TSTP Solution File: GRP077-1 by Bliksem---1.12
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%------------------------------------------------------------------------------
% File : Bliksem---1.12
% Problem : GRP077-1 : TPTP v8.1.0. Bugfixed v2.3.0.
% Transfm : none
% Format : tptp:raw
% Command : bliksem %s
% Computer : n023.cluster.edu
% Model : x86_64 x86_64
% CPU : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory : 8042.1875MB
% OS : Linux 3.10.0-693.el7.x86_64
% CPULimit : 300s
% WCLimit : 0s
% DateTime : Sat Jul 16 07:34:45 EDT 2022
% Result : Unsatisfiable 0.85s 1.22s
% Output : Refutation 0.85s
% Verified :
% SZS Type : -
% Comments :
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.11/0.12 % Problem : GRP077-1 : TPTP v8.1.0. Bugfixed v2.3.0.
% 0.11/0.13 % Command : bliksem %s
% 0.12/0.34 % Computer : n023.cluster.edu
% 0.12/0.34 % Model : x86_64 x86_64
% 0.12/0.34 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.12/0.34 % Memory : 8042.1875MB
% 0.12/0.34 % OS : Linux 3.10.0-693.el7.x86_64
% 0.12/0.34 % CPULimit : 300
% 0.12/0.34 % DateTime : Tue Jun 14 02:58:51 EDT 2022
% 0.12/0.34 % CPUTime :
% 0.85/1.22 *** allocated 10000 integers for termspace/termends
% 0.85/1.22 *** allocated 10000 integers for clauses
% 0.85/1.22 *** allocated 10000 integers for justifications
% 0.85/1.22 Bliksem 1.12
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 Automatic Strategy Selection
% 0.85/1.22
% 0.85/1.22 Clauses:
% 0.85/1.22 [
% 0.85/1.22 [ =( 'double_divide'( X, 'double_divide'( 'double_divide'(
% 0.85/1.22 'double_divide'( identity, 'double_divide'( 'double_divide'( X, identity
% 0.85/1.22 ), 'double_divide'( Y, Z ) ) ), Y ), identity ) ), Z ) ],
% 0.85/1.22 [ =( multiply( X, Y ), 'double_divide'( 'double_divide'( Y, X ),
% 0.85/1.22 identity ) ) ],
% 0.85/1.22 [ =( inverse( X ), 'double_divide'( X, identity ) ) ],
% 0.85/1.22 [ =( identity, 'double_divide'( X, inverse( X ) ) ) ],
% 0.85/1.22 [ ~( =( multiply( inverse( a1 ), a1 ), identity ) ), ~( =( multiply(
% 0.85/1.22 identity, a2 ), a2 ) ), ~( =( multiply( multiply( a3, b3 ), c3 ),
% 0.85/1.22 multiply( a3, multiply( b3, c3 ) ) ) ) ]
% 0.85/1.22 ] .
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 percentage equality = 1.000000, percentage horn = 1.000000
% 0.85/1.22 This is a pure equality problem
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 Options Used:
% 0.85/1.22
% 0.85/1.22 useres = 1
% 0.85/1.22 useparamod = 1
% 0.85/1.22 useeqrefl = 1
% 0.85/1.22 useeqfact = 1
% 0.85/1.22 usefactor = 1
% 0.85/1.22 usesimpsplitting = 0
% 0.85/1.22 usesimpdemod = 5
% 0.85/1.22 usesimpres = 3
% 0.85/1.22
% 0.85/1.22 resimpinuse = 1000
% 0.85/1.22 resimpclauses = 20000
% 0.85/1.22 substype = eqrewr
% 0.85/1.22 backwardsubs = 1
% 0.85/1.22 selectoldest = 5
% 0.85/1.22
% 0.85/1.22 litorderings [0] = split
% 0.85/1.22 litorderings [1] = extend the termordering, first sorting on arguments
% 0.85/1.22
% 0.85/1.22 termordering = kbo
% 0.85/1.22
% 0.85/1.22 litapriori = 0
% 0.85/1.22 termapriori = 1
% 0.85/1.22 litaposteriori = 0
% 0.85/1.22 termaposteriori = 0
% 0.85/1.22 demodaposteriori = 0
% 0.85/1.22 ordereqreflfact = 0
% 0.85/1.22
% 0.85/1.22 litselect = negord
% 0.85/1.22
% 0.85/1.22 maxweight = 15
% 0.85/1.22 maxdepth = 30000
% 0.85/1.22 maxlength = 115
% 0.85/1.22 maxnrvars = 195
% 0.85/1.22 excuselevel = 1
% 0.85/1.22 increasemaxweight = 1
% 0.85/1.22
% 0.85/1.22 maxselected = 10000000
% 0.85/1.22 maxnrclauses = 10000000
% 0.85/1.22
% 0.85/1.22 showgenerated = 0
% 0.85/1.22 showkept = 0
% 0.85/1.22 showselected = 0
% 0.85/1.22 showdeleted = 0
% 0.85/1.22 showresimp = 1
% 0.85/1.22 showstatus = 2000
% 0.85/1.22
% 0.85/1.22 prologoutput = 1
% 0.85/1.22 nrgoals = 5000000
% 0.85/1.22 totalproof = 1
% 0.85/1.22
% 0.85/1.22 Symbols occurring in the translation:
% 0.85/1.22
% 0.85/1.22 {} [0, 0] (w:1, o:2, a:1, s:1, b:0),
% 0.85/1.22 . [1, 2] (w:1, o:24, a:1, s:1, b:0),
% 0.85/1.22 ! [4, 1] (w:0, o:18, a:1, s:1, b:0),
% 0.85/1.22 = [13, 2] (w:1, o:0, a:0, s:1, b:0),
% 0.85/1.22 ==> [14, 2] (w:1, o:0, a:0, s:1, b:0),
% 0.85/1.22 identity [40, 0] (w:1, o:10, a:1, s:1, b:0),
% 0.85/1.22 'double_divide' [41, 2] (w:1, o:49, a:1, s:1, b:0),
% 0.85/1.22 multiply [44, 2] (w:1, o:50, a:1, s:1, b:0),
% 0.85/1.22 inverse [45, 1] (w:1, o:23, a:1, s:1, b:0),
% 0.85/1.22 a1 [46, 0] (w:1, o:13, a:1, s:1, b:0),
% 0.85/1.22 a2 [47, 0] (w:1, o:14, a:1, s:1, b:0),
% 0.85/1.22 a3 [48, 0] (w:1, o:15, a:1, s:1, b:0),
% 0.85/1.22 b3 [49, 0] (w:1, o:16, a:1, s:1, b:0),
% 0.85/1.22 c3 [50, 0] (w:1, o:17, a:1, s:1, b:0).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 Starting Search:
% 0.85/1.22
% 0.85/1.22 Resimplifying inuse:
% 0.85/1.22 Done
% 0.85/1.22
% 0.85/1.22 Resimplifying inuse:
% 0.85/1.22 Done
% 0.85/1.22
% 0.85/1.22 Failed to find proof!
% 0.85/1.22 maxweight = 15
% 0.85/1.22 maxnrclauses = 10000000
% 0.85/1.22 Generated: 2816
% 0.85/1.22 Kept: 144
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 The strategy used was not complete!
% 0.85/1.22
% 0.85/1.22 Increased maxweight to 16
% 0.85/1.22
% 0.85/1.22 Starting Search:
% 0.85/1.22
% 0.85/1.22 Resimplifying inuse:
% 0.85/1.22 Done
% 0.85/1.22
% 0.85/1.22 Resimplifying inuse:
% 0.85/1.22 Done
% 0.85/1.22
% 0.85/1.22 Failed to find proof!
% 0.85/1.22 maxweight = 16
% 0.85/1.22 maxnrclauses = 10000000
% 0.85/1.22 Generated: 3727
% 0.85/1.22 Kept: 156
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 The strategy used was not complete!
% 0.85/1.22
% 0.85/1.22 Increased maxweight to 17
% 0.85/1.22
% 0.85/1.22 Starting Search:
% 0.85/1.22
% 0.85/1.22 Resimplifying inuse:
% 0.85/1.22 Done
% 0.85/1.22
% 0.85/1.22 Resimplifying inuse:
% 0.85/1.22 Done
% 0.85/1.22
% 0.85/1.22 Failed to find proof!
% 0.85/1.22 maxweight = 17
% 0.85/1.22 maxnrclauses = 10000000
% 0.85/1.22 Generated: 4598
% 0.85/1.22 Kept: 164
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 The strategy used was not complete!
% 0.85/1.22
% 0.85/1.22 Increased maxweight to 18
% 0.85/1.22
% 0.85/1.22 Starting Search:
% 0.85/1.22
% 0.85/1.22 Resimplifying inuse:
% 0.85/1.22 Done
% 0.85/1.22
% 0.85/1.22 Resimplifying inuse:
% 0.85/1.22 Done
% 0.85/1.22
% 0.85/1.22 Failed to find proof!
% 0.85/1.22 maxweight = 18
% 0.85/1.22 maxnrclauses = 10000000
% 0.85/1.22 Generated: 4599
% 0.85/1.22 Kept: 165
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 The strategy used was not complete!
% 0.85/1.22
% 0.85/1.22 Increased maxweight to 19
% 0.85/1.22
% 0.85/1.22 Starting Search:
% 0.85/1.22
% 0.85/1.22 Resimplifying inuse:
% 0.85/1.22 Done
% 0.85/1.22
% 0.85/1.22 Resimplifying inuse:
% 0.85/1.22 Done
% 0.85/1.22
% 0.85/1.22 Failed to find proof!
% 0.85/1.22 maxweight = 19
% 0.85/1.22 maxnrclauses = 10000000
% 0.85/1.22 Generated: 7875
% 0.85/1.22 Kept: 182
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 The strategy used was not complete!
