| Step | Hyp | Ref
| Expression |
| 1 | | cvmliftpht.b |
. . . 4
⊢ 𝐵 = ∪
𝐶 |
| 2 | | cvmliftpht.m |
. . . 4
⊢ 𝑀 = (℩𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐺 ∧ (𝑓‘0) = 𝑃)) |
| 3 | | cvmliftpht.f |
. . . 4
⊢ (𝜑 → 𝐹 ∈ (𝐶 CovMap 𝐽)) |
| 4 | | cvmliftphtlem.g |
. . . 4
⊢ (𝜑 → 𝐺 ∈ (II Cn 𝐽)) |
| 5 | | cvmliftpht.p |
. . . 4
⊢ (𝜑 → 𝑃 ∈ 𝐵) |
| 6 | | cvmliftpht.e |
. . . 4
⊢ (𝜑 → (𝐹‘𝑃) = (𝐺‘0)) |
| 7 | 1, 2, 3, 4, 5, 6 | cvmliftiota 31283 |
. . 3
⊢ (𝜑 → (𝑀 ∈ (II Cn 𝐶) ∧ (𝐹 ∘ 𝑀) = 𝐺 ∧ (𝑀‘0) = 𝑃)) |
| 8 | 7 | simp1d 1073 |
. 2
⊢ (𝜑 → 𝑀 ∈ (II Cn 𝐶)) |
| 9 | | cvmliftpht.n |
. . . 4
⊢ 𝑁 = (℩𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐻 ∧ (𝑓‘0) = 𝑃)) |
| 10 | | cvmliftphtlem.h |
. . . 4
⊢ (𝜑 → 𝐻 ∈ (II Cn 𝐽)) |
| 11 | | cvmliftphtlem.k |
. . . . . . 7
⊢ (𝜑 → 𝐾 ∈ (𝐺(PHtpy‘𝐽)𝐻)) |
| 12 | 4, 10, 11 | phtpy01 22784 |
. . . . . 6
⊢ (𝜑 → ((𝐺‘0) = (𝐻‘0) ∧ (𝐺‘1) = (𝐻‘1))) |
| 13 | 12 | simpld 475 |
. . . . 5
⊢ (𝜑 → (𝐺‘0) = (𝐻‘0)) |
| 14 | 6, 13 | eqtrd 2656 |
. . . 4
⊢ (𝜑 → (𝐹‘𝑃) = (𝐻‘0)) |
| 15 | 1, 9, 3, 10, 5, 14 | cvmliftiota 31283 |
. . 3
⊢ (𝜑 → (𝑁 ∈ (II Cn 𝐶) ∧ (𝐹 ∘ 𝑁) = 𝐻 ∧ (𝑁‘0) = 𝑃)) |
| 16 | 15 | simp1d 1073 |
. 2
⊢ (𝜑 → 𝑁 ∈ (II Cn 𝐶)) |
| 17 | | cvmliftphtlem.a |
. 2
⊢ (𝜑 → 𝐴 ∈ ((II ×t II) Cn
𝐶)) |
| 18 | | iitop 22683 |
. . . . . . . . . . . . . . . 16
⊢ II ∈
Top |
| 19 | | iiuni 22684 |
. . . . . . . . . . . . . . . 16
⊢ (0[,]1) =
∪ II |
| 20 | 18, 18, 19, 19 | txunii 21396 |
. . . . . . . . . . . . . . 15
⊢ ((0[,]1)
× (0[,]1)) = ∪ (II ×t
II) |
| 21 | 20, 1 | cnf 21050 |
. . . . . . . . . . . . . 14
⊢ (𝐴 ∈ ((II ×t
II) Cn 𝐶) → 𝐴:((0[,]1) ×
(0[,]1))⟶𝐵) |
| 22 | 17, 21 | syl 17 |
. . . . . . . . . . . . 13
⊢ (𝜑 → 𝐴:((0[,]1) × (0[,]1))⟶𝐵) |
| 23 | | 0elunit 12290 |
. . . . . . . . . . . . . 14
⊢ 0 ∈
(0[,]1) |
| 24 | | opelxpi 5148 |
. . . . . . . . . . . . . 14
⊢ ((𝑠 ∈ (0[,]1) ∧ 0 ∈
(0[,]1)) → 〈𝑠,
0〉 ∈ ((0[,]1) × (0[,]1))) |
| 25 | 23, 24 | mpan2 707 |
. . . . . . . . . . . . 13
⊢ (𝑠 ∈ (0[,]1) →
〈𝑠, 0〉 ∈
((0[,]1) × (0[,]1))) |
| 26 | | fvco3 6275 |
. . . . . . . . . . . . 13
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧
〈𝑠, 0〉 ∈
((0[,]1) × (0[,]1))) → ((𝐹 ∘ 𝐴)‘〈𝑠, 0〉) = (𝐹‘(𝐴‘〈𝑠, 0〉))) |
| 27 | 22, 25, 26 | syl2an 494 |
. . . . . . . . . . . 12
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((𝐹 ∘ 𝐴)‘〈𝑠, 0〉) = (𝐹‘(𝐴‘〈𝑠, 0〉))) |
| 28 | | cvmliftphtlem.c |
. . . . . . . . . . . . . 14
⊢ (𝜑 → (𝐹 ∘ 𝐴) = 𝐾) |
| 29 | 28 | adantr 481 |
