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Theorem sseqtrd 3035
Description: Substitution of equality into a subclass relationship. (Contributed by NM, 25-Apr-2004.)
Hypotheses
Ref Expression
sseqtrd.1  |-  ( ph  ->  A  C_  B )
sseqtrd.2  |-  ( ph  ->  B  =  C )
Assertion
Ref Expression
sseqtrd  |-  ( ph  ->  A  C_  C )

Proof of Theorem sseqtrd
StepHypRef Expression
1 sseqtrd.1 . 2  |-  ( ph  ->  A  C_  B )
2 sseqtrd.2 . . 3  |-  ( ph  ->  B  =  C )
32sseq2d 3027 . 2  |-  ( ph  ->  ( A  C_  B  <->  A 
C_  C ) )
41, 3mpbid 145 1  |-  ( ph  ->  A  C_  C )
Colors of variables: wff set class
Syntax hints:    -> wi 4    = wceq 1284    C_ wss 2973
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-5 1376  ax-7 1377  ax-gen 1378  ax-ie1 1422  ax-ie2 1423  ax-8 1435  ax-11 1437  ax-4 1440  ax-17 1459  ax-i9 1463  ax-ial 1467  ax-i5r 1468  ax-ext 2063
This theorem depends on definitions:  df-bi 115  df-nf 1390  df-sb 1686  df-clab 2068  df-cleq 2074  df-clel 2077  df-in 2979  df-ss 2986
This theorem is referenced by:  sseqtr4d  3036  resasplitss  5089  nnaword2  6110  erssxp  6152  phpm  6351  ioodisj  9015
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