% 0.85/1.22
% 0.85/1.22 Increased maxweight to 20
% 0.85/1.22
% 0.85/1.22 Starting Search:
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 Bliksems!, er is een bewijs:
% 0.85/1.22 % SZS status Unsatisfiable
% 0.85/1.22 % SZS output start Refutation
% 0.85/1.22
% 0.85/1.22 clause( 0, [ =( 'double_divide'( X, 'double_divide'( 'double_divide'(
% 0.85/1.22 'double_divide'( identity, 'double_divide'( 'double_divide'( X, identity
% 0.85/1.22 ), 'double_divide'( Y, Z ) ) ), Y ), identity ) ), Z ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 1, [ =( 'double_divide'( 'double_divide'( Y, X ), identity ),
% 0.85/1.22 multiply( X, Y ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 2, [ =( 'double_divide'( X, identity ), inverse( X ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 3, [ =( 'double_divide'( X, inverse( X ) ), identity ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 4, [ ~( =( multiply( inverse( a1 ), a1 ), identity ) ), ~( =(
% 0.85/1.22 multiply( identity, a2 ), a2 ) ), ~( =( multiply( a3, multiply( b3, c3 )
% 0.85/1.22 ), multiply( multiply( a3, b3 ), c3 ) ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 7, [ =( multiply( inverse( X ), X ), inverse( identity ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 8, [ =( multiply( identity, X ), inverse( inverse( X ) ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 9, [ =( multiply( multiply( Y, X ), 'double_divide'( X, Y ) ),
% 0.85/1.22 inverse( identity ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 10, [ =( 'double_divide'( X, multiply( Y, 'double_divide'( identity
% 0.85/1.22 , 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) ), Z ) ]
% 0.85/1.22 )
% 0.85/1.22 .
% 0.85/1.22 clause( 14, [ =( 'double_divide'( X, inverse( multiply( 'double_divide'(
% 0.85/1.22 inverse( X ), 'double_divide'( identity, Y ) ), identity ) ) ), Y ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 17, [ =( 'double_divide'( Y, multiply( X, 'double_divide'( identity
% 0.85/1.22 , inverse( inverse( Y ) ) ) ) ), inverse( X ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 19, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply( multiply(
% 0.85/1.22 a3, b3 ), c3 ) ) ), ~( =( inverse( identity ), identity ) ), ~( =(
% 0.85/1.22 inverse( inverse( a2 ) ), a2 ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 20, [ =( 'double_divide'( Z, multiply( X, 'double_divide'( identity
% 0.85/1.22 , 'double_divide'( inverse( Z ), inverse( Y ) ) ) ) ), multiply( Y,
% 0.85/1.22 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 22, [ =( inverse( multiply( inverse( inverse( X ) ), identity ) ),
% 0.85/1.22 'double_divide'( X, inverse( identity ) ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 24, [ =( 'double_divide'( X, 'double_divide'( X, inverse( identity
% 0.85/1.22 ) ) ), inverse( identity ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 27, [ =( 'double_divide'( X, multiply( inverse( X ), identity ) ),
% 0.85/1.22 inverse( identity ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 31, [ =( multiply( inverse( X ), identity ), 'double_divide'( X,
% 0.85/1.22 inverse( identity ) ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 32, [ =( inverse( identity ), identity ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 34, [ =( 'double_divide'( identity, multiply( X, identity ) ),
% 0.85/1.22 inverse( X ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 38, [ =( multiply( multiply( X, identity ), identity ), inverse(
% 0.85/1.22 inverse( X ) ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 41, [ =( multiply( inverse( X ), identity ), inverse( X ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 42, [ =( inverse( inverse( inverse( X ) ) ), inverse( X ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 43, [ =( 'double_divide'( identity, inverse( X ) ), inverse(
% 0.85/1.22 inverse( X ) ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 46, [ =( multiply( multiply( Y, X ), identity ), multiply( Y, X ) )
% 0.85/1.22 ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 51, [ =( 'double_divide'( X, multiply( Y, inverse( X ) ) ), inverse(
% 0.85/1.22 Y ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 55, [ =( multiply( X, identity ), inverse( inverse( X ) ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 65, [ =( inverse( inverse( Y ) ), Y ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 69, [ =( 'double_divide'( identity, X ), inverse( X ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 71, [ =( inverse( multiply( Y, X ) ), 'double_divide'( X, Y ) ) ]
% 0.85/1.22 )
% 0.85/1.22 .
% 0.85/1.22 clause( 72, [ =( 'double_divide'( 'double_divide'( X, Y ), X ), Y ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 77, [ =( 'double_divide'( Y, 'double_divide'( X, Y ) ), X ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 78, [ =( multiply( Y, inverse( X ) ), 'double_divide'( inverse( Y )
% 0.85/1.22 , X ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 83, [ =( multiply( X, 'double_divide'( X, Y ) ), inverse( Y ) ) ]
% 0.85/1.22 )
% 0.85/1.22 .
% 0.85/1.22 clause( 87, [ =( multiply( 'double_divide'( Y, X ), X ), inverse( Y ) ) ]
% 0.85/1.22 )
% 0.85/1.22 .
% 0.85/1.22 clause( 89, [ =( 'double_divide'( 'double_divide'( multiply( Z, Y ), X ), Y
% 0.85/1.22 ), multiply( X, Z ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 103, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply( multiply(
% 0.85/1.22 a3, b3 ), c3 ) ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 110, [ =( multiply( Z, multiply( X, Y ) ), multiply( multiply( Z, X
% 0.85/1.22 ), Y ) ) ] )
% 0.85/1.22 .
% 0.85/1.22 clause( 116, [] )
% 0.85/1.22 .
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 % SZS output end Refutation
% 0.85/1.22 found a proof!
% 0.85/1.22
% 0.85/1.22 % ABCDEFGHIJKLMNOPQRSTUVWXYZ
% 0.85/1.22
% 0.85/1.22 initialclauses(
% 0.85/1.22 [ clause( 118, [ =( 'double_divide'( X, 'double_divide'( 'double_divide'(
% 0.85/1.22 'double_divide'( identity, 'double_divide'( 'double_divide'( X, identity
% 0.85/1.22 ), 'double_divide'( Y, Z ) ) ), Y ), identity ) ), Z ) ] )
% 0.85/1.22 , clause( 119, [ =( multiply( X, Y ), 'double_divide'( 'double_divide'( Y,
% 0.85/1.22 X ), identity ) ) ] )
% 0.85/1.22 , clause( 120, [ =( inverse( X ), 'double_divide'( X, identity ) ) ] )
% 0.85/1.22 , clause( 121, [ =( identity, 'double_divide'( X, inverse( X ) ) ) ] )
% 0.85/1.22 , clause( 122, [ ~( =( multiply( inverse( a1 ), a1 ), identity ) ), ~( =(
% 0.85/1.22 multiply( identity, a2 ), a2 ) ), ~( =( multiply( multiply( a3, b3 ), c3
% 0.85/1.22 ), multiply( a3, multiply( b3, c3 ) ) ) ) ] )
% 0.85/1.22 ] ).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 subsumption(
% 0.85/1.22 clause( 0, [ =( 'double_divide'( X, 'double_divide'( 'double_divide'(
% 0.85/1.22 'double_divide'( identity, 'double_divide'( 'double_divide'( X, identity
% 0.85/1.22 ), 'double_divide'( Y, Z ) ) ), Y ), identity ) ), Z ) ] )
% 0.85/1.22 , clause( 118, [ =( 'double_divide'( X, 'double_divide'( 'double_divide'(
% 0.85/1.22 'double_divide'( identity, 'double_divide'( 'double_divide'( X, identity
% 0.85/1.22 ), 'double_divide'( Y, Z ) ) ), Y ), identity ) ), Z ) ] )
% 0.85/1.22 , substitution( 0, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] ),
% 0.85/1.22 permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 eqswap(
% 0.85/1.22 clause( 125, [ =( 'double_divide'( 'double_divide'( Y, X ), identity ),
% 0.85/1.22 multiply( X, Y ) ) ] )
% 0.85/1.22 , clause( 119, [ =( multiply( X, Y ), 'double_divide'( 'double_divide'( Y,
% 0.85/1.22 X ), identity ) ) ] )
% 0.85/1.22 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 subsumption(
% 0.85/1.22 clause( 1, [ =( 'double_divide'( 'double_divide'( Y, X ), identity ),
% 0.85/1.22 multiply( X, Y ) ) ] )
% 0.85/1.22 , clause( 125, [ =( 'double_divide'( 'double_divide'( Y, X ), identity ),
% 0.85/1.22 multiply( X, Y ) ) ] )
% 0.85/1.22 , substitution( 0, [ :=( X, X ), :=( Y, Y )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.22 )] ) ).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 eqswap(
% 0.85/1.22 clause( 128, [ =( 'double_divide'( X, identity ), inverse( X ) ) ] )
% 0.85/1.22 , clause( 120, [ =( inverse( X ), 'double_divide'( X, identity ) ) ] )
% 0.85/1.22 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 subsumption(
% 0.85/1.22 clause( 2, [ =( 'double_divide'( X, identity ), inverse( X ) ) ] )
% 0.85/1.22 , clause( 128, [ =( 'double_divide'( X, identity ), inverse( X ) ) ] )
% 0.85/1.22 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 eqswap(
% 0.85/1.22 clause( 132, [ =( 'double_divide'( X, inverse( X ) ), identity ) ] )
% 0.85/1.22 , clause( 121, [ =( identity, 'double_divide'( X, inverse( X ) ) ) ] )
% 0.85/1.22 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 subsumption(
% 0.85/1.22 clause( 3, [ =( 'double_divide'( X, inverse( X ) ), identity ) ] )
% 0.85/1.22 , clause( 132, [ =( 'double_divide'( X, inverse( X ) ), identity ) ] )
% 0.85/1.22 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 eqswap(
% 0.85/1.22 clause( 139, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply( multiply(
% 0.85/1.22 a3, b3 ), c3 ) ) ), ~( =( multiply( inverse( a1 ), a1 ), identity ) ),
% 0.85/1.22 ~( =( multiply( identity, a2 ), a2 ) ) ] )
% 0.85/1.22 , clause( 122, [ ~( =( multiply( inverse( a1 ), a1 ), identity ) ), ~( =(
% 0.85/1.22 multiply( identity, a2 ), a2 ) ), ~( =( multiply( multiply( a3, b3 ), c3
% 0.85/1.22 ), multiply( a3, multiply( b3, c3 ) ) ) ) ] )
% 0.85/1.22 , 2, substitution( 0, [] )).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 subsumption(
% 0.85/1.22 clause( 4, [ ~( =( multiply( inverse( a1 ), a1 ), identity ) ), ~( =(
% 0.85/1.22 multiply( identity, a2 ), a2 ) ), ~( =( multiply( a3, multiply( b3, c3 )
% 0.85/1.22 ), multiply( multiply( a3, b3 ), c3 ) ) ) ] )
% 0.85/1.22 , clause( 139, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply(
% 0.85/1.22 multiply( a3, b3 ), c3 ) ) ), ~( =( multiply( inverse( a1 ), a1 ),