. . . . . . . . . . . . 13
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹 ∘ 𝐴) = 𝐾) |
| 30 | 29 | fveq1d 6193 |
. . . . . . . . . . . 12
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((𝐹 ∘ 𝐴)‘〈𝑠, 0〉) = (𝐾‘〈𝑠, 0〉)) |
| 31 | 27, 30 | eqtr3d 2658 |
. . . . . . . . . . 11
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(𝐴‘〈𝑠, 0〉)) = (𝐾‘〈𝑠, 0〉)) |
| 32 | | df-ov 6653 |
. . . . . . . . . . . 12
⊢ (𝑠𝐴0) = (𝐴‘〈𝑠, 0〉) |
| 33 | 32 | fveq2i 6194 |
. . . . . . . . . . 11
⊢ (𝐹‘(𝑠𝐴0)) = (𝐹‘(𝐴‘〈𝑠, 0〉)) |
| 34 | | df-ov 6653 |
. . . . . . . . . . 11
⊢ (𝑠𝐾0) = (𝐾‘〈𝑠, 0〉) |
| 35 | 31, 33, 34 | 3eqtr4g 2681 |
. . . . . . . . . 10
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(𝑠𝐴0)) = (𝑠𝐾0)) |
| 36 | | iitopon 22682 |
. . . . . . . . . . . . 13
⊢ II ∈
(TopOn‘(0[,]1)) |
| 37 | 36 | a1i 11 |
. . . . . . . . . . . 12
⊢ (𝜑 → II ∈
(TopOn‘(0[,]1))) |
| 38 | 4, 10 | phtpyhtpy 22781 |
. . . . . . . . . . . . 13
⊢ (𝜑 → (𝐺(PHtpy‘𝐽)𝐻) ⊆ (𝐺(II Htpy 𝐽)𝐻)) |
| 39 | 38, 11 | sseldd 3604 |
. . . . . . . . . . . 12
⊢ (𝜑 → 𝐾 ∈ (𝐺(II Htpy 𝐽)𝐻)) |
| 40 | 37, 4, 10, 39 | htpyi 22773 |
. . . . . . . . . . 11
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((𝑠𝐾0) = (𝐺‘𝑠) ∧ (𝑠𝐾1) = (𝐻‘𝑠))) |
| 41 | 40 | simpld 475 |
. . . . . . . . . 10
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝑠𝐾0) = (𝐺‘𝑠)) |
| 42 | 35, 41 | eqtrd 2656 |
. . . . . . . . 9
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(𝑠𝐴0)) = (𝐺‘𝑠)) |
| 43 | 42 | mpteq2dva 4744 |
. . . . . . . 8
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝐹‘(𝑠𝐴0))) = (𝑠 ∈ (0[,]1) ↦ (𝐺‘𝑠))) |
| 44 | | fovrn 6804 |
. . . . . . . . . . 11
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧
𝑠 ∈ (0[,]1) ∧ 0
∈ (0[,]1)) → (𝑠𝐴0) ∈ 𝐵) |
| 45 | 23, 44 | mp3an3 1413 |
. . . . . . . . . 10
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧
𝑠 ∈ (0[,]1)) →
(𝑠𝐴0) ∈ 𝐵) |
| 46 | 22, 45 | sylan 488 |
. . . . . . . . 9
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝑠𝐴0) ∈ 𝐵) |
| 47 | | eqidd 2623 |
. . . . . . . . 9
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0))) |
| 48 | | cvmcn 31244 |
. . . . . . . . . . . 12
⊢ (𝐹 ∈ (𝐶 CovMap 𝐽) → 𝐹 ∈ (𝐶 Cn 𝐽)) |
| 49 | 3, 48 | syl 17 |
. . . . . . . . . . 11
⊢ (𝜑 → 𝐹 ∈ (𝐶 Cn 𝐽)) |
| 50 | | eqid 2622 |
. . . . . . . . . . . 12
⊢ ∪ 𝐽 =
∪ 𝐽 |
| 51 | 1, 50 | cnf 21050 |
. . . . . . . . . . 11
⊢ (𝐹 ∈ (𝐶 Cn 𝐽) → 𝐹:𝐵⟶∪ 𝐽) |
| 52 | 49, 51 | syl 17 |
. . . . . . . . . 10
