumber0(U_71)
    | ~ aNaturalNumber0(U_72) ),
    inference(clausify,[status(thm)],[f_32_3]) ).

fof(f_33_1,plain,
    ! [W0,W1,W2] :
      ( doDivides0(W0,sdtpldt0(W1,W2))
      | ~ doDivides0(W0,W2)
      | ~ doDivides0(W0,W1)
      | ~ aNaturalNumber0(W2)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mDivSum]) ).

fof(f_33_2,plain,
    ! [U_75,U_74,U_73] :
      ( doDivides0(U_75,sdtpldt0(U_74,U_73))
      | ~ doDivides0(U_75,U_73)
      | ~ doDivides0(U_75,U_74)
      | ~ aNaturalNumber0(U_73)
      | ~ aNaturalNumber0(U_74)
      | ~ aNaturalNumber0(U_75) ),
    inference(variable_rename,[status(thm)],[f_33_1]) ).

fof(f_33_3,plain,
    ! [U_74,U_73,U_75] :
      ( doDivides0(U_75,sdtpldt0(U_74,U_73))
      | ~ doDivides0(U_75,U_73)
      | ~ doDivides0(U_75,U_74)
      | ~ aNaturalNumber0(U_73)
      | ~ aNaturalNumber0(U_74)
      | ~ aNaturalNumber0(U_75) ),
    inference(definitional_conversion,[status(esa)],[f_33_2]) ).

cnf(f_33_4,plain,
    ( doDivides0(U_75,sdtpldt0(U_74,U_73))
    | ~ doDivides0(U_75,U_73)
    | ~ doDivides0(U_75,U_74)
    | ~ aNaturalNumber0(U_73)
    | ~ aNaturalNumber0(U_74)
    | ~ aNaturalNumber0(U_75) ),
    inference(clausify,[status(thm)],[f_33_3]) ).

fof(f_34_1,plain,
    ! [W0,W1,W2] :
      ( doDivides0(W0,W2)
      | ~ doDivides0(W0,sdtpldt0(W1,W2))
      | ~ doDivides0(W0,W1)
      | ~ aNaturalNumber0(W2)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mDivMin]) ).

fof(f_34_2,plain,
    ! [U_78,U_77,U_76] :
      ( doDivides0(U_78,U_76)
      | ~ doDivides0(U_78,sdtpldt0(U_77,U_76))
      | ~ doDivides0(U_78,U_77)
      | ~ aNaturalNumber0(U_76)
      | ~ aNaturalNumber0(U_77)
      | ~ aNaturalNumber0(U_78) ),
    inference(variable_rename,[status(thm)],[f_34_1]) ).

fof(f_34_3,plain,
    ! [U_77,U_78,U_76] :
      ( doDivides0(U_78,U_76)
      | ~ doDivides0(U_78,sdtpldt0(U_77,U_76))
      | ~ doDivides0(U_78,U_77)
      | ~ aNaturalNumber0(U_76)
      | ~ aNaturalNumber0(U_77)
      | ~ aNaturalNumber0(U_78) ),
    inference(definitional_conversion,[status(esa)],[f_34_2]) ).

cnf(f_34_4,plain,
    ( doDivides0(U_78,U_76)
    | ~ doDivides0(U_78,sdtpldt0(U_77,U_76))
    | ~ doDivides0(U_78,U_77)
    | ~ aNaturalNumber0(U_76)
    | ~ aNaturalNumber0(U_77)
    | ~ aNaturalNumber0(U_78) ),
    inference(clausify,[status(thm)],[f_34_3]) ).

fof(f_35_1,plain,
    ! [W0,W1] :
      ( sdtlseqdt0(W0,W1)
      | W1 = sz00
      | ~ doDivides0(W0,W1)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mDivLE]) ).

fof(f_35_2,plain,
    ! [U_80,U_79] :
      ( sdtlseqdt0(U_80,U_79)
      | U_79 = sz00
      | ~ doDivides0(U_80,U_79)
      | ~ aNaturalNumber0(U_79)
      | ~ aNaturalNumber0(U_80) ),
    inference(variable_rename,[status(thm)],[f_35_1]) ).

fof(f_35_3,plain,
    ! [U_79,U_80] :
      ( sdtlseqdt0(U_80,U_79)
      | U_79 = sz00
      | ~ doDivides0(U_80,U_79)
      | ~ aNaturalNumber0(U_79)
      | ~ aNaturalNumber0(U_80) ),
    inference(definitional_conversion,[status(esa)],[f_35_2]) ).

cnf(f_35_4,plain,
    ( sdtlseqdt0(U_80,U_79)
    | U_79 = sz00
    | ~ doDivides0(U_80,U_79)
    | ~ aNaturalNumber0(U_79)
    | ~ aNaturalNumber0(U_80) ),
    inference(clausify,[status(thm)],[f_35_3]) ).

fof(f_36_1,plain,
    ! [W0,W1] :
      ( ! [W2] :
          ( sdtasdt0(W2,sdtsldt0(W1,W0)) = sdtsldt0(sdtasdt0(W2,W1),W0)
          | ~ aNaturalNumber0(W2) )
      | ~ doDivides0(W0,W1)
      | W0 = sz00
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mDivAsso]) ).

fof(f_36_2,plain,
    ! [U_83,U_82] :
      ( ! [U_81] :
          ( sdtasdt0(U_81,sdtsldt0(U_82,U_83)) = sdtsldt0(sdtasdt0(U_81,U_82),U_83)
          | ~ aNaturalNumber0(U_81) )
      | ~ doDivides0(U_83,U_82)
      | U_83 = sz00
      | ~ aNaturalNumber0(U_82)
      | ~ aNaturalNumber0(U_83) ),
    inference(variable_rename,[status(thm)],[f_36_1]) ).

fof(f_36_3,plain,
    ! [U_82,U_81,U_83] :
      ( sdtasdt0(U_81,sdtsldt0(U_82,U_83)) = sdtsldt0(sdtasdt0(U_81,U_82),U_83)
      | ~ aNaturalNumber0(U_81)
      | ~ doDivides0(U_83,U_82)
      | U_83 = sz00
      | ~ aNaturalNumber0(U_82)
      | ~ aNaturalNumber0(U_83) ),
    inference(definitional_conversion,[status(esa)],[f_36_2]) ).

cnf(f_36_4,plain,
    ( sdtasdt0(U_81,sdtsldt0(U_82,U_83)) = sdtsldt0(sdtasdt0(U_81,U_82),U_83)
    | ~ aNaturalNumber0(U_81)
    | ~ doDivides0(U_83,U_82)
    | U_83 = sz00
    | ~ aNaturalNumber0(U_82)
    | ~ aNaturalNumber0(U_83) ),
    inference(clausify,[status(thm)],[f_36_3]) ).

fof(f_37_1,plain,
    ! [W0] :
      ( ( ( isPrime0(W0)
          | ? [W1] :
              ( W1 != W0
              & W1 != sz10
              & doDivides0(W1,W0)
              & aNaturalNumber0(W1) )
          | W0 = sz10
          | W0 = sz00 )
        & ( ( ! [W1] :
                ( W1 = W0
                | W1 = sz10
                | ~ doDivides0(W1,W0)
                | ~ aNaturalNumber0(W1) )
            & W0 != sz10
            & W0 != sz00 )
          | ~ isPrime0(W0) ) )
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mDefPrime]) ).