% 0.85/1.22 identity ) ), ~( =( multiply( identity, a2 ), a2 ) ) ] )
% 0.85/1.22 , substitution( 0, [] ), permutation( 0, [ ==>( 0, 2 ), ==>( 1, 0 ), ==>( 2
% 0.85/1.22 , 1 )] ) ).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 paramod(
% 0.85/1.22 clause( 146, [ =( inverse( 'double_divide'( X, Y ) ), multiply( Y, X ) ) ]
% 0.85/1.22 )
% 0.85/1.22 , clause( 2, [ =( 'double_divide'( X, identity ), inverse( X ) ) ] )
% 0.85/1.22 , 0, clause( 1, [ =( 'double_divide'( 'double_divide'( Y, X ), identity ),
% 0.85/1.22 multiply( X, Y ) ) ] )
% 0.85/1.22 , 0, 1, substitution( 0, [ :=( X, 'double_divide'( X, Y ) )] ),
% 0.85/1.22 substitution( 1, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 subsumption(
% 0.85/1.22 clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ] )
% 0.85/1.22 , clause( 146, [ =( inverse( 'double_divide'( X, Y ) ), multiply( Y, X ) )
% 0.85/1.22 ] )
% 0.85/1.22 , substitution( 0, [ :=( X, Y ), :=( Y, X )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.22 )] ) ).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 eqswap(
% 0.85/1.22 clause( 149, [ =( multiply( Y, X ), inverse( 'double_divide'( X, Y ) ) ) ]
% 0.85/1.22 )
% 0.85/1.22 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.22 )
% 0.85/1.22 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.22
% 0.85/1.22
% 0.85/1.22 paramod(
% 0.85/1.22 clause( 152, [ =( multiply( inverse( X ), X ), inverse( identity ) ) ] )
% 0.85/1.23 , clause( 3, [ =( 'double_divide'( X, inverse( X ) ), identity ) ] )
% 0.85/1.23 , 0, clause( 149, [ =( multiply( Y, X ), inverse( 'double_divide'( X, Y ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 6, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, X ),
% 0.85/1.23 :=( Y, inverse( X ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 7, [ =( multiply( inverse( X ), X ), inverse( identity ) ) ] )
% 0.85/1.23 , clause( 152, [ =( multiply( inverse( X ), X ), inverse( identity ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 155, [ =( multiply( Y, X ), inverse( 'double_divide'( X, Y ) ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 158, [ =( multiply( identity, X ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , clause( 2, [ =( 'double_divide'( X, identity ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 155, [ =( multiply( Y, X ), inverse( 'double_divide'( X, Y ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 5, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, X ),
% 0.85/1.23 :=( Y, identity )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 8, [ =( multiply( identity, X ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , clause( 158, [ =( multiply( identity, X ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 161, [ =( inverse( identity ), multiply( inverse( X ), X ) ) ] )
% 0.85/1.23 , clause( 7, [ =( multiply( inverse( X ), X ), inverse( identity ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 164, [ =( inverse( identity ), multiply( multiply( Y, X ),
% 0.85/1.23 'double_divide'( X, Y ) ) ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 161, [ =( inverse( identity ), multiply( inverse( X ), X ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, 4, substitution( 0, [ :=( X, Y ), :=( Y, X )] ), substitution( 1, [
% 0.85/1.23 :=( X, 'double_divide'( X, Y ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 165, [ =( multiply( multiply( X, Y ), 'double_divide'( Y, X ) ),
% 0.85/1.23 inverse( identity ) ) ] )
% 0.85/1.23 , clause( 164, [ =( inverse( identity ), multiply( multiply( Y, X ),
% 0.85/1.23 'double_divide'( X, Y ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 9, [ =( multiply( multiply( Y, X ), 'double_divide'( X, Y ) ),
% 0.85/1.23 inverse( identity ) ) ] )
% 0.85/1.23 , clause( 165, [ =( multiply( multiply( X, Y ), 'double_divide'( Y, X ) ),
% 0.85/1.23 inverse( identity ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, Y ), :=( Y, X )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.23 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 170, [ =( 'double_divide'( X, inverse( 'double_divide'(
% 0.85/1.23 'double_divide'( identity, 'double_divide'( 'double_divide'( X, identity
% 0.85/1.23 ), 'double_divide'( Y, Z ) ) ), Y ) ) ), Z ) ] )
% 0.85/1.23 , clause( 2, [ =( 'double_divide'( X, identity ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 0, [ =( 'double_divide'( X, 'double_divide'( 'double_divide'(
% 0.85/1.23 'double_divide'( identity, 'double_divide'( 'double_divide'( X, identity
% 0.85/1.23 ), 'double_divide'( Y, Z ) ) ), Y ), identity ) ), Z ) ] )
% 0.85/1.23 , 0, 3, substitution( 0, [ :=( X, 'double_divide'( 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( 'double_divide'( X, identity ),
% 0.85/1.23 'double_divide'( Y, Z ) ) ), Y ) )] ), substitution( 1, [ :=( X, X ),
% 0.85/1.23 :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 174, [ =( 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( 'double_divide'( X, identity ),
% 0.85/1.23 'double_divide'( Y, Z ) ) ) ) ), Z ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 170, [ =( 'double_divide'( X, inverse( 'double_divide'(
% 0.85/1.23 'double_divide'( identity, 'double_divide'( 'double_divide'( X, identity
% 0.85/1.23 ), 'double_divide'( Y, Z ) ) ), Y ) ) ), Z ) ] )
% 0.85/1.23 , 0, 3, substitution( 0, [ :=( X, Y ), :=( Y, 'double_divide'( identity,
% 0.85/1.23 'double_divide'( 'double_divide'( X, identity ), 'double_divide'( Y, Z )
% 0.85/1.23 ) ) )] ), substitution( 1, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 175, [ =( 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 , Z ) ] )
% 0.85/1.23 , clause( 2, [ =( 'double_divide'( X, identity ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 174, [ =( 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( 'double_divide'( X, identity ),
% 0.85/1.23 'double_divide'( Y, Z ) ) ) ) ), Z ) ] )
% 0.85/1.23 , 0, 8, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, X ),
% 0.85/1.23 :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 10, [ =( 'double_divide'( X, multiply( Y, 'double_divide'( identity
% 0.85/1.23 , 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) ), Z ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 175, [ =( 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 , Z ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] ),
% 0.85/1.23 permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 178, [ =( Z, 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , clause( 10, [ =( 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 , Z ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 180, [ =( X, 'double_divide'( Y, inverse( inverse( 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( Y ), 'double_divide'( identity, X ) )
% 0.85/1.23 ) ) ) ) ) ] )
% 0.85/1.23 , clause( 8, [ =( multiply( identity, X ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , 0, clause( 178, [ =( Z, 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 4, substitution( 0, [ :=( X, 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( Y ), 'double_divide'( identity, X ) ) ) )] ),
% 0.85/1.23 substitution( 1, [ :=( X, Y ), :=( Y, identity ), :=( Z, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 181, [ =( X, 'double_divide'( Y, inverse( multiply( 'double_divide'(
% 0.85/1.23 inverse( Y ), 'double_divide'( identity, X ) ), identity ) ) ) ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 180, [ =( X, 'double_divide'( Y, inverse( inverse(
% 0.85/1.23 'double_divide'( identity, 'double_divide'( inverse( Y ), 'double_divide'(
% 0.85/1.23 identity, X ) ) ) ) ) ) ) ] )
% 0.85/1.23 , 0, 5, substitution( 0, [ :=( X, 'double_divide'( inverse( Y ),
% 0.85/1.23 'double_divide'( identity, X ) ) ), :=( Y, identity )] ), substitution( 1
% 0.85/1.23 , [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 182, [ =( 'double_divide'( Y, inverse( multiply( 'double_divide'(
% 0.85/1.23 inverse( Y ), 'double_divide'( identity, X ) ), identity ) ) ), X ) ] )
% 0.85/1.23 , clause( 181, [ =( X, 'double_divide'( Y, inverse( multiply(
% 0.85/1.23 'double_divide'( inverse( Y ), 'double_divide'( identity, X ) ), identity
% 0.85/1.23 ) ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 14, [ =( 'double_divide'( X, inverse( multiply( 'double_divide'(
% 0.85/1.23 inverse( X ), 'double_divide'( identity, Y ) ), identity ) ) ), Y ) ] )
% 0.85/1.23 , clause( 182, [ =( 'double_divide'( Y, inverse( multiply( 'double_divide'(
% 0.85/1.23 inverse( Y ), 'double_divide'( identity, X ) ), identity ) ) ), X ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, Y ), :=( Y, X )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.23 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 184, [ =( Z, 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , clause( 10, [ =( 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 , Z ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 186, [ =( inverse( X ), 'double_divide'( Y, multiply( X,
% 0.85/1.23 'double_divide'( identity, 'double_divide'( inverse( Y ), identity ) ) )
% 0.85/1.23 ) ) ] )
% 0.85/1.23 , clause( 3, [ =( 'double_divide'( X, inverse( X ) ), identity ) ] )
% 0.85/1.23 , 0, clause( 184, [ =( Z, 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 12, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, Y ),
% 0.85/1.23 :=( Y, X ), :=( Z, inverse( X ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 187, [ =( inverse( X ), 'double_divide'( Y, multiply( X,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( Y ) ) ) ) ) ) ] )
% 0.85/1.23 , clause( 2, [ =( 'double_divide'( X, identity ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 186, [ =( inverse( X ), 'double_divide'( Y, multiply( X,
% 0.85/1.23 'double_divide'( identity, 'double_divide'( inverse( Y ), identity ) ) )
% 0.85/1.23 ) ) ] )
% 0.85/1.23 , 0, 9, substitution( 0, [ :=( X, inverse( Y ) )] ), substitution( 1, [
% 0.85/1.23 :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 188, [ =( 'double_divide'( Y, multiply( X, 'double_divide'(
