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Theorem intn3an1d 10328
Description: Introduction of a conjunct inside a contradiction.
Hypothesis
Ref Expression
intn3and.1 |- (ph -> -. ps)
Assertion
Ref Expression
intn3an1d |- (ph -> -. (ps /\ ch /\ th))

Proof of Theorem intn3an1d
StepHypRef Expression
1 intn3and.1 . . . 4 |- (ph -> -. ps)
21intnanrd 692 . . 3 |- (ph -> -. (ps /\ ch))
32intnanrd 692 . 2 |- (ph -> -. ((ps /\ ch) /\ th))
4 df-3an 775 . . 3 |- ((ps /\ ch /\ th) <-> ((ps /\ ch) /\ th))
54negbii 187 . 2 |- (-. (ps /\ ch /\ th) <-> -. ((ps /\ ch) /\ th))
63, 5sylibr 200 1 |- (ph -> -. (ps /\ ch /\ th))
Colors of variables: wff set class
Syntax hints:  -. wn 2   -> wi 3   /\ wa 223   /\ w3a 773
This theorem was proved from axioms:  ax-1 4  ax-2 5  ax-3 6  ax-mp 7
This theorem depends on definitions:  df-bi 147  df-an 225  df-3an 775
Copyright terms: Public domain