fof(f_37_2,plain,
    ! [U_86] :
      ( ( ( isPrime0(U_86)
          | ? [U_85] :
              ( U_85 != U_86
              & U_85 != sz10
              & doDivides0(U_85,U_86)
              & aNaturalNumber0(U_85) )
          | U_86 = sz10
          | U_86 = sz00 )
        & ( ( ! [U_84] :
                ( U_84 = U_86
                | U_84 = sz10
                | ~ doDivides0(U_84,U_86)
                | ~ aNaturalNumber0(U_84) )
            & U_86 != sz10
            & U_86 != sz00 )
          | ~ isPrime0(U_86) ) )
      | ~ aNaturalNumber0(U_86) ),
    inference(variable_rename,[status(thm)],[f_37_1]) ).

fof(f_37_3,plain,
    ! [U_86] :
      ( ( ( isPrime0(U_86)
          | ( sK3(U_86) != U_86
            & sK3(U_86) != sz10
            & doDivides0(sK3(U_86),U_86)
            & aNaturalNumber0(sK3(U_86)) )
          | U_86 = sz10
          | U_86 = sz00 )
        & ( ( ! [U_84] :
                ( U_84 = U_86
                | U_84 = sz10
                | ~ doDivides0(U_84,U_86)
                | ~ aNaturalNumber0(U_84) )
            & U_86 != sz10
            & U_86 != sz00 )
          | ~ isPrime0(U_86) ) )
      | ~ aNaturalNumber0(U_86) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK3]),skolemize(U_85,sK3(U_86))],[f_37_2]) ).

fof(f_37_4,plain,
    ( ! [U_86] :
        ( sK3(U_86) != U_86
        | ~ sP20(U_86) )
    & ! [U_86] :
        ( sK3(U_86) != sz10
        | ~ sP20(U_86) )
    & ! [U_86] :
        ( doDivides0(sK3(U_86),U_86)
        | ~ sP20(U_86) )
    & ! [U_86] :
        ( aNaturalNumber0(sK3(U_86))
        | ~ sP20(U_86) )
    & ! [U_86,U_84] :
        ( U_84 = U_86
        | U_84 = sz10
        | ~ doDivides0(U_84,U_86)
        | ~ aNaturalNumber0(U_84)
        | ~ sP19(U_86,U_84) )
    & ! [U_86,U_84] :
        ( U_86 != sz10
        | ~ sP19(U_86,U_84) )
    & ! [U_86,U_84] :
        ( U_86 != sz00
        | ~ sP19(U_86,U_84) )
    & ! [U_86,U_84] :
        ( isPrime0(U_86)
        | sP20(U_86)
        | U_86 = sz10
        | U_86 = sz00
        | ~ sP21(U_86,U_84) )
    & ! [U_86,U_84] :
        ( sP19(U_86,U_84)
        | ~ isPrime0(U_86)
        | ~ sP21(U_86,U_84) )
    & ! [U_86,U_84] :
        ( sP21(U_86,U_84)
        | ~ aNaturalNumber0(U_86) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP19,sP20,sP21])],[f_37_3]) ).

cnf(f_37_5,plain,
    ( sP21(U_86,U_84)
    | ~ aNaturalNumber0(U_86) ),
    inference(clausify,[status(thm)],[f_37_4]) ).

cnf(f_37_6,plain,
    ( sP19(U_86,U_84)
    | ~ isPrime0(U_86)
    | ~ sP21(U_86,U_84) ),
    inference(clausify,[status(thm)],[f_37_4]) ).

cnf(f_37_7,plain,
    ( isPrime0(U_86)
    | sP20(U_86)
    | U_86 = sz10
    | U_86 = sz00
    | ~ sP21(U_86,U_84) ),
    inference(clausify,[status(thm)],[f_37_4]) ).

cnf(f_37_8,plain,
    ( U_86 != sz00
    | ~ sP19(U_86,U_84) ),
    inference(clausify,[status(thm)],[f_37_4]) ).

cnf(f_37_9,plain,
    ( U_86 != sz10
    | ~ sP19(U_86,U_84) ),
    inference(clausify,[status(thm)],[f_37_4]) ).

cnf(f_37_10,plain,
    ( U_84 = U_86
    | U_84 = sz10
    | ~ doDivides0(U_84,U_86)
    | ~ aNaturalNumber0(U_84)
    | ~ sP19(U_86,U_84) ),
    inference(clausify,[status(thm)],[f_37_4]) ).

cnf(f_37_11,plain,
    ( aNaturalNumber0(sK3(U_86))
    | ~ sP20(U_86) ),
    inference(clausify,[status(thm)],[f_37_4]) ).

cnf(f_37_12,plain,
    ( doDivides0(sK3(U_86),U_86)
    | ~ sP20(U_86) ),
    inference(clausify,[status(thm)],[f_37_4]) ).

cnf(f_37_13,plain,
    ( sK3(U_86) != sz10
    | ~ sP20(U_86) ),
    inference(clausify,[status(thm)],[f_37_4]) ).

cnf(f_37_14,plain,
    ( sK3(U_86) != U_86
    | ~ sP20(U_86) ),
    inference(clausify,[status(thm)],[f_37_4]) ).

fof(f_38_1,plain,
    ! [W0] :
      ( ? [W1] :
          ( isPrime0(W1)
          & doDivides0(W1,W0)
          & aNaturalNumber0(W1) )
      | W0 = sz10
      | W0 = sz00
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[mPrimDiv]) ).

fof(f_38_2,plain,
    ! [U_88] :
      ( ? [U_87] :
          ( isPrime0(U_87)
          & doDivides0(U_87,U_88)
          & aNaturalNumber0(U_87) )
      | U_88 = sz10
      | U_88 = sz00
      | ~ aNaturalNumber0(U_88) ),
    inference(variable_rename,[status(thm)],[f_38_1]) ).

fof(f_38_3,plain,
    ! [U_88] :
      ( ( isPrime0(sK4(U_88))
        & doDivides0(sK4(U_88),U_88)
        & aNaturalNumber0(sK4(U_88)) )
      | U_88 = sz10
      | U_88 = sz00
      | ~ aNaturalNumber0(U_88) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK4]),skolemize(U_87,sK4(U_88))],[f_38_2]) ).

fof(f_38_4,plain,
    ( ! [U_88] :
        ( isPrime0(sK4(U_88))
        | ~ sP22(U_88) )
    & ! [U_88] :
        ( doDivides0(sK4(U_88),U_88)
        | ~ sP22(U_88) )
    & ! [U_88] :
        ( aNaturalNumber0(sK4(U_88))
        | ~ sP22(U_88) )
    & ! [U_88] :
        ( sP22(U_88)
        | U_88 = sz10
        | U_88 = sz00
        | ~ aNaturalNumber0(U_88) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP22])],[f_38_3]) ).

cnf(f_38_5,plain,
    ( sP22(U_88)
    | U_88 = sz10
    | U_88 = sz00
    | ~ aNaturalNumber0(U_88) ),
    inference(clausify,[status(thm)],[f_38_4]) ).

cnf(f_38_6,plain,
    ( aNaturalNumber0(sK4(U_88))
    | ~ sP22(U_88) ),
    inference(clausify,[status(thm)],[f_38_4]) ).

cnf(f_38_7,plain,
    ( doDivides0(sK4(U_88),U_88)
    | ~ sP22(U_88) ),
    inference(clausify,[status(thm)],[f_38_4]) ).

cnf(f_38_8,plain,
    ( isPrime0(sK4(U_88))
    | ~ sP22(U_88) ),
    inference(clausify,[status(thm)],[f_38_4]) ).

