Step | Hyp | Ref
| Expression |
1 | | sstotbnd.2 |
. . . . 5
⊢ 𝑁 = (𝑀 ↾ (𝑌 × 𝑌)) |
2 | | metres2 22168 |
. . . . 5
⊢ ((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) → (𝑀 ↾ (𝑌 × 𝑌)) ∈ (Met‘𝑌)) |
3 | 1, 2 | syl5eqel 2705 |
. . . 4
⊢ ((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) → 𝑁 ∈ (Met‘𝑌)) |
4 | | istotbnd3 33570 |
. . . . 5
⊢ (𝑁 ∈ (TotBnd‘𝑌) ↔ (𝑁 ∈ (Met‘𝑌) ∧ ∀𝑑 ∈ ℝ+ ∃𝑣 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) |
5 | 4 | baib 944 |
. . . 4
⊢ (𝑁 ∈ (Met‘𝑌) → (𝑁 ∈ (TotBnd‘𝑌) ↔ ∀𝑑 ∈ ℝ+ ∃𝑣 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) |
6 | 3, 5 | syl 17 |
. . 3
⊢ ((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) → (𝑁 ∈ (TotBnd‘𝑌) ↔ ∀𝑑 ∈ ℝ+ ∃𝑣 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) |
7 | | simpllr 799 |
. . . . . . . . . 10
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑌 ∩ Fin) ∧ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) → 𝑌 ⊆ 𝑋) |
8 | | sspwb 4917 |
. . . . . . . . . 10
⊢ (𝑌 ⊆ 𝑋 ↔ 𝒫 𝑌 ⊆ 𝒫 𝑋) |
9 | 7, 8 | sylib 208 |
. . . . . . . . 9
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑌 ∩ Fin) ∧ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) → 𝒫 𝑌 ⊆ 𝒫 𝑋) |
10 | | ssrin 3838 |
. . . . . . . . 9
⊢
(𝒫 𝑌 ⊆
𝒫 𝑋 →
(𝒫 𝑌 ∩ Fin)
⊆ (𝒫 𝑋 ∩
Fin)) |
11 | 9, 10 | syl 17 |
. . . . . . . 8
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑌 ∩ Fin) ∧ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) → (𝒫 𝑌 ∩ Fin) ⊆ (𝒫 𝑋 ∩ Fin)) |
12 | | simprl 794 |
. . . . . . . 8
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑌 ∩ Fin) ∧ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) → 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) |
13 | 11, 12 | sseldd 3604 |
. . . . . . 7
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑌 ∩ Fin) ∧ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) → 𝑣 ∈ (𝒫 𝑋 ∩ Fin)) |
14 | | simprr 796 |
. . . . . . . 8
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑌 ∩ Fin) ∧ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) → ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌) |
15 | | metxmet 22139 |
. . . . . . . . . . . . . 14
⊢ (𝑀 ∈ (Met‘𝑋) → 𝑀 ∈ (∞Met‘𝑋)) |
16 | 15 | ad4antr 768 |
. . . . . . . . . . . . 13
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) ∧ 𝑥 ∈ 𝑣) → 𝑀 ∈ (∞Met‘𝑋)) |
17 | | elfpw 8268 |
. . . . . . . . . . . . . . . . 17
⊢ (𝑣 ∈ (𝒫 𝑌 ∩ Fin) ↔ (𝑣 ⊆ 𝑌 ∧ 𝑣 ∈ Fin)) |
18 | 17 | simplbi 476 |
. . . . . . . . . . . . . . . 16
⊢ (𝑣 ∈ (𝒫 𝑌 ∩ Fin) → 𝑣 ⊆ 𝑌) |
19 | 18 | adantl 482 |
. . . . . . . . . . . . . . 15
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) → 𝑣 ⊆ 𝑌) |
20 | 19 | sselda 3603 |
. . . . . . . . . . . . . 14
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) ∧ 𝑥 ∈ 𝑣) → 𝑥 ∈ 𝑌) |
21 | | simp-4r 807 |
. . . . . . . . . . . . . . 15
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) ∧ 𝑥 ∈ 𝑣) → 𝑌 ⊆ 𝑋) |
22 | | sseqin2 3817 |
. . . . . . . . . . . . . . 15
⊢ (𝑌 ⊆ 𝑋 ↔ (𝑋 ∩ 𝑌) = 𝑌) |
23 | 21, 22 | sylib 208 |
. . . . . . . . . . . . . 14
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) ∧ 𝑥 ∈ 𝑣) → (𝑋 ∩ 𝑌) = 𝑌) |
24 | 20, 23 | eleqtrrd 2704 |
. . . . . . . . . . . . 13
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) ∧ 𝑥 ∈ 𝑣) → 𝑥 ∈ (𝑋 ∩ 𝑌)) |
25 | | simpllr 799 |
. . . . . . . . . . . . . 14
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) ∧ 𝑥 ∈ 𝑣) → 𝑑 ∈ ℝ+) |
26 | 25 | rpxrd 11873 |
. . . . . . . . . . . . 13
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) ∧ 𝑥 ∈ 𝑣) → 𝑑 ∈ ℝ*) |
27 | 1 | blres 22236 |
. . . . . . . . . . . . 13
⊢ ((𝑀 ∈ (∞Met‘𝑋) ∧ 𝑥 ∈ (𝑋 ∩ 𝑌) ∧ 𝑑 ∈ ℝ*) → (𝑥(ball‘𝑁)𝑑) = ((𝑥(ball‘𝑀)𝑑) ∩ 𝑌)) |
28 | 16, 24, 26, 27 | syl3anc 1326 |
. . . . . . . . . . . 12
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) ∧ 𝑥 ∈ 𝑣) → (𝑥(ball‘𝑁)𝑑) = ((𝑥(ball‘𝑀)𝑑) ∩ 𝑌)) |
29 | | inss1 3833 |
. . . . . . . . . . . 12
⊢ ((𝑥(ball‘𝑀)𝑑) ∩ 𝑌) ⊆ (𝑥(ball‘𝑀)𝑑) |
30 | 28, 29 | syl6eqss 3655 |
. . . . . . . . . . 11
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) ∧ 𝑥 ∈ 𝑣) → (𝑥(ball‘𝑁)𝑑) ⊆ (𝑥(ball‘𝑀)𝑑)) |
