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Theorem wledi 387
Description: Half of distributive law.
Assertion
Ref Expression
wledi (((ab) ∪ (ac)) ≤2 (a ∩ (bc))) = 1

Proof of Theorem wledi
StepHypRef Expression
1 anidm 103 . . . 4 (((ab) ∪ (ac)) ∩ ((ab) ∪ (ac))) = ((ab) ∪ (ac))
21bi1 110 . . 3 ((((ab) ∪ (ac)) ∩ ((ab) ∪ (ac))) ≡ ((ab) ∪ (ac))) = 1
32wr1 189 . 2 (((ab) ∪ (ac)) ≡ (((ab) ∪ (ac)) ∩ ((ab) ∪ (ac)))) = 1
4 wlea 370 . . . . 5 ((ab) ≤2 a) = 1
5 wlea 370 . . . . 5 ((ac) ≤2 a) = 1
64, 5wle2or 385 . . . 4 (((ab) ∪ (ac)) ≤2 (aa)) = 1
7 oridm 102 . . . . 5 (aa) = a
87bi1 110 . . . 4 ((aa) ≡ a) = 1
96, 8wlbtr 380 . . 3 (((ab) ∪ (ac)) ≤2 a) = 1
10 ancom 68 . . . . . 6 (ab) = (ba)
1110bi1 110 . . . . 5 ((ab) ≡ (ba)) = 1
12 wlea 370 . . . . 5 ((ba) ≤2 b) = 1
1311, 12wbltr 379 . . . 4 ((ab) ≤2 b) = 1
14 ancom 68 . . . . . 6 (ac) = (ca)
1514bi1 110 . . . . 5 ((ac) ≡ (ca)) = 1
16 wlea 370 . . . . 5 ((ca) ≤2 c) = 1
1715, 16wbltr 379 . . . 4 ((ac) ≤2 c) = 1
1813, 17wle2or 385 . . 3 (((ab) ∪ (ac)) ≤2 (bc)) = 1
199, 18wle2an 386 . 2 ((((ab) ∪ (ac)) ∩ ((ab) ∪ (ac))) ≤2 (a ∩ (bc))) = 1
203, 19wbltr 379 1 (((ab) ∪ (ac)) ≤2 (a ∩ (bc))) = 1
Colors of variables: term
Syntax hints:   = wb 1   ∪ wo 6   ∩ wa 7  1wt 9   ≤2 wle2 11
This theorem is referenced by:  wfh1 405  wfh2 406
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-wom 343
This theorem depends on definitions:  df-b 38  df-a 39  df-t 40  df-f 41  df-i1 43  df-i2 44  df-le 121  df-le1 122  df-le2 123
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