fof(f_39_1,plain,
    ( aNaturalNumber0(xp)
    & aNaturalNumber0(xm)
    & aNaturalNumber0(xn) ),
    inference(fof_nnf,[status(thm)],[m__1837]) ).

fof(f_39_2,plain,
    ( aNaturalNumber0(xp)
    & aNaturalNumber0(xm)
    & aNaturalNumber0(xn) ),
    inference(definitional_conversion,[status(esa)],[f_39_1]) ).

cnf(f_39_3,plain,
    aNaturalNumber0(xn),
    inference(clausify,[status(thm)],[f_39_2]) ).

cnf(f_39_4,plain,
    aNaturalNumber0(xm),
    inference(clausify,[status(thm)],[f_39_2]) ).

cnf(f_39_5,plain,
    aNaturalNumber0(xp),
    inference(clausify,[status(thm)],[f_39_2]) ).

fof(f_40_1,plain,
    ! [W0,W1,W2] :
      ( ( doDivides0(W2,W1)
        & ? [W3] :
            ( W1 = sdtasdt0(W2,W3)
            & aNaturalNumber0(W3) ) )
      | ( doDivides0(W2,W0)
        & ? [W3] :
            ( W0 = sdtasdt0(W2,W3)
            & aNaturalNumber0(W3) ) )
      | ~ iLess0(sdtpldt0(sdtpldt0(W0,W1),W2),sdtpldt0(sdtpldt0(xn,xm),xp))
      | ( ~ doDivides0(W2,sdtasdt0(W0,W1))
        & ! [W3] :
            ( sdtasdt0(W0,W1) != sdtasdt0(W2,W3)
            | ~ aNaturalNumber0(W3) ) )
      | ( ~ isPrime0(W2)
        & ( ? [W3] :
              ( W3 != W2
              & W3 != sz10
              & doDivides0(W3,W2)
              & ? [W4] :
                  ( W2 = sdtasdt0(W3,W4)
                  & aNaturalNumber0(W4) )
              & aNaturalNumber0(W3) )
          | W2 = sz10
          | W2 = sz00 ) )
      | ~ aNaturalNumber0(W2)
      | ~ aNaturalNumber0(W1)
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[m__1799]) ).

fof(f_40_2,plain,
    ! [U_96,U_95,U_94] :
      ( ( doDivides0(U_94,U_95)
        & ? [U_93] :
            ( U_95 = sdtasdt0(U_94,U_93)
            & aNaturalNumber0(U_93) ) )
      | ( doDivides0(U_94,U_96)
        & ? [U_92] :
            ( U_96 = sdtasdt0(U_94,U_92)
            & aNaturalNumber0(U_92) ) )
      | ~ iLess0(sdtpldt0(sdtpldt0(U_96,U_95),U_94),sdtpldt0(sdtpldt0(xn,xm),xp))
      | ( ~ doDivides0(U_94,sdtasdt0(U_96,U_95))
        & ! [U_91] :
            ( sdtasdt0(U_96,U_95) != sdtasdt0(U_94,U_91)
            | ~ aNaturalNumber0(U_91) ) )
      | ( ~ isPrime0(U_94)
        & ( ? [U_90] :
              ( U_90 != U_94
              & U_90 != sz10
              & doDivides0(U_90,U_94)
              & ? [U_89] :
                  ( U_94 = sdtasdt0(U_90,U_89)
                  & aNaturalNumber0(U_89) )
              & aNaturalNumber0(U_90) )
          | U_94 = sz10
          | U_94 = sz00 ) )
      | ~ aNaturalNumber0(U_94)
      | ~ aNaturalNumber0(U_95)
      | ~ aNaturalNumber0(U_96) ),
    inference(variable_rename,[status(thm)],[f_40_1]) ).

fof(f_40_3,plain,
    ! [U_96,U_95,U_94] :
      ( ( doDivides0(U_94,U_95)
        & ? [U_93] :
            ( U_95 = sdtasdt0(U_94,U_93)
            & aNaturalNumber0(U_93) ) )
      | ( doDivides0(U_94,U_96)
        & ? [U_92] :
            ( U_96 = sdtasdt0(U_94,U_92)
            & aNaturalNumber0(U_92) ) )
      | ~ iLess0(sdtpldt0(sdtpldt0(U_96,U_95),U_94),sdtpldt0(sdtpldt0(xn,xm),xp))
      | ( ~ doDivides0(U_94,sdtasdt0(U_96,U_95))
        & ! [U_91] :
            ( sdtasdt0(U_96,U_95) != sdtasdt0(U_94,U_91)
            | ~ aNaturalNumber0(U_91) ) )
      | ( ~ isPrime0(U_94)
        & ( ( sK5(U_96,U_95,U_94) != U_94
            & sK5(U_96,U_95,U_94) != sz10
            & doDivides0(sK5(U_96,U_95,U_94),U_94)
            & ? [U_89] :
                ( U_94 = sdtasdt0(sK5(U_96,U_95,U_94),U_89)
                & aNaturalNumber0(U_89) )
            & aNaturalNumber0(sK5(U_96,U_95,U_94)) )
          | U_94 = sz10
          | U_94 = sz00 ) )
      | ~ aNaturalNumber0(U_94)
      | ~ aNaturalNumber0(U_95)
      | ~ aNaturalNumber0(U_96) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK5]),skolemize(U_90,sK5(U_96,U_95,U_94))],[f_40_2]) ).

fof(f_40_4,plain,
    ! [U_96,U_95,U_94] :
      ( ( doDivides0(U_94,U_95)
        & ? [U_93] :
            ( U_95 = sdtasdt0(U_94,U_93)
            & aNaturalNumber0(U_93) ) )
      | ( doDivides0(U_94,U_96)
        & ? [U_92] :
            ( U_96 = sdtasdt0(U_94,U_92)
            & aNaturalNumber0(U_92) ) )
      | ~ iLess0(sdtpldt0(sdtpldt0(U_96,U_95),U_94),sdtpldt0(sdtpldt0(xn,xm),xp))
      | ( ~ doDivides0(U_94,sdtasdt0(U_96,U_95))
        & ! [U_91] :
            ( sdtasdt0(U_96,U_95) != sdtasdt0(U_94,U_91)
            | ~ aNaturalNumber0(U_91) ) )
      | ( ~ isPrime0(U_94)
        & ( ( sK5(U_96,U_95,U_94) != U_94
            & sK5(U_96,U_95,U_94) != sz10
            & doDivides0(sK5(U_96,U_95,U_94),U_94)
            & U_94 = sdtasdt0(sK5(U_96,U_95,U_94),sK6(U_96,U_95,U_94))
            & aNaturalNumber0(sK6(U_96,U_95,U_94))
            & aNaturalNumber0(sK5(U_96,U_95,U_94)) )
          | U_94 = sz10
          | U_94 = sz00 ) )
      | ~ aNaturalNumber0(U_94)
      | ~ aNaturalNumber0(U_95)
      | ~ aNaturalNumber0(U_96) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK6]),skolemize(U_89,sK6(U_96,U_95,U_94))],[f_40_3]) ).