31 | 30 | ralrimiva 2966 |
. . . . . . . . . 10
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) →
∀𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) ⊆ (𝑥(ball‘𝑀)𝑑)) |
32 | | ss2iun 4536 |
. . . . . . . . . 10
⊢
(∀𝑥 ∈
𝑣 (𝑥(ball‘𝑁)𝑑) ⊆ (𝑥(ball‘𝑀)𝑑) → ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑)) |
33 | 31, 32 | syl 17 |
. . . . . . . . 9
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ 𝑣 ∈ (𝒫 𝑌 ∩ Fin)) → ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑)) |
34 | 33 | adantrr 753 |
. . . . . . . 8
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑌 ∩ Fin) ∧ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) → ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑)) |
35 | 14, 34 | eqsstr3d 3640 |
. . . . . . 7
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑌 ∩ Fin) ∧ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) → 𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑)) |
36 | 13, 35 | jca 554 |
. . . . . 6
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑌 ∩ Fin) ∧ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌)) → (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑))) |
37 | 36 | ex 450 |
. . . . 5
⊢ (((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) → ((𝑣 ∈ (𝒫 𝑌 ∩ Fin) ∧ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌) → (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑)))) |
38 | 37 | reximdv2 3014 |
. . . 4
⊢ (((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑑 ∈ ℝ+) →
(∃𝑣 ∈ (𝒫
𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌 → ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑))) |
39 | 38 | ralimdva 2962 |
. . 3
⊢ ((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) → (∀𝑑 ∈ ℝ+ ∃𝑣 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑁)𝑑) = 𝑌 → ∀𝑑 ∈ ℝ+ ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑))) |
40 | 6, 39 | sylbid 230 |
. 2
⊢ ((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) → (𝑁 ∈ (TotBnd‘𝑌) → ∀𝑑 ∈ ℝ+ ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑))) |
41 | | simpr 477 |
. . . . . . 7
⊢ (((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) → 𝑐 ∈
ℝ+) |
42 | 41 | rphalfcld 11884 |
. . . . . 6
⊢ (((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) → (𝑐 / 2) ∈
ℝ+) |
43 | | oveq2 6658 |
. . . . . . . . . 10
⊢ (𝑑 = (𝑐 / 2) → (𝑥(ball‘𝑀)𝑑) = (𝑥(ball‘𝑀)(𝑐 / 2))) |
44 | 43 | iuneq2d 4547 |
. . . . . . . . 9
⊢ (𝑑 = (𝑐 / 2) → ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑) = ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2))) |
45 | 44 | sseq2d 3633 |
. . . . . . . 8
⊢ (𝑑 = (𝑐 / 2) → (𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑) ↔ 𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) |
46 | 45 | rexbidv 3052 |
. . . . . . 7
⊢ (𝑑 = (𝑐 / 2) → (∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑) ↔ ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) |
47 | 46 | rspcv 3305 |
. . . . . 6
⊢ ((𝑐 / 2) ∈ ℝ+
→ (∀𝑑 ∈
ℝ+ ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑) → ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) |
48 | 42, 47 | syl 17 |
. . . . 5
⊢ (((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) →
(∀𝑑 ∈
ℝ+ ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑) → ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) |
49 | | elfpw 8268 |
. . . . . . . . . . 11
⊢ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ↔ (𝑣 ⊆ 𝑋 ∧ 𝑣 ∈ Fin)) |
50 | 49 | simprbi 480 |
. . . . . . . . . 10
⊢ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) → 𝑣 ∈ Fin) |
51 | 50 | ad2antrl 764 |
. . . . . . . . 9
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) → 𝑣 ∈ Fin) |
52 | | ssrab2 3687 |
. . . . . . . . 9
⊢ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} ⊆ 𝑣 |
53 | | ssfi 8180 |
. . . . . . . . 9
⊢ ((𝑣 ∈ Fin ∧ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} ⊆ 𝑣) → {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} ∈ Fin) |
54 | 51, 52, 53 | sylancl 694 |
. . . . . . . 8