⊢ (𝜑 → 𝐹:𝐵⟶∪ 𝐽) |
| 53 | 52 | feqmptd 6249 |
. . . . . . . . 9
⊢ (𝜑 → 𝐹 = (𝑥 ∈ 𝐵 ↦ (𝐹‘𝑥))) |
| 54 | | fveq2 6191 |
. . . . . . . . 9
⊢ (𝑥 = (𝑠𝐴0) → (𝐹‘𝑥) = (𝐹‘(𝑠𝐴0))) |
| 55 | 46, 47, 53, 54 | fmptco 6396 |
. . . . . . . 8
⊢ (𝜑 → (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0))) = (𝑠 ∈ (0[,]1) ↦ (𝐹‘(𝑠𝐴0)))) |
| 56 | 19, 50 | cnf 21050 |
. . . . . . . . . 10
⊢ (𝐺 ∈ (II Cn 𝐽) → 𝐺:(0[,]1)⟶∪
𝐽) |
| 57 | 4, 56 | syl 17 |
. . . . . . . . 9
⊢ (𝜑 → 𝐺:(0[,]1)⟶∪
𝐽) |
| 58 | 57 | feqmptd 6249 |
. . . . . . . 8
⊢ (𝜑 → 𝐺 = (𝑠 ∈ (0[,]1) ↦ (𝐺‘𝑠))) |
| 59 | 43, 55, 58 | 3eqtr4d 2666 |
. . . . . . 7
⊢ (𝜑 → (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0))) = 𝐺) |
| 60 | | cvmliftphtlem.0 |
. . . . . . 7
⊢ (𝜑 → (0𝐴0) = 𝑃) |
| 61 | 37 | cnmptid 21464 |
. . . . . . . . 9
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ 𝑠) ∈ (II Cn II)) |
| 62 | 23 | a1i 11 |
. . . . . . . . . 10
⊢ (𝜑 → 0 ∈
(0[,]1)) |
| 63 | 37, 37, 62 | cnmptc 21465 |
. . . . . . . . 9
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ 0) ∈ (II Cn
II)) |
| 64 | 37, 61, 63, 17 | cnmpt12f 21469 |
. . . . . . . 8
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) ∈ (II Cn 𝐶)) |
| 65 | 1 | cvmlift 31281 |
. . . . . . . . 9
⊢ (((𝐹 ∈ (𝐶 CovMap 𝐽) ∧ 𝐺 ∈ (II Cn 𝐽)) ∧ (𝑃 ∈ 𝐵 ∧ (𝐹‘𝑃) = (𝐺‘0))) → ∃!𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐺 ∧ (𝑓‘0) = 𝑃)) |
| 66 | 3, 4, 5, 6, 65 | syl22anc 1327 |
. . . . . . . 8
⊢ (𝜑 → ∃!𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐺 ∧ (𝑓‘0) = 𝑃)) |
| 67 | | coeq2 5280 |
. . . . . . . . . . 11
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) → (𝐹 ∘ 𝑓) = (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)))) |
| 68 | 67 | eqeq1d 2624 |
. . . . . . . . . 10
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) → ((𝐹 ∘ 𝑓) = 𝐺 ↔ (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0))) = 𝐺)) |
| 69 | | fveq1 6190 |
. . . . . . . . . . . 12
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) → (𝑓‘0) = ((𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0))‘0)) |
| 70 | | oveq1 6657 |
. . . . . . . . . . . . . 14
⊢ (𝑠 = 0 → (𝑠𝐴0) = (0𝐴0)) |
| 71 | | eqid 2622 |
. . . . . . . . . . . . . 14
⊢ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) |
| 72 | | ovex 6678 |
. . . . . . . . . . . . . 14
⊢ (0𝐴0) ∈ V |
| 73 | 70, 71, 72 | fvmpt 6282 |
. . . . . . . . . . . . 13
⊢ (0 ∈
(0[,]1) → ((𝑠 ∈
(0[,]1) ↦ (𝑠𝐴0))‘0) = (0𝐴0)) |