fof(f_40_5,plain,
    ! [U_96,U_95,U_94] :
      ( ( doDivides0(U_94,U_95)
        & ? [U_93] :
            ( U_95 = sdtasdt0(U_94,U_93)
            & aNaturalNumber0(U_93) ) )
      | ( doDivides0(U_94,U_96)
        & U_96 = sdtasdt0(U_94,sK7(U_96,U_95,U_94))
        & aNaturalNumber0(sK7(U_96,U_95,U_94)) )
      | ~ iLess0(sdtpldt0(sdtpldt0(U_96,U_95),U_94),sdtpldt0(sdtpldt0(xn,xm),xp))
      | ( ~ doDivides0(U_94,sdtasdt0(U_96,U_95))
        & ! [U_91] :
            ( sdtasdt0(U_96,U_95) != sdtasdt0(U_94,U_91)
            | ~ aNaturalNumber0(U_91) ) )
      | ( ~ isPrime0(U_94)
        & ( ( sK5(U_96,U_95,U_94) != U_94
            & sK5(U_96,U_95,U_94) != sz10
            & doDivides0(sK5(U_96,U_95,U_94),U_94)
            & U_94 = sdtasdt0(sK5(U_96,U_95,U_94),sK6(U_96,U_95,U_94))
            & aNaturalNumber0(sK6(U_96,U_95,U_94))
            & aNaturalNumber0(sK5(U_96,U_95,U_94)) )
          | U_94 = sz10
          | U_94 = sz00 ) )
      | ~ aNaturalNumber0(U_94)
      | ~ aNaturalNumber0(U_95)
      | ~ aNaturalNumber0(U_96) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK7]),skolemize(U_92,sK7(U_96,U_95,U_94))],[f_40_4]) ).

fof(f_40_6,plain,
    ! [U_96,U_95,U_94] :
      ( ( doDivides0(U_94,U_95)
        & U_95 = sdtasdt0(U_94,sK8(U_96,U_95,U_94))
        & aNaturalNumber0(sK8(U_96,U_95,U_94)) )
      | ( doDivides0(U_94,U_96)
        & U_96 = sdtasdt0(U_94,sK7(U_96,U_95,U_94))
        & aNaturalNumber0(sK7(U_96,U_95,U_94)) )
      | ~ iLess0(sdtpldt0(sdtpldt0(U_96,U_95),U_94),sdtpldt0(sdtpldt0(xn,xm),xp))
      | ( ~ doDivides0(U_94,sdtasdt0(U_96,U_95))
        & ! [U_91] :
            ( sdtasdt0(U_96,U_95) != sdtasdt0(U_94,U_91)
            | ~ aNaturalNumber0(U_91) ) )
      | ( ~ isPrime0(U_94)
        & ( ( sK5(U_96,U_95,U_94) != U_94
            & sK5(U_96,U_95,U_94) != sz10
            & doDivides0(sK5(U_96,U_95,U_94),U_94)
            & U_94 = sdtasdt0(sK5(U_96,U_95,U_94),sK6(U_96,U_95,U_94))
            & aNaturalNumber0(sK6(U_96,U_95,U_94))
            & aNaturalNumber0(sK5(U_96,U_95,U_94)) )
          | U_94 = sz10
          | U_94 = sz00 ) )
      | ~ aNaturalNumber0(U_94)
      | ~ aNaturalNumber0(U_95)
      | ~ aNaturalNumber0(U_96) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK8]),skolemize(U_93,sK8(U_96,U_95,U_94))],[f_40_5]) ).

fof(f_40_7,plain,
    ( ! [U_96,U_95,U_94] :
        ( doDivides0(U_94,U_95)
        | ~ sP27(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( U_95 = sdtasdt0(U_94,sK8(U_96,U_95,U_94))
        | ~ sP27(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( aNaturalNumber0(sK8(U_96,U_95,U_94))
        | ~ sP27(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( doDivides0(U_94,U_96)
        | ~ sP26(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( U_96 = sdtasdt0(U_94,sK7(U_96,U_95,U_94))
        | ~ sP26(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( aNaturalNumber0(sK7(U_96,U_95,U_94))
        | ~ sP26(U_96,U_95,U_94) )
    & ! [U_91,U_96,U_95,U_94] :
        ( ~ doDivides0(U_94,sdtasdt0(U_96,U_95))
        | ~ sP25(U_91,U_96,U_95,U_94) )
    & ! [U_91,U_96,U_95,U_94] :
        ( sdtasdt0(U_96,U_95) != sdtasdt0(U_94,U_91)
        | ~ aNaturalNumber0(U_91)
        | ~ sP25(U_91,U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( sK5(U_96,U_95,U_94) != U_94
        | ~ sP23(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( sK5(U_96,U_95,U_94) != sz10
        | ~ sP23(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( doDivides0(sK5(U_96,U_95,U_94),U_94)
        | ~ sP23(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( U_94 = sdtasdt0(sK5(U_96,U_95,U_94),sK6(U_96,U_95,U_94))
        | ~ sP23(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( aNaturalNumber0(sK6(U_96,U_95,U_94))
        | ~ sP23(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( aNaturalNumber0(sK5(U_96,U_95,U_94))
        | ~ sP23(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( ~ isPrime0(U_94)
        | ~ sP24(U_96,U_95,U_94) )
    & ! [U_96,U_95,U_94] :
        ( sP23(U_96,U_95,U_94)
        | U_94 = sz10
        | U_94 = sz00
        | ~ sP24(U_96,U_95,U_94) )
    & ! [U_91,U_96,U_95,U_94] :
        ( sP27(U_96,U_95,U_94)
        | sP26(U_96,U_95,U_94)
        | ~ iLess0(sdtpldt0(sdtpldt0(U_96,U_95),U_94),sdtpldt0(sdtpldt0(xn,xm),xp))
        | sP25(U_91,U_96,U_95,U_94)
        | sP24(U_96,U_95,U_94)
        | ~ aNaturalNumber0(U_94)
        | ~ aNaturalNumber0(U_95)
        | ~ aNaturalNumber0(U_96) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP23,sP24,sP25,sP26,sP27])],[f_40_6]) ).

cnf(f_40_8,plain,
    ( sP27(U_96,U_95,U_94)
    | sP26(U_96,U_95,U_94)
    | ~ iLess0(sdtpldt0(sdtpldt0(U_96,U_95),U_94),sdtpldt0(sdtpldt0(xn,xm),xp))
    | sP25(U_91,U_96,U_95,U_94)
    | sP24(U_96,U_95,U_94)
    | ~ aNaturalNumber0(U_94)
    | ~ aNaturalNumber0(U_95)
    | ~ aNaturalNumber0(U_96) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_9,plain,
    ( sP23(U_96,U_95,U_94)
    | U_94 = sz10
    | U_94 = sz00
    | ~ sP24(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_10,plain,
    ( ~ isPrime0(U_94)
    | ~ sP24(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_11,plain,
    ( aNaturalNumber0(sK5(U_96,U_95,U_94))
    | ~ sP23(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_12,plain,
    ( aNaturalNumber0(sK6(U_96,U_95,U_94))
    | ~ sP23(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_13,plain,
    ( U_94 = sdtasdt0(sK5(U_96,U_95,U_94),sK6(U_96,U_95,U_94))
    | ~ sP23(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_14,plain,
    ( doDivides0(sK5(U_96,U_95,U_94),U_94)
    | ~ sP23(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_15,plain,
    ( sK5(U_96,U_95,U_94) != sz10
    | ~ sP23(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_16,plain,
    ( sK5(U_96,U_95,U_94) != U_94
    | ~ sP23(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_17,plain,
    ( sdtasdt0(U_96,U_95) != sdtasdt0(U_94,U_91)
    | ~ aNaturalNumber0(U_91)
    | ~ sP25(U_91,U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_18,plain,
    ( ~ doDivides0(U_94,sdtasdt0(U_96,U_95))
    | ~ sP25(U_91,U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_19,plain,
    ( aNaturalNumber0(sK7(U_96,U_95,U_94))
    | ~ sP26(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_20,plain,
    ( U_96 = sdtasdt0(U_94,sK7(U_96,U_95,U_94))
    | ~ sP26(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_21,plain,
    ( doDivides0(U_94,U_96)
    | ~ sP26(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_22,plain,
    ( aNaturalNumber0(sK8(U_96,U_95,U_94))
    | ~ sP27(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_23,plain,
    ( U_95 = sdtasdt0(U_94,sK8(U_96,U_95,U_94))
    | ~ sP27(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

cnf(f_40_24,plain,
    ( doDivides0(U_94,U_95)
    | ~ sP27(U_96,U_95,U_94) ),
    inference(clausify,[status(thm)],[f_40_7]) ).