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) → {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} ∈ Fin) |
55 | | oveq1 6657 |
. . . . . . . . . . . . . . . 16
⊢ (𝑥 = 𝑦 → (𝑥(ball‘𝑀)(𝑐 / 2)) = (𝑦(ball‘𝑀)(𝑐 / 2))) |
56 | 55 | ineq1d 3813 |
. . . . . . . . . . . . . . 15
⊢ (𝑥 = 𝑦 → ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) = ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌)) |
57 | | incom 3805 |
. . . . . . . . . . . . . . 15
⊢ ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) = (𝑌 ∩ (𝑦(ball‘𝑀)(𝑐 / 2))) |
58 | 56, 57 | syl6eq 2672 |
. . . . . . . . . . . . . 14
⊢ (𝑥 = 𝑦 → ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) = (𝑌 ∩ (𝑦(ball‘𝑀)(𝑐 / 2)))) |
59 | | dfin5 3582 |
. . . . . . . . . . . . . 14
⊢ (𝑌 ∩ (𝑦(ball‘𝑀)(𝑐 / 2))) = {𝑧 ∈ 𝑌 ∣ 𝑧 ∈ (𝑦(ball‘𝑀)(𝑐 / 2))} |
60 | 58, 59 | syl6eq 2672 |
. . . . . . . . . . . . 13
⊢ (𝑥 = 𝑦 → ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) = {𝑧 ∈ 𝑌 ∣ 𝑧 ∈ (𝑦(ball‘𝑀)(𝑐 / 2))}) |
61 | 60 | neeq1d 2853 |
. . . . . . . . . . . 12
⊢ (𝑥 = 𝑦 → (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ ↔ {𝑧 ∈ 𝑌 ∣ 𝑧 ∈ (𝑦(ball‘𝑀)(𝑐 / 2))} ≠ ∅)) |
62 | | rabn0 3958 |
. . . . . . . . . . . 12
⊢ ({𝑧 ∈ 𝑌 ∣ 𝑧 ∈ (𝑦(ball‘𝑀)(𝑐 / 2))} ≠ ∅ ↔ ∃𝑧 ∈ 𝑌 𝑧 ∈ (𝑦(ball‘𝑀)(𝑐 / 2))) |
63 | 61, 62 | syl6bb 276 |
. . . . . . . . . . 11
⊢ (𝑥 = 𝑦 → (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ ↔ ∃𝑧 ∈ 𝑌 𝑧 ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) |
64 | 63 | elrab 3363 |
. . . . . . . . . 10
⊢ (𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} ↔ (𝑦 ∈ 𝑣 ∧ ∃𝑧 ∈ 𝑌 𝑧 ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) |
65 | 64 | simprbi 480 |
. . . . . . . . 9
⊢ (𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} → ∃𝑧 ∈ 𝑌 𝑧 ∈ (𝑦(ball‘𝑀)(𝑐 / 2))) |
66 | 65 | rgen 2922 |
. . . . . . . 8
⊢
∀𝑦 ∈
{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}∃𝑧 ∈ 𝑌 𝑧 ∈ (𝑦(ball‘𝑀)(𝑐 / 2)) |
67 | | eleq1 2689 |
. . . . . . . . 9
⊢ (𝑧 = (𝑓‘𝑦) → (𝑧 ∈ (𝑦(ball‘𝑀)(𝑐 / 2)) ↔ (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) |
68 | 67 | ac6sfi 8204 |
. . . . . . . 8
⊢ (({𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} ∈ Fin ∧
∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}∃𝑧 ∈ 𝑌 𝑧 ∈ (𝑦(ball‘𝑀)(𝑐 / 2))) → ∃𝑓(𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) |
69 | 54, 66, 68 | sylancl 694 |
. . . . . . 7
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) → ∃𝑓(𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) |
70 | | fdm 6051 |
. . . . . . . . . . . . . 14
⊢ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 → dom 𝑓 = {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}) |
71 | 70 | ad2antrl 764 |
. . . . . . . . . . . . 13
⊢ ((𝑣 ∈ Fin ∧ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) → dom 𝑓 = {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}) |
72 | 71, 52 | syl6eqss 3655 |
. . . . . . . . . . . 12
⊢ ((𝑣 ∈ Fin ∧ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) → dom 𝑓 ⊆ 𝑣) |
73 | | simprl 794 |
. . . . . . . . . . . . 13
⊢ ((𝑣 ∈ Fin ∧ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) → 𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌) |
74 | 71 | feq2d 6031 |
. . . . . . . . . . . . 13
⊢ ((𝑣 ∈ Fin ∧ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) → (𝑓:dom 𝑓⟶𝑌 ↔ 𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌)) |
75 | 73, 74 | mpbird 247 |
. . . . . . . . . . . 12
⊢ ((𝑣 ∈ Fin ∧ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) → 𝑓:dom 𝑓⟶𝑌) |
76 | | simprr 796 |
. . . . . . . . . . . . . 14
⊢ ((𝑣 ∈ Fin ∧ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) → ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2))) |
77 | | ffn 6045 |
. . . . . . . . . . . . . . . . . 18
⊢ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 → 𝑓 Fn {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}) |
78 | | elpreima 6337 |
. . . . . . . . . . . . . . . . . 18