| 74 | 23, 73 | ax-mp 5 |
. . . . . . . . . . . 12
⊢ ((𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0))‘0) = (0𝐴0) |
| 75 | 69, 74 | syl6eq 2672 |
. . . . . . . . . . 11
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) → (𝑓‘0) = (0𝐴0)) |
| 76 | 75 | eqeq1d 2624 |
. . . . . . . . . 10
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) → ((𝑓‘0) = 𝑃 ↔ (0𝐴0) = 𝑃)) |
| 77 | 68, 76 | anbi12d 747 |
. . . . . . . . 9
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) → (((𝐹 ∘ 𝑓) = 𝐺 ∧ (𝑓‘0) = 𝑃) ↔ ((𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0))) = 𝐺 ∧ (0𝐴0) = 𝑃))) |
| 78 | 77 | riota2 6633 |
. . . . . . . 8
⊢ (((𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) ∈ (II Cn 𝐶) ∧ ∃!𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐺 ∧ (𝑓‘0) = 𝑃)) → (((𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0))) = 𝐺 ∧ (0𝐴0) = 𝑃) ↔ (℩𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐺 ∧ (𝑓‘0) = 𝑃)) = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)))) |
| 79 | 64, 66, 78 | syl2anc 693 |
. . . . . . 7
⊢ (𝜑 → (((𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0))) = 𝐺 ∧ (0𝐴0) = 𝑃) ↔ (℩𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐺 ∧ (𝑓‘0) = 𝑃)) = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)))) |
| 80 | 59, 60, 79 | mpbi2and 956 |
. . . . . 6
⊢ (𝜑 → (℩𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐺 ∧ (𝑓‘0) = 𝑃)) = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0))) |
| 81 | 2, 80 | syl5eq 2668 |
. . . . 5
⊢ (𝜑 → 𝑀 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0))) |
| 82 | 19, 1 | cnf 21050 |
. . . . . . 7
⊢ (𝑀 ∈ (II Cn 𝐶) → 𝑀:(0[,]1)⟶𝐵) |
| 83 | 8, 82 | syl 17 |
. . . . . 6
⊢ (𝜑 → 𝑀:(0[,]1)⟶𝐵) |
| 84 | 83 | feqmptd 6249 |
. . . . 5
⊢ (𝜑 → 𝑀 = (𝑠 ∈ (0[,]1) ↦ (𝑀‘𝑠))) |
| 85 | 81, 84 | eqtr3d 2658 |
. . . 4
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) = (𝑠 ∈ (0[,]1) ↦ (𝑀‘𝑠))) |
| 86 | | mpteqb 6299 |
. . . . 5
⊢
(∀𝑠 ∈
(0[,]1)(𝑠𝐴0) ∈ V → ((𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) = (𝑠 ∈ (0[,]1) ↦ (𝑀‘𝑠)) ↔ ∀𝑠 ∈ (0[,]1)(𝑠𝐴0) = (𝑀‘𝑠))) |
| 87 | | ovexd 6680 |
. . . . 5
⊢ (𝑠 ∈ (0[,]1) → (𝑠𝐴0) ∈ V) |
| 88 | 86, 87 | mprg 2926 |
. . . 4
⊢ ((𝑠 ∈ (0[,]1) ↦ (𝑠𝐴0)) = (𝑠 ∈ (0[,]1) ↦ (𝑀‘𝑠)) ↔ ∀𝑠 ∈ (0[,]1)(𝑠𝐴0) = (𝑀‘𝑠)) |
| 89 | 85, 88 | sylib 208 |
. . 3
⊢ (𝜑 → ∀𝑠 ∈ (0[,]1)(𝑠𝐴0) = (𝑀‘𝑠)) |
| 90 | 89 | r19.21bi 2932 |
. 2
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝑠𝐴0) = (𝑀‘𝑠)) |