fof(f_41_1,plain,
    ( doDivides0(xp,sdtasdt0(xn,xm))
    & ? [W0] :
        ( sdtasdt0(xn,xm) = sdtasdt0(xp,W0)
        & aNaturalNumber0(W0) )
    & isPrime0(xp)
    & ! [W0] :
        ( W0 = xp
        | W0 = sz10
        | ( ~ doDivides0(W0,xp)
          & ! [W1] :
              ( xp != sdtasdt0(W0,W1)
              | ~ aNaturalNumber0(W1) ) )
        | ~ aNaturalNumber0(W0) )
    & xp != sz10
    & xp != sz00 ),
    inference(fof_nnf,[status(thm)],[m__1860]) ).

fof(f_41_2,plain,
    ( doDivides0(xp,sdtasdt0(xn,xm))
    & ? [U_99] :
        ( sdtasdt0(xn,xm) = sdtasdt0(xp,U_99)
        & aNaturalNumber0(U_99) )
    & isPrime0(xp)
    & ! [U_98] :
        ( U_98 = xp
        | U_98 = sz10
        | ( ~ doDivides0(U_98,xp)
          & ! [U_97] :
              ( xp != sdtasdt0(U_98,U_97)
              | ~ aNaturalNumber0(U_97) ) )
        | ~ aNaturalNumber0(U_98) )
    & xp != sz10
    & xp != sz00 ),
    inference(variable_rename,[status(thm)],[f_41_1]) ).

fof(f_41_3,plain,
    ( doDivides0(xp,sdtasdt0(xn,xm))
    & sdtasdt0(xn,xm) = sdtasdt0(xp,sK9)
    & aNaturalNumber0(sK9)
    & isPrime0(xp)
    & ! [U_98] :
        ( U_98 = xp
        | U_98 = sz10
        | ( ~ doDivides0(U_98,xp)
          & ! [U_97] :
              ( xp != sdtasdt0(U_98,U_97)
              | ~ aNaturalNumber0(U_97) ) )
        | ~ aNaturalNumber0(U_98) )
    & xp != sz10
    & xp != sz00 ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK9]),skolemize(U_99,sK9)],[f_41_2]) ).

fof(f_41_4,plain,
    ( ! [U_98,U_97] :
        ( ~ doDivides0(U_98,xp)
        | ~ sP28(U_98,U_97) )
    & ! [U_98,U_97] :
        ( xp != sdtasdt0(U_98,U_97)
        | ~ aNaturalNumber0(U_97)
        | ~ sP28(U_98,U_97) )
    & doDivides0(xp,sdtasdt0(xn,xm))
    & sdtasdt0(xn,xm) = sdtasdt0(xp,sK9)
    & aNaturalNumber0(sK9)
    & isPrime0(xp)
    & ! [U_98,U_97] :
        ( U_98 = xp
        | U_98 = sz10
        | sP28(U_98,U_97)
        | ~ aNaturalNumber0(U_98) )
    & xp != sz10
    & xp != sz00 ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP28])],[f_41_3]) ).

cnf(f_41_5,plain,
    xp != sz00,
    inference(clausify,[status(thm)],[f_41_4]) ).

cnf(f_41_6,plain,
    xp != sz10,
    inference(clausify,[status(thm)],[f_41_4]) ).

cnf(f_41_7,plain,
    ( U_98 = xp
    | U_98 = sz10
    | sP28(U_98,U_97)
    | ~ aNaturalNumber0(U_98) ),
    inference(clausify,[status(thm)],[f_41_4]) ).

cnf(f_41_8,plain,
    isPrime0(xp),
    inference(clausify,[status(thm)],[f_41_4]) ).

cnf(f_41_9,plain,
    aNaturalNumber0(sK9),
    inference(clausify,[status(thm)],[f_41_4]) ).

cnf(f_41_10,plain,
    sdtasdt0(xn,xm) = sdtasdt0(xp,sK9),
    inference(clausify,[status(thm)],[f_41_4]) ).

cnf(f_41_11,plain,
    doDivides0(xp,sdtasdt0(xn,xm)),
    inference(clausify,[status(thm)],[f_41_4]) ).

cnf(f_41_12,plain,
    ( xp != sdtasdt0(U_98,U_97)
    | ~ aNaturalNumber0(U_97)
    | ~ sP28(U_98,U_97) ),
    inference(clausify,[status(thm)],[f_41_4]) ).

cnf(f_41_13,plain,
    ( ~ doDivides0(U_98,xp)
    | ~ sP28(U_98,U_97) ),
    inference(clausify,[status(thm)],[f_41_4]) ).

fof(f_42_1,plain,
    ( ~ sdtlseqdt0(xp,xn)
    & ! [W0] :
        ( sdtpldt0(xp,W0) != xn
        | ~ aNaturalNumber0(W0) ) ),
    inference(fof_nnf,[status(thm)],[m__1870]) ).

fof(f_42_2,plain,
    ( ~ sdtlseqdt0(xp,xn)
    & ! [U_100] :
        ( sdtpldt0(xp,U_100) != xn
        | ~ aNaturalNumber0(U_100) ) ),
    inference(variable_rename,[status(thm)],[f_42_1]) ).

fof(f_42_3,plain,
    ( ~ sdtlseqdt0(xp,xn)
    & ! [U_100] :
        ( sdtpldt0(xp,U_100) != xn
        | ~ aNaturalNumber0(U_100) ) ),
    inference(definitional_conversion,[status(esa)],[f_42_2]) ).

cnf(f_42_4,plain,
    ( sdtpldt0(xp,U_100) != xn
    | ~ aNaturalNumber0(U_100) ),
    inference(clausify,[status(thm)],[f_42_3]) ).

cnf(f_42_5,plain,
    ~ sdtlseqdt0(xp,xn),
    inference(clausify,[status(thm)],[f_42_3]) ).

fof(f_43_1,plain,
    ( ~ sdtlseqdt0(xp,xm)
    & ! [W0] :
        ( sdtpldt0(xp,W0) != xm
        | ~ aNaturalNumber0(W0) ) ),
    inference(fof_nnf,[status(thm)],[m__2075]) ).

fof(f_43_2,plain,
    ( ~ sdtlseqdt0(xp,xm)
    & ! [U_101] :
        ( sdtpldt0(xp,U_101) != xm
        | ~ aNaturalNumber0(U_101) ) ),
    inference(variable_rename,[status(thm)],[f_43_1]) ).

fof(f_43_3,plain,
    ( ~ sdtlseqdt0(xp,xm)
    & ! [U_101] :
        ( sdtpldt0(xp,U_101) != xm
        | ~ aNaturalNumber0(U_101) ) ),
    inference(definitional_conversion,[status(esa)],[f_43_2]) ).