% 0.85/1.23 identity, inverse( inverse( Y ) ) ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , clause( 187, [ =( inverse( X ), 'double_divide'( Y, multiply( X,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( Y ) ) ) ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 17, [ =( 'double_divide'( Y, multiply( X, 'double_divide'( identity
% 0.85/1.23 , inverse( inverse( Y ) ) ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , clause( 188, [ =( 'double_divide'( Y, multiply( X, 'double_divide'(
% 0.85/1.23 identity, inverse( inverse( Y ) ) ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X ), :=( Y, Y )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.23 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 198, [ ~( =( inverse( identity ), identity ) ), ~( =( multiply(
% 0.85/1.23 identity, a2 ), a2 ) ), ~( =( multiply( a3, multiply( b3, c3 ) ),
% 0.85/1.23 multiply( multiply( a3, b3 ), c3 ) ) ) ] )
% 0.85/1.23 , clause( 7, [ =( multiply( inverse( X ), X ), inverse( identity ) ) ] )
% 0.85/1.23 , 0, clause( 4, [ ~( =( multiply( inverse( a1 ), a1 ), identity ) ), ~( =(
% 0.85/1.23 multiply( identity, a2 ), a2 ) ), ~( =( multiply( a3, multiply( b3, c3 )
% 0.85/1.23 ), multiply( multiply( a3, b3 ), c3 ) ) ) ] )
% 0.85/1.23 , 0, 2, substitution( 0, [ :=( X, a1 )] ), substitution( 1, [] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 199, [ ~( =( inverse( inverse( a2 ) ), a2 ) ), ~( =( inverse(
% 0.85/1.23 identity ), identity ) ), ~( =( multiply( a3, multiply( b3, c3 ) ),
% 0.85/1.23 multiply( multiply( a3, b3 ), c3 ) ) ) ] )
% 0.85/1.23 , clause( 8, [ =( multiply( identity, X ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , 0, clause( 198, [ ~( =( inverse( identity ), identity ) ), ~( =( multiply(
% 0.85/1.23 identity, a2 ), a2 ) ), ~( =( multiply( a3, multiply( b3, c3 ) ),
% 0.85/1.23 multiply( multiply( a3, b3 ), c3 ) ) ) ] )
% 0.85/1.23 , 1, 2, substitution( 0, [ :=( X, a2 )] ), substitution( 1, [] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 19, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply( multiply(
% 0.85/1.23 a3, b3 ), c3 ) ) ), ~( =( inverse( identity ), identity ) ), ~( =(
% 0.85/1.23 inverse( inverse( a2 ) ), a2 ) ) ] )
% 0.85/1.23 , clause( 199, [ ~( =( inverse( inverse( a2 ) ), a2 ) ), ~( =( inverse(
% 0.85/1.23 identity ), identity ) ), ~( =( multiply( a3, multiply( b3, c3 ) ),
% 0.85/1.23 multiply( multiply( a3, b3 ), c3 ) ) ) ] )
% 0.85/1.23 , substitution( 0, [] ), permutation( 0, [ ==>( 0, 2 ), ==>( 1, 1 ), ==>( 2
% 0.85/1.23 , 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 208, [ =( Z, 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , clause( 10, [ =( 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 , Z ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 209, [ =( multiply( X, 'double_divide'( identity, inverse( inverse(
% 0.85/1.23 Y ) ) ) ), 'double_divide'( Z, multiply( Y, 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( Z ), inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , clause( 17, [ =( 'double_divide'( Y, multiply( X, 'double_divide'(
% 0.85/1.23 identity, inverse( inverse( Y ) ) ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 208, [ =( Z, 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 17, substitution( 0, [ :=( X, X ), :=( Y, Y )] ), substitution( 1, [
% 0.85/1.23 :=( X, Z ), :=( Y, Y ), :=( Z, multiply( X, 'double_divide'( identity,
% 0.85/1.23 inverse( inverse( Y ) ) ) ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 210, [ =( 'double_divide'( Z, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( Z ), inverse( X ) ) ) ) ), multiply(
% 0.85/1.23 X, 'double_divide'( identity, inverse( inverse( Y ) ) ) ) ) ] )
% 0.85/1.23 , clause( 209, [ =( multiply( X, 'double_divide'( identity, inverse(
% 0.85/1.23 inverse( Y ) ) ) ), 'double_divide'( Z, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( Z ), inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 20, [ =( 'double_divide'( Z, multiply( X, 'double_divide'( identity
% 0.85/1.23 , 'double_divide'( inverse( Z ), inverse( Y ) ) ) ) ), multiply( Y,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ] )
% 0.85/1.23 , clause( 210, [ =( 'double_divide'( Z, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( Z ), inverse( X ) ) ) ) ), multiply(
% 0.85/1.23 X, 'double_divide'( identity, inverse( inverse( Y ) ) ) ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, Y ), :=( Y, X ), :=( Z, Z )] ),
% 0.85/1.23 permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 212, [ =( inverse( Y ), 'double_divide'( X, multiply( Y,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , clause( 17, [ =( 'double_divide'( Y, multiply( X, 'double_divide'(
% 0.85/1.23 identity, inverse( inverse( Y ) ) ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 215, [ =( inverse( multiply( inverse( inverse( X ) ), identity ) )
% 0.85/1.23 , 'double_divide'( X, inverse( identity ) ) ) ] )
% 0.85/1.23 , clause( 9, [ =( multiply( multiply( Y, X ), 'double_divide'( X, Y ) ),
% 0.85/1.23 inverse( identity ) ) ] )
% 0.85/1.23 , 0, clause( 212, [ =( inverse( Y ), 'double_divide'( X, multiply( Y,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , 0, 9, substitution( 0, [ :=( X, identity ), :=( Y, inverse( inverse( X )
% 0.85/1.23 ) )] ), substitution( 1, [ :=( X, X ), :=( Y, multiply( inverse( inverse(
% 0.85/1.23 X ) ), identity ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 22, [ =( inverse( multiply( inverse( inverse( X ) ), identity ) ),
% 0.85/1.23 'double_divide'( X, inverse( identity ) ) ) ] )
% 0.85/1.23 , clause( 215, [ =( inverse( multiply( inverse( inverse( X ) ), identity )
% 0.85/1.23 ), 'double_divide'( X, inverse( identity ) ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 218, [ =( inverse( Y ), 'double_divide'( X, multiply( Y,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , clause( 17, [ =( 'double_divide'( Y, multiply( X, 'double_divide'(
% 0.85/1.23 identity, inverse( inverse( Y ) ) ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 221, [ =( inverse( identity ), 'double_divide'( X, inverse( inverse(
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ) ] )
% 0.85/1.23 , clause( 8, [ =( multiply( identity, X ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , 0, clause( 218, [ =( inverse( Y ), 'double_divide'( X, multiply( Y,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , 0, 5, substitution( 0, [ :=( X, 'double_divide'( identity, inverse(
% 0.85/1.23 inverse( X ) ) ) )] ), substitution( 1, [ :=( X, X ), :=( Y, identity )] )
% 0.85/1.23 ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 222, [ =( inverse( identity ), 'double_divide'( X, inverse(
% 0.85/1.23 multiply( inverse( inverse( X ) ), identity ) ) ) ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 221, [ =( inverse( identity ), 'double_divide'( X, inverse(
% 0.85/1.23 inverse( 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, 6, substitution( 0, [ :=( X, inverse( inverse( X ) ) ), :=( Y,
% 0.85/1.23 identity )] ), substitution( 1, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 223, [ =( inverse( identity ), 'double_divide'( X, 'double_divide'(
% 0.85/1.23 X, inverse( identity ) ) ) ) ] )
% 0.85/1.23 , clause( 22, [ =( inverse( multiply( inverse( inverse( X ) ), identity ) )
% 0.85/1.23 , 'double_divide'( X, inverse( identity ) ) ) ] )
% 0.85/1.23 , 0, clause( 222, [ =( inverse( identity ), 'double_divide'( X, inverse(
% 0.85/1.23 multiply( inverse( inverse( X ) ), identity ) ) ) ) ] )
% 0.85/1.23 , 0, 5, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, X )] )
% 0.85/1.23 ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 224, [ =( 'double_divide'( X, 'double_divide'( X, inverse( identity
% 0.85/1.23 ) ) ), inverse( identity ) ) ] )
% 0.85/1.23 , clause( 223, [ =( inverse( identity ), 'double_divide'( X,
% 0.85/1.23 'double_divide'( X, inverse( identity ) ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 24, [ =( 'double_divide'( X, 'double_divide'( X, inverse( identity
% 0.85/1.23 ) ) ), inverse( identity ) ) ] )
% 0.85/1.23 , clause( 224, [ =( 'double_divide'( X, 'double_divide'( X, inverse(
% 0.85/1.23 identity ) ) ), inverse( identity ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 226, [ =( Z, 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , clause( 10, [ =( 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 , Z ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 228, [ =( inverse( identity ), 'double_divide'( X, multiply(
% 0.85/1.23 inverse( X ), 'double_divide'( identity, inverse( identity ) ) ) ) ) ] )
% 0.85/1.23 , clause( 24, [ =( 'double_divide'( X, 'double_divide'( X, inverse(
% 0.85/1.23 identity ) ) ), inverse( identity ) ) ] )
% 0.85/1.23 , 0, clause( 226, [ =( Z, 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 10, substitution( 0, [ :=( X, inverse( X ) )] ), substitution( 1, [
% 0.85/1.23 :=( X, X ), :=( Y, inverse( X ) ), :=( Z, inverse( identity ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 230, [ =( inverse( identity ), 'double_divide'( X, multiply(
% 0.85/1.23 inverse( X ), identity ) ) ) ] )
% 0.85/1.23 , clause( 3, [ =( 'double_divide'( X, inverse( X ) ), identity ) ] )
% 0.85/1.23 , 0, clause( 228, [ =( inverse( identity ), 'double_divide'( X, multiply(
% 0.85/1.23 inverse( X ), 'double_divide'( identity, inverse( identity ) ) ) ) ) ] )
% 0.85/1.23 , 0, 8, substitution( 0, [ :=( X, identity )] ), substitution( 1, [ :=( X,
% 0.85/1.23 X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 231, [ =( 'double_divide'( X, multiply( inverse( X ), identity ) )
% 0.85/1.23 , inverse( identity ) ) ] )
% 0.85/1.23 , clause( 230, [ =( inverse( identity ), 'double_divide'( X, multiply(
% 0.85/1.23 inverse( X ), identity ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 27, [ =( 'double_divide'( X, multiply( inverse( X ), identity ) ),
% 0.85/1.23 inverse( identity ) ) ] )
% 0.85/1.23 , clause( 231, [ =( 'double_divide'( X, multiply( inverse( X ), identity )