⊢ (𝑓 Fn {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} → (𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) ↔ (𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} ∧ (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2))))) |
79 | 77, 78 | syl 17 |
. . . . . . . . . . . . . . . . 17
⊢ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 → (𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) ↔ (𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} ∧ (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2))))) |
80 | 79 | baibd 948 |
. . . . . . . . . . . . . . . 16
⊢ ((𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ 𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}) → (𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) ↔ (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) |
81 | 80 | ralbidva 2985 |
. . . . . . . . . . . . . . 15
⊢ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 → (∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) ↔ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) |
82 | 81 | ad2antrl 764 |
. . . . . . . . . . . . . 14
⊢ ((𝑣 ∈ Fin ∧ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) → (∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) ↔ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) |
83 | 76, 82 | mpbird 247 |
. . . . . . . . . . . . 13
⊢ ((𝑣 ∈ Fin ∧ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) → ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) |
84 | | id 22 |
. . . . . . . . . . . . . . 15
⊢ (𝑦 = 𝑥 → 𝑦 = 𝑥) |
85 | | oveq1 6657 |
. . . . . . . . . . . . . . . 16
⊢ (𝑦 = 𝑥 → (𝑦(ball‘𝑀)(𝑐 / 2)) = (𝑥(ball‘𝑀)(𝑐 / 2))) |
86 | 85 | imaeq2d 5466 |
. . . . . . . . . . . . . . 15
⊢ (𝑦 = 𝑥 → (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) = (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))) |
87 | 84, 86 | eleq12d 2695 |
. . . . . . . . . . . . . 14
⊢ (𝑦 = 𝑥 → (𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) ↔ 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2))))) |
88 | 87 | ralrab2 3372 |
. . . . . . . . . . . . 13
⊢
(∀𝑦 ∈
{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) ↔ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2))))) |
89 | 83, 88 | sylib 208 |
. . . . . . . . . . . 12
⊢ ((𝑣 ∈ Fin ∧ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) → ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2))))) |
90 | 72, 75, 89 | 3jca 1242 |
. . . . . . . . . . 11
⊢ ((𝑣 ∈ Fin ∧ (𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) → (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) |
91 | 90 | ex 450 |
. . . . . . . . . 10
⊢ (𝑣 ∈ Fin → ((𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2))) → (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2))))))) |
92 | 51, 91 | syl 17 |
. . . . . . . . 9
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) → ((𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2))) → (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2))))))) |
93 | | simpr2 1068 |
. . . . . . . . . . . . 13
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → 𝑓:dom 𝑓⟶𝑌) |
94 | | frn 6053 |
. . . . . . . . . . . . 13
⊢ (𝑓:dom 𝑓⟶𝑌 → ran 𝑓 ⊆ 𝑌) |
95 | 93, 94 | syl 17 |
. . . . . . . . . . . 12
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ran 𝑓 ⊆ 𝑌) |
96 | | ffn 6045 |
. . . . . . . . . . . . . . 15
⊢ (𝑓:dom 𝑓⟶𝑌 → 𝑓 Fn dom 𝑓) |
97 | 93, 96 | syl 17 |
. . . . . . . . . . . . . 14
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → 𝑓 Fn dom 𝑓) |
98 | 51 | adantr 481 |
. . . . . . . . . . . . . . 15
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → 𝑣 ∈ Fin) |
99 | | simpr1 1067 |
. . . . . . . . . . . . . . 15
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → dom 𝑓 ⊆ 𝑣) |
100 | | ssfi 8180 |
. . . . . . . . . . . . . . 15
⊢ ((𝑣 ∈ Fin ∧ dom 𝑓 ⊆ 𝑣) → dom 𝑓 ∈ Fin) |
101 | 98, 99, 100 | syl2anc 693 |
. . . . . . . . . . . . . 14
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → dom 𝑓 ∈ Fin) |
102 | | fnfi 8238 |
. . . . . . . . . . . . . 14
⊢ ((𝑓 Fn dom 𝑓 ∧ dom 𝑓 ∈ Fin) → 𝑓 ∈ Fin) |
103 | 97, 101, 102 | syl2anc 693 |