cnf(f_43_4,plain,
    ( sdtpldt0(xp,U_101) != xm
    | ~ aNaturalNumber0(U_101) ),
    inference(clausify,[status(thm)],[f_43_3]) ).

cnf(f_43_5,plain,
    ~ sdtlseqdt0(xp,xm),
    inference(clausify,[status(thm)],[f_43_3]) ).

fof(f_44_1,plain,
    ( sdtlseqdt0(xm,xp)
    & ? [W0] :
        ( sdtpldt0(xm,W0) = xp
        & aNaturalNumber0(W0) )
    & xm != xp
    & sdtlseqdt0(xn,xp)
    & ? [W0] :
        ( sdtpldt0(xn,W0) = xp
        & aNaturalNumber0(W0) )
    & xn != xp ),
    inference(fof_nnf,[status(thm)],[m__2287]) ).

fof(f_44_2,plain,
    ( sdtlseqdt0(xm,xp)
    & ? [U_103] :
        ( sdtpldt0(xm,U_103) = xp
        & aNaturalNumber0(U_103) )
    & xm != xp
    & sdtlseqdt0(xn,xp)
    & ? [U_102] :
        ( sdtpldt0(xn,U_102) = xp
        & aNaturalNumber0(U_102) )
    & xn != xp ),
    inference(variable_rename,[status(thm)],[f_44_1]) ).

fof(f_44_3,plain,
    ( sdtlseqdt0(xm,xp)
    & ? [U_103] :
        ( sdtpldt0(xm,U_103) = xp
        & aNaturalNumber0(U_103) )
    & xm != xp
    & sdtlseqdt0(xn,xp)
    & sdtpldt0(xn,sK10) = xp
    & aNaturalNumber0(sK10)
    & xn != xp ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK10]),skolemize(U_102,sK10)],[f_44_2]) ).

fof(f_44_4,plain,
    ( sdtlseqdt0(xm,xp)
    & sdtpldt0(xm,sK11) = xp
    & aNaturalNumber0(sK11)
    & xm != xp
    & sdtlseqdt0(xn,xp)
    & sdtpldt0(xn,sK10) = xp
    & aNaturalNumber0(sK10)
    & xn != xp ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK11]),skolemize(U_103,sK11)],[f_44_3]) ).

fof(f_44_5,plain,
    ( sdtlseqdt0(xm,xp)
    & sdtpldt0(xm,sK11) = xp
    & aNaturalNumber0(sK11)
    & xm != xp
    & sdtlseqdt0(xn,xp)
    & sdtpldt0(xn,sK10) = xp
    & aNaturalNumber0(sK10)
    & xn != xp ),
    inference(definitional_conversion,[status(esa)],[f_44_4]) ).

cnf(f_44_6,plain,
    xn != xp,
    inference(clausify,[status(thm)],[f_44_5]) ).

cnf(f_44_7,plain,
    aNaturalNumber0(sK10),
    inference(clausify,[status(thm)],[f_44_5]) ).

cnf(f_44_8,plain,
    sdtpldt0(xn,sK10) = xp,
    inference(clausify,[status(thm)],[f_44_5]) ).

cnf(f_44_9,plain,
    sdtlseqdt0(xn,xp),
    inference(clausify,[status(thm)],[f_44_5]) ).

cnf(f_44_10,plain,
    xm != xp,
    inference(clausify,[status(thm)],[f_44_5]) ).

cnf(f_44_11,plain,
    aNaturalNumber0(sK11),
    inference(clausify,[status(thm)],[f_44_5]) ).

cnf(f_44_12,plain,
    sdtpldt0(xm,sK11) = xp,
    inference(clausify,[status(thm)],[f_44_5]) ).

cnf(f_44_13,plain,
    sdtlseqdt0(xm,xp),
    inference(clausify,[status(thm)],[f_44_5]) ).

fof(f_45_1,plain,
    ( xk = sdtsldt0(sdtasdt0(xn,xm),xp)
    & sdtasdt0(xn,xm) = sdtasdt0(xp,xk)
    & aNaturalNumber0(xk) ),
    inference(fof_nnf,[status(thm)],[m__2306]) ).

fof(f_45_2,plain,
    ( xk = sdtsldt0(sdtasdt0(xn,xm),xp)
    & sdtasdt0(xn,xm) = sdtasdt0(xp,xk)
    & aNaturalNumber0(xk) ),
    inference(definitional_conversion,[status(esa)],[f_45_1]) ).

cnf(f_45_3,plain,
    aNaturalNumber0(xk),
    inference(clausify,[status(thm)],[f_45_2]) ).

cnf(f_45_4,plain,
    sdtasdt0(xn,xm) = sdtasdt0(xp,xk),
    inference(clausify,[status(thm)],[f_45_2]) ).

cnf(f_45_5,plain,
    xk = sdtsldt0(sdtasdt0(xn,xm),xp),
    inference(clausify,[status(thm)],[f_45_2]) ).

fof(f_46_1,plain,
    ( xk != sz10
    & xk != sz00 ),
    inference(fof_nnf,[status(thm)],[m__2315]) ).

fof(f_46_2,plain,
    ( xk != sz10
    & xk != sz00 ),
    inference(definitional_conversion,[status(esa)],[f_46_1]) ).

cnf(f_46_3,plain,
    xk != sz00,
    inference(clausify,[status(thm)],[f_46_2]) ).

cnf(f_46_4,plain,
    xk != sz10,
    inference(clausify,[status(thm)],[f_46_2]) ).

fof(f_47_1,plain,
    ( xk != sz10
    & xk != sz00 ),
    inference(fof_nnf,[status(thm)],[m__2327]) ).

fof(f_47_2,plain,
    ( xk != sz10
    & xk != sz00 ),
    inference(definitional_conversion,[status(esa)],[f_47_1]) ).

cnf(f_47_3,plain,
    xk != sz00,
    inference(clausify,[status(thm)],[f_47_2]) ).

cnf(f_47_4,plain,
    xk != sz10,
    inference(clausify,[status(thm)],[f_47_2]) ).

fof(f_48_1,negated_conjecture,
    ~ ? [W0] :
        ( ( isPrime0(W0)
          | ( ! [W1] :
                ( ( doDivides0(W1,W0)
                  & ? [W2] :
                      ( W0 = sdtasdt0(W1,W2)
                      & aNaturalNumber0(W2) )
                  & aNaturalNumber0(W1) )
               => ( W1 = W0
                  | W1 = sz10 ) )
            & W0 != sz10
            & W0 != sz00 ) )
        & ( doDivides0(W0,xk)
          | ? [W1] :
              ( xk = sdtasdt0(W0,W1)
              & aNaturalNumber0(W1) ) )
        & aNaturalNumber0(W0) ),
    inference(negate,[status(cth)],[m__]) ).

fof(f_48_2,negated_conjecture,
    ! [W0] :
      ( ( ~ isPrime0(W0)
        & ( ? [W1] :
              ( W1 != W0
              & W1 != sz10
              & doDivides0(W1,W0)
              & ? [W2] :
                  ( W0 = sdtasdt0(W1,W2)
                  & aNaturalNumber0(W2) )
              & aNaturalNumber0(W1) )
          | W0 = sz10
          | W0 = sz00 ) )
      | ( ~ doDivides0(W0,xk)
        & ! [W1] :
            ( xk != sdtasdt0(W0,W1)
            | ~ aNaturalNumber0(W1) ) )
      | ~ aNaturalNumber0(W0) ),
    inference(fof_nnf,[status(thm)],[f_48_1]) ).