% 0.85/1.23 ), inverse( identity ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 233, [ =( Z, 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , clause( 10, [ =( 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 , Z ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 238, [ =( multiply( inverse( X ), identity ), 'double_divide'( Y,
% 0.85/1.23 multiply( X, 'double_divide'( identity, 'double_divide'( inverse( Y ),
% 0.85/1.23 inverse( identity ) ) ) ) ) ) ] )
% 0.85/1.23 , clause( 27, [ =( 'double_divide'( X, multiply( inverse( X ), identity ) )
% 0.85/1.23 , inverse( identity ) ) ] )
% 0.85/1.23 , 0, clause( 233, [ =( Z, 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 14, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, Y ),
% 0.85/1.23 :=( Y, X ), :=( Z, multiply( inverse( X ), identity ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 239, [ =( multiply( inverse( X ), identity ), multiply( identity,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ] )
% 0.85/1.23 , clause( 20, [ =( 'double_divide'( Z, multiply( X, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( Z ), inverse( Y ) ) ) ) ), multiply(
% 0.85/1.23 Y, 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ] )
% 0.85/1.23 , 0, clause( 238, [ =( multiply( inverse( X ), identity ), 'double_divide'(
% 0.85/1.23 Y, multiply( X, 'double_divide'( identity, 'double_divide'( inverse( Y )
% 0.85/1.23 , inverse( identity ) ) ) ) ) ) ] )
% 0.85/1.23 , 0, 5, substitution( 0, [ :=( X, X ), :=( Y, identity ), :=( Z, Y )] ),
% 0.85/1.23 substitution( 1, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 240, [ =( multiply( inverse( X ), identity ), inverse( inverse(
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , clause( 8, [ =( multiply( identity, X ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , 0, clause( 239, [ =( multiply( inverse( X ), identity ), multiply(
% 0.85/1.23 identity, 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ] )
% 0.85/1.23 , 0, 5, substitution( 0, [ :=( X, 'double_divide'( identity, inverse(
% 0.85/1.23 inverse( X ) ) ) )] ), substitution( 1, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 241, [ =( multiply( inverse( X ), identity ), inverse( multiply(
% 0.85/1.23 inverse( inverse( X ) ), identity ) ) ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 240, [ =( multiply( inverse( X ), identity ), inverse( inverse(
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , 0, 6, substitution( 0, [ :=( X, inverse( inverse( X ) ) ), :=( Y,
% 0.85/1.23 identity )] ), substitution( 1, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 242, [ =( multiply( inverse( X ), identity ), 'double_divide'( X,
% 0.85/1.23 inverse( identity ) ) ) ] )
% 0.85/1.23 , clause( 22, [ =( inverse( multiply( inverse( inverse( X ) ), identity ) )
% 0.85/1.23 , 'double_divide'( X, inverse( identity ) ) ) ] )
% 0.85/1.23 , 0, clause( 241, [ =( multiply( inverse( X ), identity ), inverse(
% 0.85/1.23 multiply( inverse( inverse( X ) ), identity ) ) ) ] )
% 0.85/1.23 , 0, 5, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, X )] )
% 0.85/1.23 ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 31, [ =( multiply( inverse( X ), identity ), 'double_divide'( X,
% 0.85/1.23 inverse( identity ) ) ) ] )
% 0.85/1.23 , clause( 242, [ =( multiply( inverse( X ), identity ), 'double_divide'( X
% 0.85/1.23 , inverse( identity ) ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 245, [ =( inverse( identity ), 'double_divide'( X, multiply(
% 0.85/1.23 inverse( X ), identity ) ) ) ] )
% 0.85/1.23 , clause( 27, [ =( 'double_divide'( X, multiply( inverse( X ), identity ) )
% 0.85/1.23 , inverse( identity ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 247, [ =( inverse( identity ), 'double_divide'( identity, inverse(
% 0.85/1.23 identity ) ) ) ] )
% 0.85/1.23 , clause( 7, [ =( multiply( inverse( X ), X ), inverse( identity ) ) ] )
% 0.85/1.23 , 0, clause( 245, [ =( inverse( identity ), 'double_divide'( X, multiply(
% 0.85/1.23 inverse( X ), identity ) ) ) ] )
% 0.85/1.23 , 0, 5, substitution( 0, [ :=( X, identity )] ), substitution( 1, [ :=( X,
% 0.85/1.23 identity )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 248, [ =( inverse( identity ), identity ) ] )
% 0.85/1.23 , clause( 3, [ =( 'double_divide'( X, inverse( X ) ), identity ) ] )
% 0.85/1.23 , 0, clause( 247, [ =( inverse( identity ), 'double_divide'( identity,
% 0.85/1.23 inverse( identity ) ) ) ] )
% 0.85/1.23 , 0, 3, substitution( 0, [ :=( X, identity )] ), substitution( 1, [] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 32, [ =( inverse( identity ), identity ) ] )
% 0.85/1.23 , clause( 248, [ =( inverse( identity ), identity ) ] )
% 0.85/1.23 , substitution( 0, [] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 251, [ =( inverse( Y ), 'double_divide'( X, multiply( Y,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , clause( 17, [ =( 'double_divide'( Y, multiply( X, 'double_divide'(
% 0.85/1.23 identity, inverse( inverse( Y ) ) ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 254, [ =( inverse( X ), 'double_divide'( identity, multiply( X,
% 0.85/1.23 'double_divide'( identity, inverse( identity ) ) ) ) ) ] )
% 0.85/1.23 , clause( 32, [ =( inverse( identity ), identity ) ] )
% 0.85/1.23 , 0, clause( 251, [ =( inverse( Y ), 'double_divide'( X, multiply( Y,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , 0, 10, substitution( 0, [] ), substitution( 1, [ :=( X, identity ), :=( Y
% 0.85/1.23 , X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 256, [ =( inverse( X ), 'double_divide'( identity, multiply( X,
% 0.85/1.23 identity ) ) ) ] )
% 0.85/1.23 , clause( 3, [ =( 'double_divide'( X, inverse( X ) ), identity ) ] )
% 0.85/1.23 , 0, clause( 254, [ =( inverse( X ), 'double_divide'( identity, multiply( X
% 0.85/1.23 , 'double_divide'( identity, inverse( identity ) ) ) ) ) ] )
% 0.85/1.23 , 0, 7, substitution( 0, [ :=( X, identity )] ), substitution( 1, [ :=( X,
% 0.85/1.23 X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 257, [ =( 'double_divide'( identity, multiply( X, identity ) ),
% 0.85/1.23 inverse( X ) ) ] )
% 0.85/1.23 , clause( 256, [ =( inverse( X ), 'double_divide'( identity, multiply( X,
% 0.85/1.23 identity ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 34, [ =( 'double_divide'( identity, multiply( X, identity ) ),
% 0.85/1.23 inverse( X ) ) ] )
% 0.85/1.23 , clause( 257, [ =( 'double_divide'( identity, multiply( X, identity ) ),
% 0.85/1.23 inverse( X ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 259, [ =( multiply( Y, X ), inverse( 'double_divide'( X, Y ) ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 262, [ =( multiply( multiply( X, identity ), identity ), inverse(
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , clause( 34, [ =( 'double_divide'( identity, multiply( X, identity ) ),
% 0.85/1.23 inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 259, [ =( multiply( Y, X ), inverse( 'double_divide'( X, Y ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 7, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X,
% 0.85/1.23 identity ), :=( Y, multiply( X, identity ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 38, [ =( multiply( multiply( X, identity ), identity ), inverse(
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , clause( 262, [ =( multiply( multiply( X, identity ), identity ), inverse(
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 267, [ =( multiply( inverse( X ), identity ), 'double_divide'( X,
% 0.85/1.23 identity ) ) ] )
% 0.85/1.23 , clause( 32, [ =( inverse( identity ), identity ) ] )
% 0.85/1.23 , 0, clause( 31, [ =( multiply( inverse( X ), identity ), 'double_divide'(
% 0.85/1.23 X, inverse( identity ) ) ) ] )
% 0.85/1.23 , 0, 7, substitution( 0, [] ), substitution( 1, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 268, [ =( multiply( inverse( X ), identity ), inverse( X ) ) ] )
% 0.85/1.23 , clause( 2, [ =( 'double_divide'( X, identity ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 267, [ =( multiply( inverse( X ), identity ), 'double_divide'(
% 0.85/1.23 X, identity ) ) ] )
% 0.85/1.23 , 0, 5, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, X )] )
% 0.85/1.23 ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 41, [ =( multiply( inverse( X ), identity ), inverse( X ) ) ] )
% 0.85/1.23 , clause( 268, [ =( multiply( inverse( X ), identity ), inverse( X ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 271, [ =( inverse( inverse( X ) ), multiply( multiply( X, identity
% 0.85/1.23 ), identity ) ) ] )
% 0.85/1.23 , clause( 38, [ =( multiply( multiply( X, identity ), identity ), inverse(
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 273, [ =( inverse( inverse( inverse( X ) ) ), multiply( inverse( X
% 0.85/1.23 ), identity ) ) ] )
% 0.85/1.23 , clause( 41, [ =( multiply( inverse( X ), identity ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 271, [ =( inverse( inverse( X ) ), multiply( multiply( X,
% 0.85/1.23 identity ), identity ) ) ] )
% 0.85/1.23 , 0, 6, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, inverse(
% 0.85/1.23 X ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 275, [ =( inverse( inverse( inverse( X ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , clause( 41, [ =( multiply( inverse( X ), identity ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 273, [ =( inverse( inverse( inverse( X ) ) ), multiply(
% 0.85/1.23 inverse( X ), identity ) ) ] )
% 0.85/1.23 , 0, 5, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, X )] )
% 0.85/1.23 ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 42, [ =( inverse( inverse( inverse( X ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , clause( 275, [ =( inverse( inverse( inverse( X ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 278, [ =( inverse( X ), 'double_divide'( identity, multiply( X,
% 0.85/1.23 identity ) ) ) ] )
% 0.85/1.23 , clause( 34, [ =( 'double_divide'( identity, multiply( X, identity ) ),