. . . . . . . . . . . . 13
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → 𝑓 ∈ Fin) |
104 | | rnfi 8249 |
. . . . . . . . . . . . 13
⊢ (𝑓 ∈ Fin → ran 𝑓 ∈ Fin) |
105 | 103, 104 | syl 17 |
. . . . . . . . . . . 12
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ran 𝑓 ∈ Fin) |
106 | | elfpw 8268 |
. . . . . . . . . . . 12
⊢ (ran
𝑓 ∈ (𝒫 𝑌 ∩ Fin) ↔ (ran 𝑓 ⊆ 𝑌 ∧ ran 𝑓 ∈ Fin)) |
107 | 95, 105, 106 | sylanbrc 698 |
. . . . . . . . . . 11
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ran 𝑓 ∈ (𝒫 𝑌 ∩ Fin)) |
108 | | oveq1 6657 |
. . . . . . . . . . . . 13
⊢ (𝑥 = 𝑧 → (𝑥(ball‘𝑁)𝑐) = (𝑧(ball‘𝑁)𝑐)) |
109 | 108 | cbviunv 4559 |
. . . . . . . . . . . 12
⊢ ∪ 𝑥 ∈ ran 𝑓(𝑥(ball‘𝑁)𝑐) = ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐) |
110 | 3 | ad4antr 768 |
. . . . . . . . . . . . . . . . 17
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑧 ∈ ran 𝑓) → 𝑁 ∈ (Met‘𝑌)) |
111 | | metxmet 22139 |
. . . . . . . . . . . . . . . . 17
⊢ (𝑁 ∈ (Met‘𝑌) → 𝑁 ∈ (∞Met‘𝑌)) |
112 | 110, 111 | syl 17 |
. . . . . . . . . . . . . . . 16
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑧 ∈ ran 𝑓) → 𝑁 ∈ (∞Met‘𝑌)) |
113 | 95 | sselda 3603 |
. . . . . . . . . . . . . . . 16
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑧 ∈ ran 𝑓) → 𝑧 ∈ 𝑌) |
114 | | rpxr 11840 |
. . . . . . . . . . . . . . . . 17
⊢ (𝑐 ∈ ℝ+
→ 𝑐 ∈
ℝ*) |
115 | 114 | ad4antlr 769 |
. . . . . . . . . . . . . . . 16
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑧 ∈ ran 𝑓) → 𝑐 ∈ ℝ*) |
116 | | blssm 22223 |
. . . . . . . . . . . . . . . 16
⊢ ((𝑁 ∈ (∞Met‘𝑌) ∧ 𝑧 ∈ 𝑌 ∧ 𝑐 ∈ ℝ*) → (𝑧(ball‘𝑁)𝑐) ⊆ 𝑌) |
117 | 112, 113,
115, 116 | syl3anc 1326 |
. . . . . . . . . . . . . . 15
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑧 ∈ ran 𝑓) → (𝑧(ball‘𝑁)𝑐) ⊆ 𝑌) |
118 | 117 | ralrimiva 2966 |
. . . . . . . . . . . . . 14
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ∀𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐) ⊆ 𝑌) |
119 | | iunss 4561 |
. . . . . . . . . . . . . 14
⊢ (∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐) ⊆ 𝑌 ↔ ∀𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐) ⊆ 𝑌) |
120 | 118, 119 | sylibr 224 |
. . . . . . . . . . . . 13
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐) ⊆ 𝑌) |
121 | | iunin1 4585 |
. . . . . . . . . . . . . . 15
⊢ ∪ 𝑦 ∈ 𝑣 ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) = (∪
𝑦 ∈ 𝑣 (𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) |
122 | | simplrr 801 |
. . . . . . . . . . . . . . . . 17
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → 𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2))) |
123 | 55 | cbviunv 4559 |
. . . . . . . . . . . . . . . . 17
⊢ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)) = ∪
𝑦 ∈ 𝑣 (𝑦(ball‘𝑀)(𝑐 / 2)) |
124 | 122, 123 | syl6sseq 3651 |
. . . . . . . . . . . . . . . 16
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → 𝑌 ⊆ ∪
𝑦 ∈ 𝑣 (𝑦(ball‘𝑀)(𝑐 / 2))) |
125 | | sseqin2 3817 |
. . . . . . . . . . . . . . . 16
⊢ (𝑌 ⊆ ∪ 𝑦 ∈ 𝑣 (𝑦(ball‘𝑀)(𝑐 / 2)) ↔ (∪ 𝑦 ∈ 𝑣 (𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) = 𝑌) |
126 | 124, 125 | sylib 208 |
. . . . . . . . . . . . . . 15
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → (∪ 𝑦 ∈ 𝑣 (𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) = 𝑌) |
127 | 121, 126 | syl5eq 2668 |
. . . . . . . . . . . . . 14
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ∪ 𝑦 ∈ 𝑣 ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) = 𝑌) |
128 | | 0ss 3972 |
. . . . . . . . . . . . . . . . . . 19
⊢ ∅
⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐) |
129 | | sseq1 3626 |
. . . . . . . . . . . . . . . . . . 19
⊢ (((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) = ∅ → (((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐) ↔ ∅ ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐))) |
130 | 128, 129 | mpbiri 248 |
. . . . . . . . . . . . . . . . . 18
⊢ (((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) = ∅ → ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐)) |