fof(f_48_3,negated_conjecture,
    ! [U_107] :
      ( ( ~ isPrime0(U_107)
        & ( ? [U_106] :
              ( U_106 != U_107
              & U_106 != sz10
              & doDivides0(U_106,U_107)
              & ? [U_105] :
                  ( U_107 = sdtasdt0(U_106,U_105)
                  & aNaturalNumber0(U_105) )
              & aNaturalNumber0(U_106) )
          | U_107 = sz10
          | U_107 = sz00 ) )
      | ( ~ doDivides0(U_107,xk)
        & ! [U_104] :
            ( xk != sdtasdt0(U_107,U_104)
            | ~ aNaturalNumber0(U_104) ) )
      | ~ aNaturalNumber0(U_107) ),
    inference(variable_rename,[status(thm)],[f_48_2]) ).

fof(f_48_4,negated_conjecture,
    ! [U_107] :
      ( ( ~ isPrime0(U_107)
        & ( ( sK12(U_107) != U_107
            & sK12(U_107) != sz10
            & doDivides0(sK12(U_107),U_107)
            & ? [U_105] :
                ( U_107 = sdtasdt0(sK12(U_107),U_105)
                & aNaturalNumber0(U_105) )
            & aNaturalNumber0(sK12(U_107)) )
          | U_107 = sz10
          | U_107 = sz00 ) )
      | ( ~ doDivides0(U_107,xk)
        & ! [U_104] :
            ( xk != sdtasdt0(U_107,U_104)
            | ~ aNaturalNumber0(U_104) ) )
      | ~ aNaturalNumber0(U_107) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK12]),skolemize(U_106,sK12(U_107))],[f_48_3]) ).

fof(f_48_5,negated_conjecture,
    ! [U_107] :
      ( ( ~ isPrime0(U_107)
        & ( ( sK12(U_107) != U_107
            & sK12(U_107) != sz10
            & doDivides0(sK12(U_107),U_107)
            & U_107 = sdtasdt0(sK12(U_107),sK13(U_107))
            & aNaturalNumber0(sK13(U_107))
            & aNaturalNumber0(sK12(U_107)) )
          | U_107 = sz10
          | U_107 = sz00 ) )
      | ( ~ doDivides0(U_107,xk)
        & ! [U_104] :
            ( xk != sdtasdt0(U_107,U_104)
            | ~ aNaturalNumber0(U_104) ) )
      | ~ aNaturalNumber0(U_107) ),
    inference(skolemize,[status(esa),new_symbols(skolem,[sK13]),skolemize(U_105,sK13(U_107))],[f_48_4]) ).

fof(f_48_6,negated_conjecture,
    ( ! [U_107] :
        ( sK12(U_107) != U_107
        | ~ sP30(U_107) )
    & ! [U_107] :
        ( sK12(U_107) != sz10
        | ~ sP30(U_107) )
    & ! [U_107] :
        ( doDivides0(sK12(U_107),U_107)
        | ~ sP30(U_107) )
    & ! [U_107] :
        ( U_107 = sdtasdt0(sK12(U_107),sK13(U_107))
        | ~ sP30(U_107) )
    & ! [U_107] :
        ( aNaturalNumber0(sK13(U_107))
        | ~ sP30(U_107) )
    & ! [U_107] :
        ( aNaturalNumber0(sK12(U_107))
        | ~ sP30(U_107) )
    & ! [U_107] :
        ( ~ isPrime0(U_107)
        | ~ sP31(U_107) )
    & ! [U_107] :
        ( sP30(U_107)
        | U_107 = sz10
        | U_107 = sz00
        | ~ sP31(U_107) )
    & ! [U_104,U_107] :
        ( ~ doDivides0(U_107,xk)
        | ~ sP29(U_104,U_107) )
    & ! [U_104,U_107] :
        ( xk != sdtasdt0(U_107,U_104)
        | ~ aNaturalNumber0(U_104)
        | ~ sP29(U_104,U_107) )
    & ! [U_104,U_107] :
        ( sP31(U_107)
        | sP29(U_104,U_107)
        | ~ aNaturalNumber0(U_107) ) ),
    inference(definitional_conversion,[status(esa),new_symbols(definitional,[sP29,sP30,sP31])],[f_48_5]) ).

cnf(f_48_7,negated_conjecture,
    ( sP31(U_107)
    | sP29(U_104,U_107)
    | ~ aNaturalNumber0(U_107) ),
    inference(clausify,[status(thm)],[f_48_6]) ).

cnf(f_48_8,negated_conjecture,
    ( xk != sdtasdt0(U_107,U_104)
    | ~ aNaturalNumber0(U_104)
    | ~ sP29(U_104,U_107) ),
    inference(clausify,[status(thm)],[f_48_6]) ).

cnf(f_48_9,negated_conjecture,
    ( ~ doDivides0(U_107,xk)
    | ~ sP29(U_104,U_107) ),
    inference(clausify,[status(thm)],[f_48_6]) ).

cnf(f_48_10,negated_conjecture,
    ( sP30(U_107)
    | U_107 = sz10
    | U_107 = sz00
    | ~ sP31(U_107) ),
    inference(clausify,[status(thm)],[f_48_6]) ).

cnf(f_48_11,negated_conjecture,
    ( ~ isPrime0(U_107)
    | ~ sP31(U_107) ),
    inference(clausify,[status(thm)],[f_48_6]) ).

cnf(f_48_12,negated_conjecture,
    ( aNaturalNumber0(sK12(U_107))
    | ~ sP30(U_107) ),
    inference(clausify,[status(thm)],[f_48_6]) ).

cnf(f_48_13,negated_conjecture,
    ( aNaturalNumber0(sK13(U_107))
    | ~ sP30(U_107) ),
    inference(clausify,[status(thm)],[f_48_6]) ).

cnf(f_48_14,negated_conjecture,
    ( U_107 = sdtasdt0(sK12(U_107),sK13(U_107))
    | ~ sP30(U_107) ),
    inference(clausify,[status(thm)],[f_48_6]) ).

cnf(f_48_15,negated_conjecture,
    ( doDivides0(sK12(U_107),U_107)
    | ~ sP30(U_107) ),
    inference(clausify,[status(thm)],[f_48_6]) ).

cnf(f_48_16,negated_conjecture,
    ( sK12(U_107) != sz10
    | ~ sP30(U_107) ),
    inference(clausify,[status(thm)],[f_48_6]) ).

cnf(f_48_17,negated_conjecture,
    ( sK12(U_107) != U_107
    | ~ sP30(U_107) ),
    inference(clausify,[status(thm)],[f_48_6]) ).

cnf(f_1_5_true,plain,
    $true,
    inference(clause_is_true,[status(thm)],[f_1_5]) ).

cnf(f_28_4_true,plain,
    $true,
    inference(clause_is_true,[status(thm)],[f_28_4]) ).

cnf(equality_1,axiom,
    Eq_x_0 = Eq_x_0,
    theory(equality,[reflexivity]) ).

cnf(equality_2,axiom,
    ( Eq_x_1 = Eq_x_0
    | Eq_x_0 != Eq_x_1 ),
    theory(equality,[symmetry]) ).

cnf(equality_3,axiom,
    ( Eq_x_0 = Eq_x_2
    | Eq_x_1 != Eq_x_2
    | Eq_x_0 != Eq_x_1 ),
    theory(equality,[transitivity]) ).