| 91 | | 1elunit 12291 |
. . . . . . . . . . . . . 14
⊢ 1 ∈
(0[,]1) |
| 92 | | opelxpi 5148 |
. . . . . . . . . . . . . 14
⊢ ((𝑠 ∈ (0[,]1) ∧ 1 ∈
(0[,]1)) → 〈𝑠,
1〉 ∈ ((0[,]1) × (0[,]1))) |
| 93 | 91, 92 | mpan2 707 |
. . . . . . . . . . . . 13
⊢ (𝑠 ∈ (0[,]1) →
〈𝑠, 1〉 ∈
((0[,]1) × (0[,]1))) |
| 94 | | fvco3 6275 |
. . . . . . . . . . . . 13
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧
〈𝑠, 1〉 ∈
((0[,]1) × (0[,]1))) → ((𝐹 ∘ 𝐴)‘〈𝑠, 1〉) = (𝐹‘(𝐴‘〈𝑠, 1〉))) |
| 95 | 22, 93, 94 | syl2an 494 |
. . . . . . . . . . . 12
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((𝐹 ∘ 𝐴)‘〈𝑠, 1〉) = (𝐹‘(𝐴‘〈𝑠, 1〉))) |
| 96 | 29 | fveq1d 6193 |
. . . . . . . . . . . 12
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((𝐹 ∘ 𝐴)‘〈𝑠, 1〉) = (𝐾‘〈𝑠, 1〉)) |
| 97 | 95, 96 | eqtr3d 2658 |
. . . . . . . . . . 11
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(𝐴‘〈𝑠, 1〉)) = (𝐾‘〈𝑠, 1〉)) |
| 98 | | df-ov 6653 |
. . . . . . . . . . . 12
⊢ (𝑠𝐴1) = (𝐴‘〈𝑠, 1〉) |
| 99 | 98 | fveq2i 6194 |
. . . . . . . . . . 11
⊢ (𝐹‘(𝑠𝐴1)) = (𝐹‘(𝐴‘〈𝑠, 1〉)) |
| 100 | | df-ov 6653 |
. . . . . . . . . . 11
⊢ (𝑠𝐾1) = (𝐾‘〈𝑠, 1〉) |
| 101 | 97, 99, 100 | 3eqtr4g 2681 |
. . . . . . . . . 10
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(𝑠𝐴1)) = (𝑠𝐾1)) |
| 102 | 40 | simprd 479 |
. . . . . . . . . 10
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝑠𝐾1) = (𝐻‘𝑠)) |
| 103 | 101, 102 | eqtrd 2656 |
. . . . . . . . 9
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(𝑠𝐴1)) = (𝐻‘𝑠)) |
| 104 | 103 | mpteq2dva 4744 |
. . . . . . . 8
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝐹‘(𝑠𝐴1))) = (𝑠 ∈ (0[,]1) ↦ (𝐻‘𝑠))) |
| 105 | | fovrn 6804 |
. . . . . . . . . . 11
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧
𝑠 ∈ (0[,]1) ∧ 1
∈ (0[,]1)) → (𝑠𝐴1) ∈ 𝐵) |
| 106 | 91, 105 | mp3an3 1413 |
. . . . . . . . . 10
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧
𝑠 ∈ (0[,]1)) →
(𝑠𝐴1) ∈ 𝐵) |
| 107 | 22, 106 | sylan 488 |
. . . . . . . . 9
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝑠𝐴1) ∈ 𝐵) |
| 108 | | eqidd 2623 |
. . . . . . . . 9
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1))) |
| 109 | | fveq2 6191 |
. . . . . . . . 9
⊢ (𝑥 = (𝑠𝐴1) → (𝐹‘𝑥) = (𝐹‘(𝑠𝐴1))) |
| 110 | 107, 108,
53, 109 | fmptco 6396 |
. . . . . . . 8
⊢ (𝜑 → (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1))) = (𝑠 ∈ (0[,]1) ↦ (𝐹‘(𝑠𝐴1)))) |
| 111 | 19, 50 | cnf 21050 |
. . . . . . . . . 10
