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Theorem 2oath1 808
Description: OA-like theorem with →2 instead of →0 .
Assertion
Ref Expression
2oath1 ((a2 b) ∩ ((bc) →2 ((a2 b) ∩ (a2 c)))) = ((a2 b) ∩ (a2 c))

Proof of Theorem 2oath1
StepHypRef Expression
1 df-i2 44 . . 3 ((bc) →2 ((a2 b) ∩ (a2 c))) = (((a2 b) ∩ (a2 c)) ∪ ((bc) ∩ ((a2 b) ∩ (a2 c)) ))
21lan 70 . 2 ((a2 b) ∩ ((bc) →2 ((a2 b) ∩ (a2 c)))) = ((a2 b) ∩ (((a2 b) ∩ (a2 c)) ∪ ((bc) ∩ ((a2 b) ∩ (a2 c)) )))
3 coman1 177 . . 3 ((a2 b) ∩ (a2 c)) C (a2 b)
4 comorr2 445 . . . . 5 ((a2 b) ∩ (a2 c)) C ((bc) ∪ ((a2 b) ∩ (a2 c)))
54comcom2 175 . . . 4 ((a2 b) ∩ (a2 c)) C ((bc) ∪ ((a2 b) ∩ (a2 c)))
6 anor3 82 . . . . 5 ((bc) ∩ ((a2 b) ∩ (a2 c)) ) = ((bc) ∪ ((a2 b) ∩ (a2 c)))
76ax-r1 34 . . . 4 ((bc) ∪ ((a2 b) ∩ (a2 c))) = ((bc) ∩ ((a2 b) ∩ (a2 c)) )
85, 7cbtr 174 . . 3 ((a2 b) ∩ (a2 c)) C ((bc) ∩ ((a2 b) ∩ (a2 c)) )
93, 8fh2 452 . 2 ((a2 b) ∩ (((a2 b) ∩ (a2 c)) ∪ ((bc) ∩ ((a2 b) ∩ (a2 c)) ))) = (((a2 b) ∩ ((a2 b) ∩ (a2 c))) ∪ ((a2 b) ∩ ((bc) ∩ ((a2 b) ∩ (a2 c)) )))
10 anass 69 . . . . . 6 (((a2 b) ∩ (a2 b)) ∩ (a2 c)) = ((a2 b) ∩ ((a2 b) ∩ (a2 c)))
1110ax-r1 34 . . . . 5 ((a2 b) ∩ ((a2 b) ∩ (a2 c))) = (((a2 b) ∩ (a2 b)) ∩ (a2 c))
12 anidm 103 . . . . . 6 ((a2 b) ∩ (a2 b)) = (a2 b)
1312ran 71 . . . . 5 (((a2 b) ∩ (a2 b)) ∩ (a2 c)) = ((a2 b) ∩ (a2 c))
1411, 13ax-r2 35 . . . 4 ((a2 b) ∩ ((a2 b) ∩ (a2 c))) = ((a2 b) ∩ (a2 c))
15 oran 79 . . . . . . . . 9 ((bc) ∪ ((a2 b) ∩ (a2 c))) = ((bc) ∩ ((a2 b) ∩ (a2 c)) )
1615lor 66 . . . . . . . 8 ((a2 b) ∪ ((bc) ∪ ((a2 b) ∩ (a2 c)))) = ((a2 b) ∪ ((bc) ∩ ((a2 b) ∩ (a2 c)) ) )
1716ax-r1 34 . . . . . . 7 ((a2 b) ∪ ((bc) ∩ ((a2 b) ∩ (a2 c)) ) ) = ((a2 b) ∪ ((bc) ∪ ((a2 b) ∩ (a2 c))))
18 2oalem1 807 . . . . . . 7 ((a2 b) ∪ ((bc) ∪ ((a2 b) ∩ (a2 c)))) = 1
1917, 18ax-r2 35 . . . . . 6 ((a2 b) ∪ ((bc) ∩ ((a2 b) ∩ (a2 c)) ) ) = 1
2019ax-r4 36 . . . . 5 ((a2 b) ∪ ((bc) ∩ ((a2 b) ∩ (a2 c)) ) ) = 1
21 df-a 39 . . . . 5 ((a2 b) ∩ ((bc) ∩ ((a2 b) ∩ (a2 c)) )) = ((a2 b) ∪ ((bc) ∩ ((a2 b) ∩ (a2 c)) ) )
22 df-f 41 . . . . 5 0 = 1
2320, 21, 223tr1 60 . . . 4 ((a2 b) ∩ ((bc) ∩ ((a2 b) ∩ (a2 c)) )) = 0
2414, 232or 67 . . 3 (((a2 b) ∩ ((a2 b) ∩ (a2 c))) ∪ ((a2 b) ∩ ((bc) ∩ ((a2 b) ∩ (a2 c)) ))) = (((a2 b) ∩ (a2 c)) ∪ 0)
25 or0 94 . . 3 (((a2 b) ∩ (a2 c)) ∪ 0) = ((a2 b) ∩ (a2 c))
2624, 25ax-r2 35 . 2 (((a2 b) ∩ ((a2 b) ∩ (a2 c))) ∪ ((a2 b) ∩ ((bc) ∩ ((a2 b) ∩ (a2 c)) ))) = ((a2 b) ∩ (a2 c))
272, 9, 263tr 62 1 ((a2 b) ∩ ((bc) →2 ((a2 b) ∩ (a2 c)))) = ((a2 b) ∩ (a2 c))
Colors of variables: term
Syntax hints:   = wb 1   wn 4   ∪ wo 6   ∩ wa 7  1wt 9  0wf 10   →2 wi2 14
This theorem is referenced by:  2oath1i1 809  oale 811  oaeqv 812  distoa 924
This theorem was proved from axioms:  ax-a1 29  ax-a2 30  ax-a3 31  ax-a4 32  ax-a5 33  ax-r1 34  ax-r2 35  ax-r4 36  ax-r5 37  ax-r3 421
This theorem depends on definitions:  df-b 38  df-a 39  df-t 40  df-f 41  df-i2 44  df-le1 122  df-le2 123  df-c1 124  df-c2 125
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