131 | 130 | a1i 11 |
. . . . . . . . . . . . . . . . 17
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ 𝑣) → (((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) = ∅ → ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐))) |
132 | | simpr3 1069 |
. . . . . . . . . . . . . . . . . . 19
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2))))) |
133 | 56 | neeq1d 2853 |
. . . . . . . . . . . . . . . . . . . . 21
⊢ (𝑥 = 𝑦 → (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ ↔ ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅)) |
134 | | id 22 |
. . . . . . . . . . . . . . . . . . . . . 22
⊢ (𝑥 = 𝑦 → 𝑥 = 𝑦) |
135 | 55 | imaeq2d 5466 |
. . . . . . . . . . . . . . . . . . . . . 22
⊢ (𝑥 = 𝑦 → (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2))) = (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) |
136 | 134, 135 | eleq12d 2695 |
. . . . . . . . . . . . . . . . . . . . 21
⊢ (𝑥 = 𝑦 → (𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2))) ↔ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))))) |
137 | 133, 136 | imbi12d 334 |
. . . . . . . . . . . . . . . . . . . 20
⊢ (𝑥 = 𝑦 → ((((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))) ↔ (((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))))) |
138 | 137 | rspccva 3308 |
. . . . . . . . . . . . . . . . . . 19
⊢
((∀𝑥 ∈
𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ 𝑦 ∈ 𝑣) → (((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))))) |
139 | 132, 138 | sylan 488 |
. . . . . . . . . . . . . . . . . 18
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ 𝑣) → (((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))))) |
140 | 15 | ad5antr 770 |
. . . . . . . . . . . . . . . . . . . . . . . 24
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → 𝑀 ∈ (∞Met‘𝑋)) |
141 | | cnvimass 5485 |
. . . . . . . . . . . . . . . . . . . . . . . . . 26
⊢ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) ⊆ dom 𝑓 |
142 | 49 | simplbi 476 |
. . . . . . . . . . . . . . . . . . . . . . . . . . . . 29
⊢ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) → 𝑣 ⊆ 𝑋) |
143 | 142 | ad2antrl 764 |
. . . . . . . . . . . . . . . . . . . . . . . . . . . 28
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) → 𝑣 ⊆ 𝑋) |
144 | 143 | adantr 481 |
. . . . . . . . . . . . . . . . . . . . . . . . . . 27
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → 𝑣 ⊆ 𝑋) |
145 | 99, 144 | sstrd 3613 |
. . . . . . . . . . . . . . . . . . . . . . . . . 26
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → dom 𝑓 ⊆ 𝑋) |
146 | 141, 145 | syl5ss 3614 |
. . . . . . . . . . . . . . . . . . . . . . . . 25
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) ⊆ 𝑋) |
147 | 146 | sselda 3603 |
. . . . . . . . . . . . . . . . . . . . . . . 24
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → 𝑦 ∈ 𝑋) |
148 | | simp-4r 807 |
. . . . . . . . . . . . . . . . . . . . . . . . 25
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → 𝑐 ∈ ℝ+) |
149 | 148 | rpred 11872 |
. . . . . . . . . . . . . . . . . . . . . . . 24
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → 𝑐 ∈ ℝ) |
150 | | elpreima 6337 |
. . . . . . . . . . . . . . . . . . . . . . . . . 26
⊢ (𝑓 Fn dom 𝑓 → (𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) ↔ (𝑦 ∈ dom 𝑓 ∧ (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2))))) |
151 | 150 | simplbda 654 |
. . . . . . . . . . . . . . . . . . . . . . . . 25
⊢ ((𝑓 Fn dom 𝑓 ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2))) |
152 | 97, 151 | sylan 488 |
. . . . . . . . . . . . . . . . . . . . . . . 24
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2))) |
153 | | blhalf 22210 |
. . . . . . . . . . . . . . . . . . . . . . . 24
⊢ (((𝑀 ∈ (∞Met‘𝑋) ∧ 𝑦 ∈ 𝑋) ∧ (𝑐 ∈ ℝ ∧ (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2)))) → (𝑦(ball‘𝑀)(𝑐 / 2)) ⊆ ((𝑓‘𝑦)(ball‘𝑀)𝑐)) |
154 | 140, 147,
149, 152, 153 | syl22anc 1327 |
. . . . . . . . . . . . . . . . . . . . . . 23
