ILE Home Intuitionistic Logic Explorer < Previous   Next >
Nearby theorems
Mirrors  >  Home  >  ILE Home  >  Th. List  >  caucvgprprlemloccalc Unicode version

Theorem caucvgprprlemloccalc 6782
Description: Lemma for caucvgprpr 6810. Rearranging some expressions for caucvgprprlemloc 6801. (Contributed by Jim Kingdon, 8-Feb-2021.)
Hypotheses
Ref Expression
caucvgprprlemloccalc.st  |-  ( ph  ->  S  <Q  T )
caucvgprprlemloccalc.y  |-  ( ph  ->  Y  e.  Q. )
caucvgprprlemloccalc.syt  |-  ( ph  ->  ( S  +Q  Y
)  =  T )
caucvgprprlemloccalc.x  |-  ( ph  ->  X  e.  Q. )
caucvgprprlemloccalc.xxy  |-  ( ph  ->  ( X  +Q  X
)  <Q  Y )
caucvgprprlemloccalc.m  |-  ( ph  ->  M  e.  N. )
caucvgprprlemloccalc.mx  |-  ( ph  ->  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  <Q  X )
Assertion
Ref Expression
caucvgprprlemloccalc  |-  ( ph  ->  ( <. { l  |  l  <Q  ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) ) } ,  { u  |  ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  <Q  u } >.  +P. 
<. { l  |  l 
<Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) } ,  { u  |  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  <Q  u } >. )  <P 
<. { l  |  l 
<Q  T } ,  {
u  |  T  <Q  u } >. )
Distinct variable groups:    M, l, u    S, l, u    T, l, u
Allowed substitution hints:    ph( u, l)    X( u, l)    Y( u, l)

Proof of Theorem caucvgprprlemloccalc
StepHypRef Expression
1 caucvgprprlemloccalc.st . . . . . 6  |-  ( ph  ->  S  <Q  T )
2 ltrelnq 6463 . . . . . . 7  |-  <Q  C_  ( Q.  X.  Q. )
32brel 4392 . . . . . 6  |-  ( S 
<Q  T  ->  ( S  e.  Q.  /\  T  e.  Q. ) )
41, 3syl 14 . . . . 5  |-  ( ph  ->  ( S  e.  Q.  /\  T  e.  Q. )
)
54simpld 105 . . . 4  |-  ( ph  ->  S  e.  Q. )
6 caucvgprprlemloccalc.m . . . . 5  |-  ( ph  ->  M  e.  N. )
7 nnnq 6520 . . . . 5  |-  ( M  e.  N.  ->  [ <. M ,  1o >. ]  ~Q  e.  Q. )
8 recclnq 6490 . . . . 5  |-  ( [
<. M ,  1o >. ]  ~Q  e.  Q.  ->  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  e.  Q. )
96, 7, 83syl 17 . . . 4  |-  ( ph  ->  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  e.  Q. )
10 addclnq 6473 . . . 4  |-  ( ( S  e.  Q.  /\  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  e.  Q. )  ->  ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  e.  Q. )
115, 9, 10syl2anc 391 . . 3  |-  ( ph  ->  ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  e.  Q. )
12 addnqpr 6659 . . 3  |-  ( ( ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  e.  Q.  /\  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  e.  Q. )  -> 
<. { l  |  l 
<Q  ( ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
) } ,  {
u  |  ( ( S  +Q  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )
)  +Q  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )
)  <Q  u } >.  =  ( <. { l  |  l  <Q  ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) ) } ,  { u  |  ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  <Q  u } >.  +P. 
<. { l  |  l 
<Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) } ,  { u  |  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  <Q  u } >. )
)
1311, 9, 12syl2anc 391 . 2  |-  ( ph  -> 
<. { l  |  l 
<Q  ( ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
) } ,  {
u  |  ( ( S  +Q  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )
)  +Q  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )
)  <Q  u } >.  =  ( <. { l  |  l  <Q  ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) ) } ,  { u  |  ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  <Q  u } >.  +P. 