% 0.85/1.23 inverse( X ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 279, [ =( inverse( inverse( X ) ), 'double_divide'( identity,
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , clause( 41, [ =( multiply( inverse( X ), identity ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 278, [ =( inverse( X ), 'double_divide'( identity, multiply( X
% 0.85/1.23 , identity ) ) ) ] )
% 0.85/1.23 , 0, 6, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, inverse(
% 0.85/1.23 X ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 280, [ =( 'double_divide'( identity, inverse( X ) ), inverse(
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , clause( 279, [ =( inverse( inverse( X ) ), 'double_divide'( identity,
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 43, [ =( 'double_divide'( identity, inverse( X ) ), inverse(
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , clause( 280, [ =( 'double_divide'( identity, inverse( X ) ), inverse(
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 282, [ =( inverse( X ), multiply( inverse( X ), identity ) ) ] )
% 0.85/1.23 , clause( 41, [ =( multiply( inverse( X ), identity ), inverse( X ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 286, [ =( inverse( 'double_divide'( X, Y ) ), multiply( multiply( Y
% 0.85/1.23 , X ), identity ) ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 282, [ =( inverse( X ), multiply( inverse( X ), identity ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, 6, substitution( 0, [ :=( X, Y ), :=( Y, X )] ), substitution( 1, [
% 0.85/1.23 :=( X, 'double_divide'( X, Y ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 287, [ =( multiply( Y, X ), multiply( multiply( Y, X ), identity )
% 0.85/1.23 ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 286, [ =( inverse( 'double_divide'( X, Y ) ), multiply(
% 0.85/1.23 multiply( Y, X ), identity ) ) ] )
% 0.85/1.23 , 0, 1, substitution( 0, [ :=( X, Y ), :=( Y, X )] ), substitution( 1, [
% 0.85/1.23 :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 289, [ =( multiply( multiply( X, Y ), identity ), multiply( X, Y )
% 0.85/1.23 ) ] )
% 0.85/1.23 , clause( 287, [ =( multiply( Y, X ), multiply( multiply( Y, X ), identity
% 0.85/1.23 ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 46, [ =( multiply( multiply( Y, X ), identity ), multiply( Y, X ) )
% 0.85/1.23 ] )
% 0.85/1.23 , clause( 289, [ =( multiply( multiply( X, Y ), identity ), multiply( X, Y
% 0.85/1.23 ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, Y ), :=( Y, X )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.23 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 292, [ =( inverse( Y ), 'double_divide'( X, multiply( Y,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , clause( 17, [ =( 'double_divide'( Y, multiply( X, 'double_divide'(
% 0.85/1.23 identity, inverse( inverse( Y ) ) ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 294, [ =( inverse( X ), 'double_divide'( Y, multiply( X, inverse(
% 0.85/1.23 inverse( inverse( Y ) ) ) ) ) ) ] )
% 0.85/1.23 , clause( 43, [ =( 'double_divide'( identity, inverse( X ) ), inverse(
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , 0, clause( 292, [ =( inverse( Y ), 'double_divide'( X, multiply( Y,
% 0.85/1.23 'double_divide'( identity, inverse( inverse( X ) ) ) ) ) ) ] )
% 0.85/1.23 , 0, 7, substitution( 0, [ :=( X, inverse( Y ) )] ), substitution( 1, [
% 0.85/1.23 :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 295, [ =( inverse( X ), 'double_divide'( Y, multiply( X, inverse( Y
% 0.85/1.23 ) ) ) ) ] )
% 0.85/1.23 , clause( 42, [ =( inverse( inverse( inverse( X ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 294, [ =( inverse( X ), 'double_divide'( Y, multiply( X,
% 0.85/1.23 inverse( inverse( inverse( Y ) ) ) ) ) ) ] )
% 0.85/1.23 , 0, 7, substitution( 0, [ :=( X, Y )] ), substitution( 1, [ :=( X, X ),
% 0.85/1.23 :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 296, [ =( 'double_divide'( Y, multiply( X, inverse( Y ) ) ),
% 0.85/1.23 inverse( X ) ) ] )
% 0.85/1.23 , clause( 295, [ =( inverse( X ), 'double_divide'( Y, multiply( X, inverse(
% 0.85/1.23 Y ) ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 51, [ =( 'double_divide'( X, multiply( Y, inverse( X ) ) ), inverse(
% 0.85/1.23 Y ) ) ] )
% 0.85/1.23 , clause( 296, [ =( 'double_divide'( Y, multiply( X, inverse( Y ) ) ),
% 0.85/1.23 inverse( X ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, Y ), :=( Y, X )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.23 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 297, [ =( multiply( X, Y ), multiply( multiply( X, Y ), identity )
% 0.85/1.23 ) ] )
% 0.85/1.23 , clause( 46, [ =( multiply( multiply( Y, X ), identity ), multiply( Y, X )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 301, [ =( multiply( X, identity ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , clause( 38, [ =( multiply( multiply( X, identity ), identity ), inverse(
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , 0, clause( 297, [ =( multiply( X, Y ), multiply( multiply( X, Y ),
% 0.85/1.23 identity ) ) ] )
% 0.85/1.23 , 0, 4, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, X ),
% 0.85/1.23 :=( Y, identity )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 55, [ =( multiply( X, identity ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , clause( 301, [ =( multiply( X, identity ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 316, [ =( 'double_divide'( X, inverse( inverse( inverse(
% 0.85/1.23 'double_divide'( inverse( X ), 'double_divide'( identity, Y ) ) ) ) ) ),
% 0.85/1.23 Y ) ] )
% 0.85/1.23 , clause( 55, [ =( multiply( X, identity ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , 0, clause( 14, [ =( 'double_divide'( X, inverse( multiply(
% 0.85/1.23 'double_divide'( inverse( X ), 'double_divide'( identity, Y ) ), identity
% 0.85/1.23 ) ) ), Y ) ] )
% 0.85/1.23 , 0, 4, substitution( 0, [ :=( X, 'double_divide'( inverse( X ),
% 0.85/1.23 'double_divide'( identity, Y ) ) )] ), substitution( 1, [ :=( X, X ),
% 0.85/1.23 :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 317, [ =( 'double_divide'( X, inverse( 'double_divide'( inverse( X
% 0.85/1.23 ), 'double_divide'( identity, Y ) ) ) ), Y ) ] )
% 0.85/1.23 , clause( 42, [ =( inverse( inverse( inverse( X ) ) ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 316, [ =( 'double_divide'( X, inverse( inverse( inverse(
% 0.85/1.23 'double_divide'( inverse( X ), 'double_divide'( identity, Y ) ) ) ) ) ),
% 0.85/1.23 Y ) ] )
% 0.85/1.23 , 0, 3, substitution( 0, [ :=( X, 'double_divide'( inverse( X ),
% 0.85/1.23 'double_divide'( identity, Y ) ) )] ), substitution( 1, [ :=( X, X ),
% 0.85/1.23 :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 318, [ =( 'double_divide'( X, multiply( 'double_divide'( identity,
% 0.85/1.23 Y ), inverse( X ) ) ), Y ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 317, [ =( 'double_divide'( X, inverse( 'double_divide'(
% 0.85/1.23 inverse( X ), 'double_divide'( identity, Y ) ) ) ), Y ) ] )
% 0.85/1.23 , 0, 3, substitution( 0, [ :=( X, 'double_divide'( identity, Y ) ), :=( Y,
% 0.85/1.23 inverse( X ) )] ), substitution( 1, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 319, [ =( inverse( 'double_divide'( identity, Y ) ), Y ) ] )
% 0.85/1.23 , clause( 51, [ =( 'double_divide'( X, multiply( Y, inverse( X ) ) ),
% 0.85/1.23 inverse( Y ) ) ] )
% 0.85/1.23 , 0, clause( 318, [ =( 'double_divide'( X, multiply( 'double_divide'(
% 0.85/1.23 identity, Y ), inverse( X ) ) ), Y ) ] )
% 0.85/1.23 , 0, 1, substitution( 0, [ :=( X, X ), :=( Y, 'double_divide'( identity, Y
% 0.85/1.23 ) )] ), substitution( 1, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 320, [ =( multiply( X, identity ), X ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 319, [ =( inverse( 'double_divide'( identity, Y ) ), Y ) ] )
% 0.85/1.23 , 0, 1, substitution( 0, [ :=( X, X ), :=( Y, identity )] ), substitution(
% 0.85/1.23 1, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 321, [ =( inverse( inverse( X ) ), X ) ] )
% 0.85/1.23 , clause( 55, [ =( multiply( X, identity ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , 0, clause( 320, [ =( multiply( X, identity ), X ) ] )
% 0.85/1.23 , 0, 1, substitution( 0, [ :=( X, X )] ), substitution( 1, [ :=( X, X )] )
% 0.85/1.23 ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 65, [ =( inverse( inverse( Y ) ), Y ) ] )
% 0.85/1.23 , clause( 321, [ =( inverse( inverse( X ) ), X ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, Y )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 324, [ =( inverse( inverse( X ) ), 'double_divide'( identity,
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , clause( 43, [ =( 'double_divide'( identity, inverse( X ) ), inverse(
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 326, [ =( inverse( inverse( inverse( X ) ) ), 'double_divide'(
% 0.85/1.23 identity, X ) ) ] )
% 0.85/1.23 , clause( 65, [ =( inverse( inverse( Y ) ), Y ) ] )
% 0.85/1.23 , 0, clause( 324, [ =( inverse( inverse( X ) ), 'double_divide'( identity,
% 0.85/1.23 inverse( X ) ) ) ] )
% 0.85/1.23 , 0, 7, substitution( 0, [ :=( X, Y ), :=( Y, X )] ), substitution( 1, [
% 0.85/1.23 :=( X, inverse( X ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 327, [ =( inverse( X ), 'double_divide'( identity, X ) ) ] )
% 0.85/1.23 , clause( 65, [ =( inverse( inverse( Y ) ), Y ) ] )
% 0.85/1.23 , 0, clause( 326, [ =( inverse( inverse( inverse( X ) ) ), 'double_divide'(
% 0.85/1.23 identity, X ) ) ] )
% 0.85/1.23 , 0, 1, substitution( 0, [ :=( X, Y ), :=( Y, inverse( X ) )] ),
% 0.85/1.23 substitution( 1, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 329, [ =( 'double_divide'( identity, X ), inverse( X ) ) ] )
% 0.85/1.23 , clause( 327, [ =( inverse( X ), 'double_divide'( identity, X ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 69, [ =( 'double_divide'( identity, X ), inverse( X ) ) ] )