cnf(equality_4,axiom,
    ( sdtpldt0(Eq_x_0,Eq_x_1) = sdtpldt0(Eq_y_0,Eq_y_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_5,axiom,
    ( sdtasdt0(Eq_x_0,Eq_x_1) = sdtasdt0(Eq_y_0,Eq_y_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_6,axiom,
    ( sdtmndt0(Eq_x_0,Eq_x_1) = sdtmndt0(Eq_y_0,Eq_y_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_7,axiom,
    ( sdtsldt0(Eq_x_0,Eq_x_1) = sdtsldt0(Eq_y_0,Eq_y_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_8,axiom,
    ( sK1(Eq_x_0,Eq_x_1) = sK1(Eq_y_0,Eq_y_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_9,axiom,
    ( sK2(Eq_x_0,Eq_x_1) = sK2(Eq_y_0,Eq_y_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_10,axiom,
    ( sK3(Eq_x_0) = sK3(Eq_y_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_11,axiom,
    ( sK4(Eq_x_0) = sK4(Eq_y_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_12,axiom,
    ( sK5(Eq_x_0,Eq_x_1,Eq_x_2) = sK5(Eq_y_0,Eq_y_1,Eq_y_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_13,axiom,
    ( sK6(Eq_x_0,Eq_x_1,Eq_x_2) = sK6(Eq_y_0,Eq_y_1,Eq_y_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_14,axiom,
    ( sK7(Eq_x_0,Eq_x_1,Eq_x_2) = sK7(Eq_y_0,Eq_y_1,Eq_y_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_15,axiom,
    ( sK8(Eq_x_0,Eq_x_1,Eq_x_2) = sK8(Eq_y_0,Eq_y_1,Eq_y_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_16,axiom,
    ( sK12(Eq_x_0) = sK12(Eq_y_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_17,axiom,
    ( sK13(Eq_x_0) = sK13(Eq_y_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_functions]) ).

cnf(equality_18,axiom,
    ( aNaturalNumber0(Eq_y_0)
    | ~ aNaturalNumber0(Eq_x_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_19,axiom,
    ( sdtlseqdt0(Eq_y_0,Eq_y_1)
    | ~ sdtlseqdt0(Eq_x_0,Eq_x_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_20,axiom,
    ( iLess0(Eq_y_0,Eq_y_1)
    | ~ iLess0(Eq_x_0,Eq_x_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_21,axiom,
    ( doDivides0(Eq_y_0,Eq_y_1)
    | ~ doDivides0(Eq_x_0,Eq_x_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_22,axiom,
    ( isPrime0(Eq_y_0)
    | ~ isPrime0(Eq_x_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_23,axiom,
    ( sP0(Eq_y_0)
    | ~ sP0(Eq_x_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_24,axiom,
    ( sP1(Eq_y_0)
    | ~ sP1(Eq_x_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_25,axiom,
    ( sP2(Eq_y_0)
    | ~ sP2(Eq_x_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_26,axiom,
    ( sP3(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP3(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_27,axiom,
    ( sP4(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP4(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_28,axiom,
    ( sP5(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP5(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_29,axiom,
    ( sP6(Eq_y_0,Eq_y_1)
    | ~ sP6(Eq_x_0,Eq_x_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_30,axiom,
    ( sP7(Eq_y_0,Eq_y_1)
    | ~ sP7(Eq_x_0,Eq_x_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_31,axiom,
    ( sP8(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP8(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_32,axiom,
    ( sP9(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP9(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_33,axiom,
    ( sP10(Eq_y_0,Eq_y_1,Eq_y_2,Eq_y_3)
    | ~ sP10(Eq_x_0,Eq_x_1,Eq_x_2,Eq_x_3)
    | Eq_x_3 != Eq_y_3
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_34,axiom,
    ( sP11(Eq_y_0,Eq_y_1)
    | ~ sP11(Eq_x_0,Eq_x_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_35,axiom,
    ( sP12(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP12(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_36,axiom,
    ( sP13(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP13(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_37,axiom,
    ( sP14(Eq_y_0)
    | ~ sP14(Eq_x_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_38,axiom,
    ( sP15(Eq_y_0,Eq_y_1)
    | ~ sP15(Eq_x_0,Eq_x_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_39,axiom,
    ( sP16(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP16(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_40,axiom,
    ( sP17(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP17(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_41,axiom,
    ( sP18(Eq_y_0,Eq_y_1,Eq_y_2,Eq_y_3)
    | ~ sP18(Eq_x_0,Eq_x_1,Eq_x_2,Eq_x_3)
    | Eq_x_3 != Eq_y_3
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_42,axiom,
    ( sP19(Eq_y_0,Eq_y_1)
    | ~ sP19(Eq_x_0,Eq_x_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_43,axiom,
    ( sP20(Eq_y_0)
    | ~ sP20(Eq_x_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_44,axiom,
    ( sP21(Eq_y_0,Eq_y_1)
    | ~ sP21(Eq_x_0,Eq_x_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_45,axiom,
    ( sP22(Eq_y_0)
    | ~ sP22(Eq_x_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_46,axiom,
    ( sP23(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP23(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_47,axiom,
    ( sP24(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP24(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_48,axiom,
    ( sP25(Eq_y_0,Eq_y_1,Eq_y_2,Eq_y_3)
    | ~ sP25(Eq_x_0,Eq_x_1,Eq_x_2,Eq_x_3)
    | Eq_x_3 != Eq_y_3
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_49,axiom,
    ( sP26(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP26(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_50,axiom,
    ( sP27(Eq_y_0,Eq_y_1,Eq_y_2)
    | ~ sP27(Eq_x_0,Eq_x_1,Eq_x_2)
    | Eq_x_2 != Eq_y_2
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_51,axiom,
    ( sP28(Eq_y_0,Eq_y_1)
    | ~ sP28(Eq_x_0,Eq_x_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_52,axiom,
    ( sP29(Eq_y_0,Eq_y_1)
    | ~ sP29(Eq_x_0,Eq_x_1)
    | Eq_x_1 != Eq_y_1
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_53,axiom,
    ( sP30(Eq_y_0)
    | ~ sP30(Eq_x_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(equality_54,axiom,
    ( sP31(Eq_y_0)
    | ~ sP31(Eq_x_0)
    | Eq_x_0 != Eq_y_0 ),
    theory(equality,[substitution_predicates]) ).

cnf(sat_proved,plain,
    $false,
    inference(cadical,[status(thm)],[]) ).

%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.03  % Problem  : NUM500+3 : TPTP v9.3.1. Released v4.0.0.
% 0.00/0.03  This is a FOF_THM_RFO_SEQ problem
% 0.00/0.04  % Command  : /export/starexec/sandbox2/solver/bin/connect++ --verbosity 1 --no-colour --tptp-proof --schedule default --timeout 300 /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.08/0.37  % Computer : n014.cluster.edu
% 0.08/0.37  % Model    : x86_64 x86_64
% 0.08/0.37  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.08/0.37  % Memory   : 8046.5625MB
% 0.08/0.37  % OS       : Linux 6.8.0-71-generic
% 0.08/0.37  % CPULimit : 300
% 0.08/0.37  % WCLimit  : 300
% 0.08/0.37  % DateTime : Sat Sep 19 18:38:22 UTC 2026
% 0.08/0.37  % CPUTime  : 
% 273.86/274.15  % SZS status Theorem for theBenchmark
% 273.86/274.15  % SZS output start Proof for theBenchmark
% See solution above
%------------------------------------------------------------------------------