⊢ (𝐻 ∈ (II Cn 𝐽) → 𝐻:(0[,]1)⟶∪
𝐽) |
| 112 | 10, 111 | syl 17 |
. . . . . . . . 9
⊢ (𝜑 → 𝐻:(0[,]1)⟶∪
𝐽) |
| 113 | 112 | feqmptd 6249 |
. . . . . . . 8
⊢ (𝜑 → 𝐻 = (𝑠 ∈ (0[,]1) ↦ (𝐻‘𝑠))) |
| 114 | 104, 110,
113 | 3eqtr4d 2666 |
. . . . . . 7
⊢ (𝜑 → (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1))) = 𝐻) |
| 115 | | iiconn 22690 |
. . . . . . . . . . . . 13
⊢ II ∈
Conn |
| 116 | 115 | a1i 11 |
. . . . . . . . . . . 12
⊢ (𝜑 → II ∈
Conn) |
| 117 | | iinllyconn 31236 |
. . . . . . . . . . . . 13
⊢ II ∈
𝑛-Locally Conn |
| 118 | 117 | a1i 11 |
. . . . . . . . . . . 12
⊢ (𝜑 → II ∈
𝑛-Locally Conn) |
| 119 | 37, 63, 61, 17 | cnmpt12f 21469 |
. . . . . . . . . . . 12
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠)) ∈ (II Cn 𝐶)) |
| 120 | | cvmtop1 31242 |
. . . . . . . . . . . . . . 15
⊢ (𝐹 ∈ (𝐶 CovMap 𝐽) → 𝐶 ∈ Top) |
| 121 | 3, 120 | syl 17 |
. . . . . . . . . . . . . 14
⊢ (𝜑 → 𝐶 ∈ Top) |
| 122 | 1 | toptopon 20722 |
. . . . . . . . . . . . . 14
⊢ (𝐶 ∈ Top ↔ 𝐶 ∈ (TopOn‘𝐵)) |
| 123 | 121, 122 | sylib 208 |
. . . . . . . . . . . . 13
⊢ (𝜑 → 𝐶 ∈ (TopOn‘𝐵)) |
| 124 | | ffvelrn 6357 |
. . . . . . . . . . . . . 14
⊢ ((𝑀:(0[,]1)⟶𝐵 ∧ 0 ∈ (0[,]1)) →
(𝑀‘0) ∈ 𝐵) |
| 125 | 83, 23, 124 | sylancl 694 |
. . . . . . . . . . . . 13
⊢ (𝜑 → (𝑀‘0) ∈ 𝐵) |
| 126 | | cnconst2 21087 |
. . . . . . . . . . . . 13
⊢ ((II
∈ (TopOn‘(0[,]1)) ∧ 𝐶 ∈ (TopOn‘𝐵) ∧ (𝑀‘0) ∈ 𝐵) → ((0[,]1) × {(𝑀‘0)}) ∈ (II Cn 𝐶)) |
| 127 | 37, 123, 125, 126 | syl3anc 1326 |
. . . . . . . . . . . 12
⊢ (𝜑 → ((0[,]1) × {(𝑀‘0)}) ∈ (II Cn 𝐶)) |
| 128 | 4, 10, 11 | phtpyi 22783 |
. . . . . . . . . . . . . . . . 17
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((0𝐾𝑠) = (𝐺‘0) ∧ (1𝐾𝑠) = (𝐺‘1))) |
| 129 | 128 | simpld 475 |
. . . . . . . . . . . . . . . 16
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (0𝐾𝑠) = (𝐺‘0)) |
| 130 | | opelxpi 5148 |
. . . . . . . . . . . . . . . . . . . 20
⊢ ((0
∈ (0[,]1) ∧ 𝑠
∈ (0[,]1)) → 〈0, 𝑠〉 ∈ ((0[,]1) ×
(0[,]1))) |
| 131 | 23, 130 | mpan 706 |
. . . . . . . . . . . . . . . . . . 19
⊢ (𝑠 ∈ (0[,]1) → 〈0,
𝑠〉 ∈ ((0[,]1)
× (0[,]1))) |
| 132 | | fvco3 6275 |
. . . . . . . . . . . . . . . . . . 19
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧
〈0, 𝑠〉 ∈
((0[,]1) × (0[,]1))) → ((𝐹 ∘ 𝐴)‘〈0, 𝑠〉) = (𝐹‘(𝐴‘〈0, 𝑠〉))) |
| 133 | 22, 131, 132 | syl2an 494 |
. . . . . . . . . . . . . . . . . 18
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((𝐹 ∘ 𝐴)‘〈0, 𝑠〉) = (𝐹‘(𝐴‘〈0, 𝑠〉))) |