% 0.85/1.23 , clause( 329, [ =( 'double_divide'( identity, X ), inverse( X ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X )] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 332, [ =( X, inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , clause( 65, [ =( inverse( inverse( Y ) ), Y ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 333, [ =( 'double_divide'( X, Y ), inverse( multiply( Y, X ) ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 332, [ =( X, inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , 0, 5, substitution( 0, [ :=( X, Y ), :=( Y, X )] ), substitution( 1, [
% 0.85/1.23 :=( X, 'double_divide'( X, Y ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 334, [ =( inverse( multiply( Y, X ) ), 'double_divide'( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 333, [ =( 'double_divide'( X, Y ), inverse( multiply( Y, X ) ) )
% 0.85/1.23 ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 71, [ =( inverse( multiply( Y, X ) ), 'double_divide'( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 334, [ =( inverse( multiply( Y, X ) ), 'double_divide'( X, Y ) )
% 0.85/1.23 ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X ), :=( Y, Y )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.23 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 335, [ =( inverse( X ), 'double_divide'( identity, X ) ) ] )
% 0.85/1.23 , clause( 69, [ =( 'double_divide'( identity, X ), inverse( X ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 343, [ =( inverse( multiply( X, 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( identity ), 'double_divide'( X, Y ) ) ) ) ), Y
% 0.85/1.23 ) ] )
% 0.85/1.23 , clause( 10, [ =( 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 , Z ) ] )
% 0.85/1.23 , 0, clause( 335, [ =( inverse( X ), 'double_divide'( identity, X ) ) ] )
% 0.85/1.23 , 0, 12, substitution( 0, [ :=( X, identity ), :=( Y, X ), :=( Z, Y )] ),
% 0.85/1.23 substitution( 1, [ :=( X, multiply( X, 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( identity ), 'double_divide'( X, Y ) ) ) ) )] )
% 0.85/1.23 ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 344, [ =( 'double_divide'( 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( identity ), 'double_divide'( X, Y ) ) ), X ), Y
% 0.85/1.23 ) ] )
% 0.85/1.23 , clause( 71, [ =( inverse( multiply( Y, X ) ), 'double_divide'( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 343, [ =( inverse( multiply( X, 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( identity ), 'double_divide'( X, Y ) ) ) ) ), Y
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 1, substitution( 0, [ :=( X, 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( identity ), 'double_divide'( X, Y ) ) ) ), :=(
% 0.85/1.23 Y, X )] ), substitution( 1, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 345, [ =( 'double_divide'( inverse( 'double_divide'( inverse(
% 0.85/1.23 identity ), 'double_divide'( X, Y ) ) ), X ), Y ) ] )
% 0.85/1.23 , clause( 69, [ =( 'double_divide'( identity, X ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 344, [ =( 'double_divide'( 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( identity ), 'double_divide'( X, Y ) ) ), X ), Y
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 2, substitution( 0, [ :=( X, 'double_divide'( inverse( identity ),
% 0.85/1.23 'double_divide'( X, Y ) ) )] ), substitution( 1, [ :=( X, X ), :=( Y, Y )] )
% 0.85/1.23 ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 346, [ =( 'double_divide'( multiply( 'double_divide'( X, Y ),
% 0.85/1.23 inverse( identity ) ), X ), Y ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 345, [ =( 'double_divide'( inverse( 'double_divide'( inverse(
% 0.85/1.23 identity ), 'double_divide'( X, Y ) ) ), X ), Y ) ] )
% 0.85/1.23 , 0, 2, substitution( 0, [ :=( X, 'double_divide'( X, Y ) ), :=( Y, inverse(
% 0.85/1.23 identity ) )] ), substitution( 1, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 347, [ =( 'double_divide'( multiply( 'double_divide'( X, Y ),
% 0.85/1.23 identity ), X ), Y ) ] )
% 0.85/1.23 , clause( 32, [ =( inverse( identity ), identity ) ] )
% 0.85/1.23 , 0, clause( 346, [ =( 'double_divide'( multiply( 'double_divide'( X, Y ),
% 0.85/1.23 inverse( identity ) ), X ), Y ) ] )
% 0.85/1.23 , 0, 6, substitution( 0, [] ), substitution( 1, [ :=( X, X ), :=( Y, Y )] )
% 0.85/1.23 ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 348, [ =( 'double_divide'( inverse( inverse( 'double_divide'( X, Y
% 0.85/1.23 ) ) ), X ), Y ) ] )
% 0.85/1.23 , clause( 55, [ =( multiply( X, identity ), inverse( inverse( X ) ) ) ] )
% 0.85/1.23 , 0, clause( 347, [ =( 'double_divide'( multiply( 'double_divide'( X, Y ),
% 0.85/1.23 identity ), X ), Y ) ] )
% 0.85/1.23 , 0, 2, substitution( 0, [ :=( X, 'double_divide'( X, Y ) )] ),
% 0.85/1.23 substitution( 1, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 349, [ =( 'double_divide'( 'double_divide'( X, Y ), X ), Y ) ] )
% 0.85/1.23 , clause( 65, [ =( inverse( inverse( Y ) ), Y ) ] )
% 0.85/1.23 , 0, clause( 348, [ =( 'double_divide'( inverse( inverse( 'double_divide'(
% 0.85/1.23 X, Y ) ) ), X ), Y ) ] )
% 0.85/1.23 , 0, 2, substitution( 0, [ :=( X, Z ), :=( Y, 'double_divide'( X, Y ) )] )
% 0.85/1.23 , substitution( 1, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 72, [ =( 'double_divide'( 'double_divide'( X, Y ), X ), Y ) ] )
% 0.85/1.23 , clause( 349, [ =( 'double_divide'( 'double_divide'( X, Y ), X ), Y ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X ), :=( Y, Y )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.23 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 351, [ =( Y, 'double_divide'( 'double_divide'( X, Y ), X ) ) ] )
% 0.85/1.23 , clause( 72, [ =( 'double_divide'( 'double_divide'( X, Y ), X ), Y ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 354, [ =( X, 'double_divide'( Y, 'double_divide'( X, Y ) ) ) ] )
% 0.85/1.23 , clause( 72, [ =( 'double_divide'( 'double_divide'( X, Y ), X ), Y ) ] )
% 0.85/1.23 , 0, clause( 351, [ =( Y, 'double_divide'( 'double_divide'( X, Y ), X ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, 3, substitution( 0, [ :=( X, X ), :=( Y, Y )] ), substitution( 1, [
% 0.85/1.23 :=( X, 'double_divide'( X, Y ) ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 355, [ =( 'double_divide'( Y, 'double_divide'( X, Y ) ), X ) ] )
% 0.85/1.23 , clause( 354, [ =( X, 'double_divide'( Y, 'double_divide'( X, Y ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 77, [ =( 'double_divide'( Y, 'double_divide'( X, Y ) ), X ) ] )
% 0.85/1.23 , clause( 355, [ =( 'double_divide'( Y, 'double_divide'( X, Y ) ), X ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X ), :=( Y, Y )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.23 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 357, [ =( Y, 'double_divide'( 'double_divide'( X, Y ), X ) ) ] )
% 0.85/1.23 , clause( 72, [ =( 'double_divide'( 'double_divide'( X, Y ), X ), Y ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 358, [ =( multiply( X, inverse( Y ) ), 'double_divide'( inverse( X
% 0.85/1.23 ), Y ) ) ] )
% 0.85/1.23 , clause( 51, [ =( 'double_divide'( X, multiply( Y, inverse( X ) ) ),
% 0.85/1.23 inverse( Y ) ) ] )
% 0.85/1.23 , 0, clause( 357, [ =( Y, 'double_divide'( 'double_divide'( X, Y ), X ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, 6, substitution( 0, [ :=( X, Y ), :=( Y, X )] ), substitution( 1, [
% 0.85/1.23 :=( X, Y ), :=( Y, multiply( X, inverse( Y ) ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 78, [ =( multiply( Y, inverse( X ) ), 'double_divide'( inverse( Y )
% 0.85/1.23 , X ) ) ] )
% 0.85/1.23 , clause( 358, [ =( multiply( X, inverse( Y ) ), 'double_divide'( inverse(
% 0.85/1.23 X ), Y ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, Y ), :=( Y, X )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.23 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 361, [ =( multiply( Y, X ), inverse( 'double_divide'( X, Y ) ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 362, [ =( multiply( X, 'double_divide'( X, Y ) ), inverse( Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 72, [ =( 'double_divide'( 'double_divide'( X, Y ), X ), Y ) ] )
% 0.85/1.23 , 0, clause( 361, [ =( multiply( Y, X ), inverse( 'double_divide'( X, Y ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 7, substitution( 0, [ :=( X, X ), :=( Y, Y )] ), substitution( 1, [
% 0.85/1.23 :=( X, 'double_divide'( X, Y ) ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 83, [ =( multiply( X, 'double_divide'( X, Y ) ), inverse( Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 362, [ =( multiply( X, 'double_divide'( X, Y ) ), inverse( Y ) )
% 0.85/1.23 ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X ), :=( Y, Y )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.23 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 365, [ =( multiply( Y, X ), inverse( 'double_divide'( X, Y ) ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 366, [ =( multiply( 'double_divide'( X, Y ), Y ), inverse( X ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 77, [ =( 'double_divide'( Y, 'double_divide'( X, Y ) ), X ) ] )
% 0.85/1.23 , 0, clause( 365, [ =( multiply( Y, X ), inverse( 'double_divide'( X, Y ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 7, substitution( 0, [ :=( X, X ), :=( Y, Y )] ), substitution( 1, [
% 0.85/1.23 :=( X, Y ), :=( Y, 'double_divide'( X, Y ) )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 87, [ =( multiply( 'double_divide'( Y, X ), X ), inverse( Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 366, [ =( multiply( 'double_divide'( X, Y ), Y ), inverse( X ) )
% 0.85/1.23 ] )
% 0.85/1.23 , substitution( 0, [ :=( X, Y ), :=( Y, X )] ), permutation( 0, [ ==>( 0, 0
% 0.85/1.23 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 369, [ =( inverse( Y ), multiply( X, 'double_divide'( X, Y ) ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 83, [ =( multiply( X, 'double_divide'( X, Y ) ), inverse( Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, X ), :=( Y, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 376, [ =( inverse( multiply( X, 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( Y ), 'double_divide'( X, Z ) ) ) ) ), multiply(