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → (𝑦(ball‘𝑀)(𝑐 / 2)) ⊆ ((𝑓‘𝑦)(ball‘𝑀)𝑐)) |
155 | | ssrin 3838 |
. . . . . . . . . . . . . . . . . . . . . . 23
⊢ ((𝑦(ball‘𝑀)(𝑐 / 2)) ⊆ ((𝑓‘𝑦)(ball‘𝑀)𝑐) → ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ (((𝑓‘𝑦)(ball‘𝑀)𝑐) ∩ 𝑌)) |
156 | 154, 155 | syl 17 |
. . . . . . . . . . . . . . . . . . . . . 22
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ (((𝑓‘𝑦)(ball‘𝑀)𝑐) ∩ 𝑌)) |
157 | 141 | sseli 3599 |
. . . . . . . . . . . . . . . . . . . . . . . . 25
⊢ (𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) → 𝑦 ∈ dom 𝑓) |
158 | | ffvelrn 6357 |
. . . . . . . . . . . . . . . . . . . . . . . . 25
⊢ ((𝑓:dom 𝑓⟶𝑌 ∧ 𝑦 ∈ dom 𝑓) → (𝑓‘𝑦) ∈ 𝑌) |
159 | 93, 157, 158 | syl2an 494 |
. . . . . . . . . . . . . . . . . . . . . . . 24
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → (𝑓‘𝑦) ∈ 𝑌) |
160 | | simp-5r 809 |
. . . . . . . . . . . . . . . . . . . . . . . . 25
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → 𝑌 ⊆ 𝑋) |
161 | 160, 22 | sylib 208 |
. . . . . . . . . . . . . . . . . . . . . . . 24
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → (𝑋 ∩ 𝑌) = 𝑌) |
162 | 159, 161 | eleqtrrd 2704 |
. . . . . . . . . . . . . . . . . . . . . . 23
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → (𝑓‘𝑦) ∈ (𝑋 ∩ 𝑌)) |
163 | 114 | ad4antlr 769 |
. . . . . . . . . . . . . . . . . . . . . . 23
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → 𝑐 ∈ ℝ*) |
164 | 1 | blres 22236 |
. . . . . . . . . . . . . . . . . . . . . . 23
⊢ ((𝑀 ∈ (∞Met‘𝑋) ∧ (𝑓‘𝑦) ∈ (𝑋 ∩ 𝑌) ∧ 𝑐 ∈ ℝ*) → ((𝑓‘𝑦)(ball‘𝑁)𝑐) = (((𝑓‘𝑦)(ball‘𝑀)𝑐) ∩ 𝑌)) |
165 | 140, 162,
163, 164 | syl3anc 1326 |
. . . . . . . . . . . . . . . . . . . . . 22
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → ((𝑓‘𝑦)(ball‘𝑁)𝑐) = (((𝑓‘𝑦)(ball‘𝑀)𝑐) ∩ 𝑌)) |
166 | 156, 165 | sseqtr4d 3642 |
. . . . . . . . . . . . . . . . . . . . 21
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ((𝑓‘𝑦)(ball‘𝑁)𝑐)) |
167 | | fnfvelrn 6356 |
. . . . . . . . . . . . . . . . . . . . . . 23
⊢ ((𝑓 Fn dom 𝑓 ∧ 𝑦 ∈ dom 𝑓) → (𝑓‘𝑦) ∈ ran 𝑓) |
168 | 97, 157, 167 | syl2an 494 |
. . . . . . . . . . . . . . . . . . . . . 22
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → (𝑓‘𝑦) ∈ ran 𝑓) |
169 | | oveq1 6657 |
. . . . . . . . . . . . . . . . . . . . . . 23
⊢ (𝑧 = (𝑓‘𝑦) → (𝑧(ball‘𝑁)𝑐) = ((𝑓‘𝑦)(ball‘𝑁)𝑐)) |
170 | 169 | ssiun2s 4564 |
. . . . . . . . . . . . . . . . . . . . . 22
⊢ ((𝑓‘𝑦) ∈ ran 𝑓 → ((𝑓‘𝑦)(ball‘𝑁)𝑐) ⊆ ∪
𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐)) |
171 | 168, 170 | syl 17 |
. . . . . . . . . . . . . . . . . . . . 21
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → ((𝑓‘𝑦)(ball‘𝑁)𝑐) ⊆ ∪
𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐)) |
172 | 166, 171 | sstrd 3613 |
. . . . . . . . . . . . . . . . . . . 20
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐)) |
173 | 172 | adantlr 751 |
. . . . . . . . . . . . . . . . . . 19
⊢
(((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ 𝑣) ∧ 𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2)))) → ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐)) |
174 | 173 | ex 450 |
. . . . . . . . . . . . . . . . . 18
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ 𝑣) → (𝑦 ∈ (◡𝑓 “ (𝑦(ball‘𝑀)(𝑐 / 2))) → ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐))) |
175 | 139, 174 | syld 47 |
. . . . . . . . . . . . . . . . 17
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ 𝑣) → (((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐))) |
176 | 131, 175 | pm2.61dne 2880 |
. . . . . . . . . . . . . . . 16
⊢
((((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) ∧ 𝑦 ∈ 𝑣) → ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐)) |
177 | 176 | ralrimiva 2966 |
. . . . . . . . . . . . . . 15
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ∀𝑦 ∈ 𝑣 ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐)) |
178 | | iunss 4561 |
. . . . . . . . . . . . . . 15
⊢ (∪ 𝑦 ∈ 𝑣 ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐) ↔ ∀𝑦 ∈ 𝑣 ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐)) |
