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Theorem f2ndf 5867
Description: The  2nd (second member of an ordered pair) function restricted to a function  F is a function of  F into the codomain of  F. (Contributed by Alexander van der Vekens, 4-Feb-2018.)
Assertion
Ref Expression
f2ndf  |-  ( F : A --> B  -> 
( 2nd  |`  F ) : F --> B )

Proof of Theorem f2ndf
StepHypRef Expression
1 f2ndres 5807 . . 3  |-  ( 2nd  |`  ( A  X.  B
) ) : ( A  X.  B ) --> B
2 fssxp 5078 . . 3  |-  ( F : A --> B  ->  F  C_  ( A  X.  B ) )
3 fssres 5086 . . 3  |-  ( ( ( 2nd  |`  ( A  X.  B ) ) : ( A  X.  B ) --> B  /\  F  C_  ( A  X.  B ) )  -> 
( ( 2nd  |`  ( A  X.  B ) )  |`  F ) : F --> B )
41, 2, 3sylancr 405 . 2  |-  ( F : A --> B  -> 
( ( 2nd  |`  ( A  X.  B ) )  |`  F ) : F --> B )
5 resabs1 4658 . . . . 5  |-  ( F 
C_  ( A  X.  B )  ->  (
( 2nd  |`  ( A  X.  B ) )  |`  F )  =  ( 2nd  |`  F )
)
62, 5syl 14 . . . 4  |-  ( F : A --> B  -> 
( ( 2nd  |`  ( A  X.  B ) )  |`  F )  =  ( 2nd  |`  F )
)
76eqcomd 2086 . . 3  |-  ( F : A --> B  -> 
( 2nd  |`  F )  =  ( ( 2nd  |`  ( A  X.  B
) )  |`  F ) )
87feq1d 5054 . 2  |-  ( F : A --> B  -> 
( ( 2nd  |`  F ) : F --> B  <->  ( ( 2nd  |`  ( A  X.  B ) )  |`  F ) : F --> B ) )
94, 8mpbird 165 1  |-  ( F : A --> B  -> 
( 2nd  |`  F ) : F --> B )
Colors of variables: wff set class
Syntax hints:    -> wi 4    = wceq 1284    C_ wss 2973    X. cxp 4361    |` cres 4365   -->wf 4918   2ndc2nd 5786
This theorem was proved from axioms:  ax-1 5  ax-2 6  ax-mp 7  ax-ia1 104  ax-ia2 105  ax-ia3 106  ax-io 662  ax-5 1376  ax-7 1377  ax-gen 1378  ax-ie1 1422  ax-ie2 1423  ax-8 1435  ax-10 1436  ax-11 1437  ax-i12 1438  ax-bndl 1439  ax-4 1440  ax-14 1445  ax-17 1459  ax-i9 1463  ax-ial 1467  ax-i5r 1468  ax-ext 2063  ax-sep 3896  ax-pow 3948  ax-pr 3964
This theorem depends on definitions:  df-bi 115  df-3an 921  df-tru 1287  df-nf 1390  df-sb 1686  df-eu 1944  df-mo 1945  df-clab 2068  df-cleq 2074  df-clel 2077  df-nfc 2208  df-ral 2353  df-rex 2354  df-rab 2357  df-v 2603  df-sbc 2816  df-csb 2909  df-un 2977  df-in 2979  df-ss 2986  df-pw 3384  df-sn 3404  df-pr 3405  df-op 3407  df-uni 3602  df-iun 3680  df-br 3786  df-opab 3840  df-mpt 3841  df-id 4048  df-xp 4369  df-rel 4370  df-cnv 4371  df-co 4372  df-dm 4373  df-rn 4374  df-res 4375  df-ima 4376  df-iota 4887  df-fun 4924  df-fn 4925  df-f 4926  df-fv 4930  df-2nd 5788
This theorem is referenced by:  fo2ndf  5868  f1o2ndf1  5869
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