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Theorem unss1 1627
Description: Subclass law for union of classes.
Assertion
Ref Expression
unss1 |- (A (_ B -> (A u. C) (_ (B u. C))

Proof of Theorem unss1
StepHypRef Expression
1 id 9 . . . . 5 |- ((x e. A -> x e. B) -> (x e. A -> x e. B))
21orim1d 437 . . . 4 |- ((x e. A -> x e. B) -> ((x e. A \/ x e. C) -> (x e. B \/ x e. C)))
3 elun 1601 . . . 4 |- (x e. (A u. C) <-> (x e. A \/ x e. C))
4 elun 1601 . . . 4 |- (x e. (B u. C) <-> (x e. B \/ x e. C))
52, 3, 43imtr4g 426 . . 3 |- ((x e. A -> x e. B) -> (x e. (A u. C) -> x e. (B u. C)))
6519.20i 691 . 2 |- (A.x(x e. A -> x e. B) -> A.x(x e. (A u. C) -> x e. (B u. C)))
7 dfss2 1497 . 2 |- (A (_ B <-> A.x(x e. A -> x e. B))
8 dfss2 1497 . 2 |- ((A u. C) (_ (B u. C) <-> A.x(x e. (A u. C) -> x e. (B u. C)))
96, 7, 83imtr4 192 1 |- (A (_ B -> (A u. C) (_ (B u. C))
Colors of variables: wff set class
Syntax hints:   -> wi 2   \/ wo 195  A.wal 672   e. wcel 1092   u. cun 1485   (_ wss 1487
This theorem is referenced by:  unss2 1629  unss12 1630
This theorem was proved from axioms:  ax-1 3  ax-2 4  ax-3 5  ax-mp 6  ax-4 673  ax-5 674  ax-6 675  ax-7 676  ax-gen 677  ax-8 798  ax-9 799  ax-10 800  ax-11 801  ax-12 802  ax-16 922  ax-17 925  ax-ext 1074
This theorem depends on definitions:  df-bi 128  df-or 197  df-an 198  df-ex 679  df-sb 853  df-clab 1093  df-cleq 1097  df-clel 1099  df-v 1349  df-un 1490  df-in 1491  df-ss 1492
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