179 | 177, 178 | sylibr 224 |
. . . . . . . . . . . . . 14
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ∪ 𝑦 ∈ 𝑣 ((𝑦(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ⊆ ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐)) |
180 | 127, 179 | eqsstr3d 3640 |
. . . . . . . . . . . . 13
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → 𝑌 ⊆ ∪
𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐)) |
181 | 120, 180 | eqssd 3620 |
. . . . . . . . . . . 12
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ∪ 𝑧 ∈ ran 𝑓(𝑧(ball‘𝑁)𝑐) = 𝑌) |
182 | 109, 181 | syl5eq 2668 |
. . . . . . . . . . 11
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ∪ 𝑥 ∈ ran 𝑓(𝑥(ball‘𝑁)𝑐) = 𝑌) |
183 | | iuneq1 4534 |
. . . . . . . . . . . . 13
⊢ (𝑤 = ran 𝑓 → ∪
𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = ∪ 𝑥 ∈ ran 𝑓(𝑥(ball‘𝑁)𝑐)) |
184 | 183 | eqeq1d 2624 |
. . . . . . . . . . . 12
⊢ (𝑤 = ran 𝑓 → (∪
𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌 ↔ ∪
𝑥 ∈ ran 𝑓(𝑥(ball‘𝑁)𝑐) = 𝑌)) |
185 | 184 | rspcev 3309 |
. . . . . . . . . . 11
⊢ ((ran
𝑓 ∈ (𝒫 𝑌 ∩ Fin) ∧ ∪ 𝑥 ∈ ran 𝑓(𝑥(ball‘𝑁)𝑐) = 𝑌) → ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌) |
186 | 107, 182,
185 | syl2anc 693 |
. . . . . . . . . 10
⊢
(((((𝑀 ∈
(Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) ∧ (dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2)))))) → ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌) |
187 | 186 | ex 450 |
. . . . . . . . 9
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) → ((dom 𝑓 ⊆ 𝑣 ∧ 𝑓:dom 𝑓⟶𝑌 ∧ ∀𝑥 ∈ 𝑣 (((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅ → 𝑥 ∈ (◡𝑓 “ (𝑥(ball‘𝑀)(𝑐 / 2))))) → ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌)) |
188 | 92, 187 | syld 47 |
. . . . . . . 8
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) → ((𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2))) → ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌)) |
189 | 188 | exlimdv 1861 |
. . . . . . 7
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) → (∃𝑓(𝑓:{𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅}⟶𝑌 ∧ ∀𝑦 ∈ {𝑥 ∈ 𝑣 ∣ ((𝑥(ball‘𝑀)(𝑐 / 2)) ∩ 𝑌) ≠ ∅} (𝑓‘𝑦) ∈ (𝑦(ball‘𝑀)(𝑐 / 2))) → ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌)) |
190 | 69, 189 | mpd 15 |
. . . . . 6
⊢ ((((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) ∧ (𝑣 ∈ (𝒫 𝑋 ∩ Fin) ∧ 𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)))) → ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌) |
191 | 190 | rexlimdvaa 3032 |
. . . . 5
⊢ (((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) →
(∃𝑣 ∈ (𝒫
𝑋 ∩ Fin)𝑌 ⊆ ∪ 𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)(𝑐 / 2)) → ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌)) |
192 | 48, 191 | syld 47 |
. . . 4
⊢ (((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) ∧ 𝑐 ∈ ℝ+) →
(∀𝑑 ∈
ℝ+ ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑) → ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌)) |
193 | 192 | ralrimdva 2969 |
. . 3
⊢ ((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) → (∀𝑑 ∈ ℝ+ ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑) → ∀𝑐 ∈ ℝ+ ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌)) |
194 | | istotbnd3 33570 |
. . . . 5
⊢ (𝑁 ∈ (TotBnd‘𝑌) ↔ (𝑁 ∈ (Met‘𝑌) ∧ ∀𝑐 ∈ ℝ+ ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌)) |
195 | 194 | baib 944 |
. . . 4
⊢ (𝑁 ∈ (Met‘𝑌) → (𝑁 ∈ (TotBnd‘𝑌) ↔ ∀𝑐 ∈ ℝ+ ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌)) |
196 | 3, 195 | syl 17 |
. . 3
⊢ ((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) → (𝑁 ∈ (TotBnd‘𝑌) ↔ ∀𝑐 ∈ ℝ+ ∃𝑤 ∈ (𝒫 𝑌 ∩ Fin)∪ 𝑥 ∈ 𝑤 (𝑥(ball‘𝑁)𝑐) = 𝑌)) |
197 | 193, 196 | sylibrd 249 |
. 2
⊢ ((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) → (∀𝑑 ∈ ℝ+ ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑) → 𝑁 ∈ (TotBnd‘𝑌))) |
198 | 40, 197 | impbid 202 |
1
⊢ ((𝑀 ∈ (Met‘𝑋) ∧ 𝑌 ⊆ 𝑋) → (𝑁 ∈ (TotBnd‘𝑌) ↔ ∀𝑑 ∈ ℝ+ ∃𝑣 ∈ (𝒫 𝑋 ∩ Fin)𝑌 ⊆ ∪
𝑥 ∈ 𝑣 (𝑥(ball‘𝑀)𝑑))) |