<. { l  |  l 
<Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) } ,  { u  |  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  <Q  u } >. )
)
14 addassnqg 6480 . . . . 5  |-  ( ( S  e.  Q.  /\  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  e.  Q.  /\  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  e.  Q. )  ->  (
( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  +Q  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )
)  =  ( S  +Q  ( ( *Q
`  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) ) ) )
155, 9, 9, 14syl3anc 1135 . . . 4  |-  ( ph  ->  ( ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  =  ( S  +Q  ( ( *Q
`  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) ) ) )
16 caucvgprprlemloccalc.mx . . . . . . . 8  |-  ( ph  ->  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  <Q  X )
17 caucvgprprlemloccalc.x . . . . . . . . 9  |-  ( ph  ->  X  e.  Q. )
18 lt2addnq 6502 . . . . . . . . 9  |-  ( ( ( ( *Q `  [ <. M ,  1o >. ]  ~Q  )  e. 
Q.  /\  X  e.  Q. )  /\  (
( *Q `  [ <. M ,  1o >. ]  ~Q  )  e.  Q.  /\  X  e.  Q. )
)  ->  ( (
( *Q `  [ <. M ,  1o >. ]  ~Q  )  <Q  X  /\  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  <Q  X )  -> 
( ( *Q `  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) )  <Q 
( X  +Q  X
) ) )
199, 17, 9, 17, 18syl22anc 1136 . . . . . . . 8  |-  ( ph  ->  ( ( ( *Q
`  [ <. M ,  1o >. ]  ~Q  )  <Q  X  /\  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )  <Q  X )  ->  (
( *Q `  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  <Q  ( X  +Q  X ) ) )
2016, 16, 19mp2and 409 . . . . . . 7  |-  ( ph  ->  ( ( *Q `  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) )  <Q 
( X  +Q  X
) )
21 caucvgprprlemloccalc.xxy . . . . . . 7  |-  ( ph  ->  ( X  +Q  X
)  <Q  Y )
22 ltsonq 6496 . . . . . . . 8  |-  <Q  Or  Q.
2322, 2sotri 4720 . . . . . . 7  |-  ( ( ( ( *Q `  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) )  <Q 
( X  +Q  X
)  /\  ( X  +Q  X )  <Q  Y )  ->  ( ( *Q
`  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) )  <Q  Y )
2420, 21, 23syl2anc 391 . . . . . 6  |-  ( ph  ->  ( ( *Q `  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) )  <Q  Y )
25 ltanqi 6500 . . . . . 6  |-  ( ( ( ( *Q `  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) )  <Q  Y  /\  S  e.  Q. )  ->  ( S  +Q  ( ( *Q `  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) ) ) 
<Q  ( S  +Q  Y
) )
2624, 5, 25syl2anc 391 . . . . 5  |-  ( ph  ->  ( S  +Q  (
( *Q `  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
) )  <Q  ( S  +Q  Y ) )
27 caucvgprprlemloccalc.syt . . . . 5  |-  ( ph  ->  ( S  +Q  Y
)  =  T )
2826, 27breqtrd 3788 . . . 4  |-  ( ph  ->  ( S  +Q  (
( *Q `  [ <. M ,  1o >. ]  ~Q  )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
) )  <Q  T )
2915, 28eqbrtrd 3784 . . 3  |-  ( ph  ->  ( ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  <Q  T )
30 ltnqpri 6692 . . 3  |-  ( ( ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  +Q  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )
)  <Q  T  ->  <. { l  |  l  <Q  (
( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  +Q  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )
) } ,  {
u  |  ( ( S  +Q  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )
)  +Q  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )
)  <Q  u } >.  <P  <. { l  |  l 
<Q  T } ,  {
u  |  T  <Q  u } >. )
3129, 30syl 14 . 2  |-  ( ph  -> 
<. { l  |  l 
<Q  ( ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) )  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
) } ,  {
u  |  ( ( S  +Q  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )
)  +Q  ( *Q
`  [ <. M ,  1o >. ]  ~Q  )
)  <Q  u } >.  <P  <. { l  |  l 
<Q  T } ,  {
u  |  T  <Q  u } >. )
3213, 31eqbrtrrd 3786 1  |-  ( ph  ->  ( <. { l  |  l  <Q  ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) ) } ,  { u  |  ( S  +Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  )
)  <Q  u } >.  +P. 