| 134 | 29 | fveq1d 6193 |
. . . . . . . . . . . . . . . . . 18
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((𝐹 ∘ 𝐴)‘〈0, 𝑠〉) = (𝐾‘〈0, 𝑠〉)) |
| 135 | 133, 134 | eqtr3d 2658 |
. . . . . . . . . . . . . . . . 17
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(𝐴‘〈0, 𝑠〉)) = (𝐾‘〈0, 𝑠〉)) |
| 136 | | df-ov 6653 |
. . . . . . . . . . . . . . . . . 18
⊢ (0𝐴𝑠) = (𝐴‘〈0, 𝑠〉) |
| 137 | 136 | fveq2i 6194 |
. . . . . . . . . . . . . . . . 17
⊢ (𝐹‘(0𝐴𝑠)) = (𝐹‘(𝐴‘〈0, 𝑠〉)) |
| 138 | | df-ov 6653 |
. . . . . . . . . . . . . . . . 17
⊢ (0𝐾𝑠) = (𝐾‘〈0, 𝑠〉) |
| 139 | 135, 137,
138 | 3eqtr4g 2681 |
. . . . . . . . . . . . . . . 16
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(0𝐴𝑠)) = (0𝐾𝑠)) |
| 140 | 7 | simp3d 1075 |
. . . . . . . . . . . . . . . . . . 19
⊢ (𝜑 → (𝑀‘0) = 𝑃) |
| 141 | 140 | adantr 481 |
. . . . . . . . . . . . . . . . . 18
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝑀‘0) = 𝑃) |
| 142 | 141 | fveq2d 6195 |
. . . . . . . . . . . . . . . . 17
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(𝑀‘0)) = (𝐹‘𝑃)) |
| 143 | 6 | adantr 481 |
. . . . . . . . . . . . . . . . 17
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘𝑃) = (𝐺‘0)) |
| 144 | 142, 143 | eqtrd 2656 |
. . . . . . . . . . . . . . . 16
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(𝑀‘0)) = (𝐺‘0)) |
| 145 | 129, 139,
144 | 3eqtr4d 2666 |
. . . . . . . . . . . . . . 15
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(0𝐴𝑠)) = (𝐹‘(𝑀‘0))) |
| 146 | 145 | mpteq2dva 4744 |
. . . . . . . . . . . . . 14
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝐹‘(0𝐴𝑠))) = (𝑠 ∈ (0[,]1) ↦ (𝐹‘(𝑀‘0)))) |
| 147 | | fconstmpt 5163 |
. . . . . . . . . . . . . 14
⊢ ((0[,]1)
× {(𝐹‘(𝑀‘0))}) = (𝑠 ∈ (0[,]1) ↦ (𝐹‘(𝑀‘0))) |
| 148 | 146, 147 | syl6eqr 2674 |
. . . . . . . . . . . . 13
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝐹‘(0𝐴𝑠))) = ((0[,]1) × {(𝐹‘(𝑀‘0))})) |
| 149 | | fovrn 6804 |
. . . . . . . . . . . . . . . 16
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧ 0
∈ (0[,]1) ∧ 𝑠
∈ (0[,]1)) → (0𝐴𝑠) ∈ 𝐵) |
| 150 | 23, 149 | mp3an2 1412 |
. . . . . . . . . . . . . . 15
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧
𝑠 ∈ (0[,]1)) →
(0𝐴𝑠) ∈ 𝐵) |
| 151 | 22, 150 | sylan 488 |
. . . . . . . . . . . . . 14
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (0𝐴𝑠) ∈ 𝐵) |
| 152 | | eqidd 2623 |
. . . . . . . . . . . . . 14
