Metamath Proof Explorer |
< Previous
Next >
Nearby theorems |
||
Mirrors > Home > MPE Home > Th. List > trfbas | Structured version Visualization version GIF version |
Description: Conditions for the trace of a filter base 𝐹 to be a filter base. (Contributed by Mario Carneiro, 13-Oct-2015.) |
Ref | Expression |
---|---|
trfbas | ⊢ ((𝐹 ∈ (fBas‘𝑌) ∧ 𝐴 ⊆ 𝑌) → ((𝐹 ↾t 𝐴) ∈ (fBas‘𝐴) ↔ ∀𝑣 ∈ 𝐹 (𝑣 ∩ 𝐴) ≠ ∅)) |
Step | Hyp | Ref | Expression |
---|---|---|---|
1 | trfbas2 21457 | . 2 ⊢ ((𝐹 ∈ (fBas‘𝑌) ∧ 𝐴 ⊆ 𝑌) → ((𝐹 ↾t 𝐴) ∈ (fBas‘𝐴) ↔ ¬ ∅ ∈ (𝐹 ↾t 𝐴))) | |
2 | elfvdm 6130 | . . . . . 6 ⊢ (𝐹 ∈ (fBas‘𝑌) → 𝑌 ∈ dom fBas) | |
3 | ssexg 4732 | . . . . . . 7 ⊢ ((𝐴 ⊆ 𝑌 ∧ 𝑌 ∈ dom fBas) → 𝐴 ∈ V) | |
4 | 3 | ancoms 468 | . . . . . 6 ⊢ ((𝑌 ∈ dom fBas ∧ 𝐴 ⊆ 𝑌) → 𝐴 ∈ V) |
5 | 2, 4 | sylan 487 | . . . . 5 ⊢ ((𝐹 ∈ (fBas‘𝑌) ∧ 𝐴 ⊆ 𝑌) → 𝐴 ∈ V) |
6 | elrest 15911 | . . . . 5 ⊢ ((𝐹 ∈ (fBas‘𝑌) ∧ 𝐴 ∈ V) → (∅ ∈ (𝐹 ↾t 𝐴) ↔ ∃𝑣 ∈ 𝐹 ∅ = (𝑣 ∩ 𝐴))) | |
7 | 5, 6 | syldan 486 | . . . 4 ⊢ ((𝐹 ∈ (fBas‘𝑌) ∧ 𝐴 ⊆ 𝑌) → (∅ ∈ (𝐹 ↾t 𝐴) ↔ ∃𝑣 ∈ 𝐹 ∅ = (𝑣 ∩ 𝐴))) |
8 | 7 | notbid 307 | . . 3 ⊢ ((𝐹 ∈ (fBas‘𝑌) ∧ 𝐴 ⊆ 𝑌) → (¬ ∅ ∈ (𝐹 ↾t 𝐴) ↔ ¬ ∃𝑣 ∈ 𝐹 ∅ = (𝑣 ∩ 𝐴))) |
9 | nesym 2838 | . . . . 5 ⊢ ((𝑣 ∩ 𝐴) ≠ ∅ ↔ ¬ ∅ = (𝑣 ∩ 𝐴)) | |
10 | 9 | ralbii 2963 | . . . 4 ⊢ (∀𝑣 ∈ 𝐹 (𝑣 ∩ 𝐴) ≠ ∅ ↔ ∀𝑣 ∈ 𝐹 ¬ ∅ = (𝑣 ∩ 𝐴)) |
11 | ralnex 2975 | . . . 4 ⊢ (∀𝑣 ∈ 𝐹 ¬ ∅ = (𝑣 ∩ 𝐴) ↔ ¬ ∃𝑣 ∈ 𝐹 ∅ = (𝑣 ∩ 𝐴)) | |
12 | 10, 11 | bitri 263 | . . 3 ⊢ (∀𝑣 ∈ 𝐹 (𝑣 ∩ 𝐴) ≠ ∅ ↔ ¬ ∃𝑣 ∈ 𝐹 ∅ = (𝑣 ∩ 𝐴)) |
13 | 8, 12 | syl6bbr 277 | . 2 ⊢ ((𝐹 ∈ (fBas‘𝑌) ∧ 𝐴 ⊆ 𝑌) → (¬ ∅ ∈ (𝐹 ↾t 𝐴) ↔ ∀𝑣 ∈ 𝐹 (𝑣 ∩ 𝐴) ≠ ∅)) |
14 | 1, 13 | bitrd 267 | 1 ⊢ ((𝐹 ∈ (fBas‘𝑌) ∧ 𝐴 ⊆ 𝑌) → ((𝐹 ↾t 𝐴) ∈ (fBas‘𝐴) ↔ ∀𝑣 ∈ 𝐹 (𝑣 ∩ 𝐴) ≠ ∅)) |
Colors of variables: wff setvar class |
Syntax hints: ¬ wn 3 → wi 4 ↔ wb 195 ∧ wa 383 = wceq 1475 ∈ wcel 1977 ≠ wne 2780 ∀wral 2896 ∃wrex 2897 Vcvv 3173 ∩ cin 3539 ⊆ wss 3540 ∅c0 3874 dom cdm 5038 ‘cfv 5804 (class class class)co 6549 ↾t crest 15904 fBascfbas 19555 |
This theorem was proved from axioms: ax-mp 5 ax-1 6 ax-2 7 ax-3 8 ax-gen 1713 ax-4 1728 ax-5 1827 ax-6 1875 ax-7 1922 ax-8 1979 ax-9 1986 ax-10 2006 ax-11 2021 ax-12 2034 ax-13 2234 ax-ext 2590 ax-rep 4699 ax-sep 4709 ax-nul 4717 ax-pow 4769 ax-pr 4833 ax-un 6847 |
This theorem depends on definitions: df-bi 196 df-or 384 df-an 385 df-3an 1033 df-tru 1478 df-ex 1696 df-nf 1701 df-sb 1868 df-eu 2462 df-mo 2463 df-clab 2597 df-cleq 2603 df-clel 2606 df-nfc 2740 df-ne 2782 df-nel 2783 df-ral 2901 df-rex 2902 df-reu 2903 df-rab 2905 df-v 3175 df-sbc 3403 df-csb 3500 df-dif 3543 df-un 3545 df-in 3547 df-ss 3554 df-nul 3875 df-if 4037 df-pw 4110 df-sn 4126 df-pr 4128 df-op 4132 df-uni 4373 df-iun 4457 df-br 4584 df-opab 4644 df-mpt 4645 df-id 4953 df-xp 5044 df-rel 5045 df-cnv 5046 df-co 5047 df-dm 5048 df-rn 5049 df-res 5050 df-ima 5051 df-iota 5768 df-fun 5806 df-fn 5807 df-f 5808 df-f1 5809 df-fo 5810 df-f1o 5811 df-fv 5812 df-ov 6552 df-oprab 6553 df-mpt2 6554 df-1st 7059 df-2nd 7060 df-rest 15906 df-fbas 19564 |
This theorem is referenced by: (None) |
Copyright terms: Public domain | W3C validator |