<. { l  |  l 
<Q  ( *Q `  [ <. M ,  1o >. ]  ~Q  ) } ,  { u  |  ( *Q `  [ <. M ,  1o >. ]  ~Q  )  <Q  u } >. )  <P 
<. { l  |  l 
<Q  T } ,  {
u  |  T  <Q  u } >. )
Colors of variables: wff set class
Syntax hints:    -> wi 4    /\ wa 97    = wceq 1243    e. wcel 1393   {cab 2026   <.cop 3378   class class class wbr 3764   ` cfv 4902  (class class class)co 5512   1oc1o 5994   [cec 6104   N.cnpi 6370    ~Q ceq 6377   Q.cnq 6378    +Q cplq 6380   *Qcrq 6382    <Q cltq 6383    +P. cpp 6391    <P cltp 6393
This theorem was proved from axioms:  ax-1 5  ax-2 6  ax-mp 7  ax-ia1 99  ax-ia2 100  ax-ia3 101  ax-in1 544  ax-in2 545  ax-io 630  ax-5 1336  ax-7 1337  ax-gen 1338  ax-ie1 1382  ax-ie2 1383  ax-8 1395  ax-10 1396  ax-11 1397  ax-i12 1398  ax-bndl 1399  ax-4 1400  ax-13 1404  ax-14 1405  ax-17 1419  ax-i9 1423  ax-ial 1427  ax-i5r 1428  ax-ext 2022  ax-coll 3872  ax-sep 3875  ax-nul 3883  ax-pow 3927  ax-pr 3944  ax-un 4170  ax-setind 4262  ax-iinf 4311
This theorem depends on definitions:  df-bi 110  df-dc 743  df-3or 886  df-3an 887  df-tru 1246  df-fal 1249  df-nf 1350  df-sb 1646  df-eu 1903  df-mo 1904  df-clab 2027  df-cleq 2033  df-clel 2036  df-nfc 2167  df-ne 2206  df-ral 2311  df-rex 2312  df-reu 2313  df-rab 2315  df-v 2559  df-sbc 2765  df-csb 2853  df-dif 2920  df-un 2922  df-in 2924  df-ss 2931  df-nul 3225  df-pw 3361  df-sn 3381  df-pr 3382  df-op 3384  df-uni 3581  df-int 3616  df-iun 3659  df-br 3765  df-opab 3819  df-mpt 3820  df-tr 3855  df-eprel 4026  df-id 4030  df-po 4033  df-iso 4034  df-iord 4103  df-on 4105  df-suc 4108  df-iom 4314  df-xp 4351  df-rel 4352  df-cnv 4353  df-co 4354  df-dm 4355  df-rn 4356  df-res 4357  df-ima 4358  df-iota 4867  df-fun 4904  df-fn 4905  df-f 4906  df-f1 4907  df-fo 4908  df-f1o 4909  df-fv 4910  df-ov 5515  df-oprab 5516  df-mpt2 5517  df-1st 5767  df-2nd 5768  df-recs 5920  df-irdg 5957  df-1o 6001  df-2o 6002  df-oadd 6005  df-omul 6006  df-er 6106  df-ec 6108  df-qs 6112  df-ni 6402  df-pli 6403  df-mi 6404  df-lti 6405  df-plpq 6442  df-mpq 6443  df-enq 6445  df-nqqs 6446  df-plqqs 6447  df-mqqs 6448  df-1nqqs 6449  df-rq 6450  df-ltnqqs 6451  df-enq0 6522  df-nq0 6523  df-0nq0 6524  df-plq0 6525  df-mq0 6526  df-inp 6564  df-iplp 6566  df-iltp 6568
This theorem is referenced by:  caucvgprprlemloc  6801
  Copyright terms: Public domain W3C validator