% 0.85/1.23 Y, Z ) ) ] )
% 0.85/1.23 , clause( 10, [ =( 'double_divide'( X, multiply( Y, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( X ), 'double_divide'( Y, Z ) ) ) ) )
% 0.85/1.23 , Z ) ] )
% 0.85/1.23 , 0, clause( 369, [ =( inverse( Y ), multiply( X, 'double_divide'( X, Y ) )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 14, substitution( 0, [ :=( X, Y ), :=( Y, X ), :=( Z, Z )] ),
% 0.85/1.23 substitution( 1, [ :=( X, Y ), :=( Y, multiply( X, 'double_divide'(
% 0.85/1.23 identity, 'double_divide'( inverse( Y ), 'double_divide'( X, Z ) ) ) ) )] )
% 0.85/1.23 ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 377, [ =( 'double_divide'( 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( Y ), 'double_divide'( X, Z ) ) ), X ), multiply(
% 0.85/1.23 Y, Z ) ) ] )
% 0.85/1.23 , clause( 71, [ =( inverse( multiply( Y, X ) ), 'double_divide'( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 376, [ =( inverse( multiply( X, 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( Y ), 'double_divide'( X, Z ) ) ) ) ), multiply(
% 0.85/1.23 Y, Z ) ) ] )
% 0.85/1.23 , 0, 1, substitution( 0, [ :=( X, 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( Y ), 'double_divide'( X, Z ) ) ) ), :=( Y, X )] )
% 0.85/1.23 , substitution( 1, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 378, [ =( 'double_divide'( inverse( 'double_divide'( inverse( X ),
% 0.85/1.23 'double_divide'( Y, Z ) ) ), Y ), multiply( X, Z ) ) ] )
% 0.85/1.23 , clause( 69, [ =( 'double_divide'( identity, X ), inverse( X ) ) ] )
% 0.85/1.23 , 0, clause( 377, [ =( 'double_divide'( 'double_divide'( identity,
% 0.85/1.23 'double_divide'( inverse( Y ), 'double_divide'( X, Z ) ) ), X ), multiply(
% 0.85/1.23 Y, Z ) ) ] )
% 0.85/1.23 , 0, 2, substitution( 0, [ :=( X, 'double_divide'( inverse( X ),
% 0.85/1.23 'double_divide'( Y, Z ) ) )] ), substitution( 1, [ :=( X, Y ), :=( Y, X )
% 0.85/1.23 , :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 379, [ =( 'double_divide'( multiply( 'double_divide'( Y, Z ),
% 0.85/1.23 inverse( X ) ), Y ), multiply( X, Z ) ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 378, [ =( 'double_divide'( inverse( 'double_divide'( inverse(
% 0.85/1.23 X ), 'double_divide'( Y, Z ) ) ), Y ), multiply( X, Z ) ) ] )
% 0.85/1.23 , 0, 2, substitution( 0, [ :=( X, 'double_divide'( Y, Z ) ), :=( Y, inverse(
% 0.85/1.23 X ) )] ), substitution( 1, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 380, [ =( 'double_divide'( 'double_divide'( inverse(
% 0.85/1.23 'double_divide'( X, Y ) ), Z ), X ), multiply( Z, Y ) ) ] )
% 0.85/1.23 , clause( 78, [ =( multiply( Y, inverse( X ) ), 'double_divide'( inverse( Y
% 0.85/1.23 ), X ) ) ] )
% 0.85/1.23 , 0, clause( 379, [ =( 'double_divide'( multiply( 'double_divide'( Y, Z ),
% 0.85/1.23 inverse( X ) ), Y ), multiply( X, Z ) ) ] )
% 0.85/1.23 , 0, 2, substitution( 0, [ :=( X, Z ), :=( Y, 'double_divide'( X, Y ) )] )
% 0.85/1.23 , substitution( 1, [ :=( X, Z ), :=( Y, X ), :=( Z, Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 381, [ =( 'double_divide'( 'double_divide'( multiply( Y, X ), Z ),
% 0.85/1.23 X ), multiply( Z, Y ) ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 380, [ =( 'double_divide'( 'double_divide'( inverse(
% 0.85/1.23 'double_divide'( X, Y ) ), Z ), X ), multiply( Z, Y ) ) ] )
% 0.85/1.23 , 0, 3, substitution( 0, [ :=( X, Y ), :=( Y, X )] ), substitution( 1, [
% 0.85/1.23 :=( X, X ), :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 89, [ =( 'double_divide'( 'double_divide'( multiply( Z, Y ), X ), Y
% 0.85/1.23 ), multiply( X, Z ) ) ] )
% 0.85/1.23 , clause( 381, [ =( 'double_divide'( 'double_divide'( multiply( Y, X ), Z )
% 0.85/1.23 , X ), multiply( Z, Y ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, Y ), :=( Y, Z ), :=( Z, X )] ),
% 0.85/1.23 permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 392, [ ~( =( identity, identity ) ), ~( =( multiply( a3, multiply(
% 0.85/1.23 b3, c3 ) ), multiply( multiply( a3, b3 ), c3 ) ) ), ~( =( inverse(
% 0.85/1.23 inverse( a2 ) ), a2 ) ) ] )
% 0.85/1.23 , clause( 32, [ =( inverse( identity ), identity ) ] )
% 0.85/1.23 , 0, clause( 19, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply(
% 0.85/1.23 multiply( a3, b3 ), c3 ) ) ), ~( =( inverse( identity ), identity ) ),
% 0.85/1.23 ~( =( inverse( inverse( a2 ) ), a2 ) ) ] )
% 0.85/1.23 , 1, 2, substitution( 0, [] ), substitution( 1, [] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqrefl(
% 0.85/1.23 clause( 393, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply( multiply(
% 0.85/1.23 a3, b3 ), c3 ) ) ), ~( =( inverse( inverse( a2 ) ), a2 ) ) ] )
% 0.85/1.23 , clause( 392, [ ~( =( identity, identity ) ), ~( =( multiply( a3, multiply(
% 0.85/1.23 b3, c3 ) ), multiply( multiply( a3, b3 ), c3 ) ) ), ~( =( inverse(
% 0.85/1.23 inverse( a2 ) ), a2 ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 394, [ ~( =( a2, a2 ) ), ~( =( multiply( a3, multiply( b3, c3 ) ),
% 0.85/1.23 multiply( multiply( a3, b3 ), c3 ) ) ) ] )
% 0.85/1.23 , clause( 65, [ =( inverse( inverse( Y ) ), Y ) ] )
% 0.85/1.23 , 0, clause( 393, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply(
% 0.85/1.23 multiply( a3, b3 ), c3 ) ) ), ~( =( inverse( inverse( a2 ) ), a2 ) ) ] )
% 0.85/1.23 , 1, 2, substitution( 0, [ :=( X, X ), :=( Y, a2 )] ), substitution( 1, [] )
% 0.85/1.23 ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqrefl(
% 0.85/1.23 clause( 395, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply( multiply(
% 0.85/1.23 a3, b3 ), c3 ) ) ) ] )
% 0.85/1.23 , clause( 394, [ ~( =( a2, a2 ) ), ~( =( multiply( a3, multiply( b3, c3 ) )
% 0.85/1.23 , multiply( multiply( a3, b3 ), c3 ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 103, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply( multiply(
% 0.85/1.23 a3, b3 ), c3 ) ) ) ] )
% 0.85/1.23 , clause( 395, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply(
% 0.85/1.23 multiply( a3, b3 ), c3 ) ) ) ] )
% 0.85/1.23 , substitution( 0, [] ), permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 398, [ =( inverse( X ), multiply( 'double_divide'( X, Y ), Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , clause( 87, [ =( multiply( 'double_divide'( Y, X ), X ), inverse( Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 402, [ =( inverse( 'double_divide'( multiply( X, Y ), Z ) ),
% 0.85/1.23 multiply( multiply( Z, X ), Y ) ) ] )
% 0.85/1.23 , clause( 89, [ =( 'double_divide'( 'double_divide'( multiply( Z, Y ), X )
% 0.85/1.23 , Y ), multiply( X, Z ) ) ] )
% 0.85/1.23 , 0, clause( 398, [ =( inverse( X ), multiply( 'double_divide'( X, Y ), Y )
% 0.85/1.23 ) ] )
% 0.85/1.23 , 0, 8, substitution( 0, [ :=( X, Z ), :=( Y, Y ), :=( Z, X )] ),
% 0.85/1.23 substitution( 1, [ :=( X, 'double_divide'( multiply( X, Y ), Z ) ), :=( Y
% 0.85/1.23 , Y )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 paramod(
% 0.85/1.23 clause( 403, [ =( multiply( Z, multiply( X, Y ) ), multiply( multiply( Z, X
% 0.85/1.23 ), Y ) ) ] )
% 0.85/1.23 , clause( 5, [ =( inverse( 'double_divide'( Y, X ) ), multiply( X, Y ) ) ]
% 0.85/1.23 )
% 0.85/1.23 , 0, clause( 402, [ =( inverse( 'double_divide'( multiply( X, Y ), Z ) ),
% 0.85/1.23 multiply( multiply( Z, X ), Y ) ) ] )
% 0.85/1.23 , 0, 1, substitution( 0, [ :=( X, Z ), :=( Y, multiply( X, Y ) )] ),
% 0.85/1.23 substitution( 1, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 110, [ =( multiply( Z, multiply( X, Y ) ), multiply( multiply( Z, X
% 0.85/1.23 ), Y ) ) ] )
% 0.85/1.23 , clause( 403, [ =( multiply( Z, multiply( X, Y ) ), multiply( multiply( Z
% 0.85/1.23 , X ), Y ) ) ] )
% 0.85/1.23 , substitution( 0, [ :=( X, X ), :=( Y, Y ), :=( Z, Z )] ),
% 0.85/1.23 permutation( 0, [ ==>( 0, 0 )] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 405, [ =( multiply( multiply( X, Y ), Z ), multiply( X, multiply( Y
% 0.85/1.23 , Z ) ) ) ] )
% 0.85/1.23 , clause( 110, [ =( multiply( Z, multiply( X, Y ) ), multiply( multiply( Z
% 0.85/1.23 , X ), Y ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [ :=( X, Y ), :=( Y, Z ), :=( Z, X )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 eqswap(
% 0.85/1.23 clause( 406, [ ~( =( multiply( multiply( a3, b3 ), c3 ), multiply( a3,
% 0.85/1.23 multiply( b3, c3 ) ) ) ) ] )
% 0.85/1.23 , clause( 103, [ ~( =( multiply( a3, multiply( b3, c3 ) ), multiply(
% 0.85/1.23 multiply( a3, b3 ), c3 ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 resolution(
% 0.85/1.23 clause( 407, [] )
% 0.85/1.23 , clause( 406, [ ~( =( multiply( multiply( a3, b3 ), c3 ), multiply( a3,
% 0.85/1.23 multiply( b3, c3 ) ) ) ) ] )
% 0.85/1.23 , 0, clause( 405, [ =( multiply( multiply( X, Y ), Z ), multiply( X,
% 0.85/1.23 multiply( Y, Z ) ) ) ] )
% 0.85/1.23 , 0, substitution( 0, [] ), substitution( 1, [ :=( X, a3 ), :=( Y, b3 ),
% 0.85/1.23 :=( Z, c3 )] )).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 subsumption(
% 0.85/1.23 clause( 116, [] )
% 0.85/1.23 , clause( 407, [] )
% 0.85/1.23 , substitution( 0, [] ), permutation( 0, [] ) ).
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 end.
% 0.85/1.23
% 0.85/1.23 % ABCDEFGHIJKLMNOPQRSTUVWXYZ
% 0.85/1.23
% 0.85/1.23 Memory use:
% 0.85/1.23
% 0.85/1.23 space for terms: 1435
% 0.85/1.23 space for clauses: 13416
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 clauses generated: 698
% 0.85/1.23 clauses kept: 117
% 0.85/1.23 clauses selected: 40
% 0.85/1.23 clauses deleted: 32
% 0.85/1.23 clauses inuse deleted: 0
% 0.85/1.23
% 0.85/1.23 subsentry: 1154
% 0.85/1.23 literals s-matched: 301
% 0.85/1.23 literals matched: 296
% 0.85/1.23 full subsumption: 0
% 0.85/1.23
% 0.85/1.23 checksum: -882377133
% 0.85/1.23
% 0.85/1.23
% 0.85/1.23 Bliksem ended
%------------------------------------------------------------------------------