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠)) = (𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠))) |
| 153 | | fveq2 6191 |
. . . . . . . . . . . . . 14
⊢ (𝑥 = (0𝐴𝑠) → (𝐹‘𝑥) = (𝐹‘(0𝐴𝑠))) |
| 154 | 151, 152,
53, 153 | fmptco 6396 |
. . . . . . . . . . . . 13
⊢ (𝜑 → (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠))) = (𝑠 ∈ (0[,]1) ↦ (𝐹‘(0𝐴𝑠)))) |
| 155 | | ffn 6045 |
. . . . . . . . . . . . . . 15
⊢ (𝐹:𝐵⟶∪ 𝐽 → 𝐹 Fn 𝐵) |
| 156 | 52, 155 | syl 17 |
. . . . . . . . . . . . . 14
⊢ (𝜑 → 𝐹 Fn 𝐵) |
| 157 | | fcoconst 6401 |
. . . . . . . . . . . . . 14
⊢ ((𝐹 Fn 𝐵 ∧ (𝑀‘0) ∈ 𝐵) → (𝐹 ∘ ((0[,]1) × {(𝑀‘0)})) = ((0[,]1) ×
{(𝐹‘(𝑀‘0))})) |
| 158 | 156, 125,
157 | syl2anc 693 |
. . . . . . . . . . . . 13
⊢ (𝜑 → (𝐹 ∘ ((0[,]1) × {(𝑀‘0)})) = ((0[,]1) ×
{(𝐹‘(𝑀‘0))})) |
| 159 | 148, 154,
158 | 3eqtr4d 2666 |
. . . . . . . . . . . 12
⊢ (𝜑 → (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠))) = (𝐹 ∘ ((0[,]1) × {(𝑀‘0)}))) |
| 160 | 60, 140 | eqtr4d 2659 |
. . . . . . . . . . . . 13
⊢ (𝜑 → (0𝐴0) = (𝑀‘0)) |
| 161 | | oveq2 6658 |
. . . . . . . . . . . . . . 15
⊢ (𝑠 = 0 → (0𝐴𝑠) = (0𝐴0)) |
| 162 | | eqid 2622 |
. . . . . . . . . . . . . . 15
⊢ (𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠)) = (𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠)) |
| 163 | 161, 162,
72 | fvmpt 6282 |
. . . . . . . . . . . . . 14
⊢ (0 ∈
(0[,]1) → ((𝑠 ∈
(0[,]1) ↦ (0𝐴𝑠))‘0) = (0𝐴0)) |
| 164 | 23, 163 | ax-mp 5 |
. . . . . . . . . . . . 13
⊢ ((𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠))‘0) = (0𝐴0) |
| 165 | | fvex 6201 |
. . . . . . . . . . . . . . 15
⊢ (𝑀‘0) ∈
V |
| 166 | 165 | fvconst2 6469 |
. . . . . . . . . . . . . 14
⊢ (0 ∈
(0[,]1) → (((0[,]1) × {(𝑀‘0)})‘0) = (𝑀‘0)) |
| 167 | 23, 166 | ax-mp 5 |
. . . . . . . . . . . . 13
⊢ (((0[,]1)
× {(𝑀‘0)})‘0) = (𝑀‘0) |
| 168 | 160, 164,
167 | 3eqtr4g 2681 |
. . . . . . . . . . . 12
⊢ (𝜑 → ((𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠))‘0) = (((0[,]1) × {(𝑀‘0)})‘0)) |
| 169 | 1, 19, 3, 116, 118, 62, 119, 127, 159, 168 | cvmliftmoi 31265 |
. . . . . . . . . . 11
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠)) = ((0[,]1) × {(𝑀‘0)})) |
| 170 | | fconstmpt 5163 |
. . . . . . . . . . 11
⊢ ((0[,]1)
× {(𝑀‘0)}) =
(𝑠 ∈ (0[,]1) ↦
(𝑀‘0)) |
| 171 | 169, 170 | syl6eq 2672 |
. . . . . . . . . 10
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠)) = (𝑠 ∈ (0[,]1) ↦ (𝑀‘0))) |
| 172 | | mpteqb 6299 |
. . . . . . . . . . 11
⊢
(∀𝑠 ∈
(0[,]1)(0𝐴𝑠) ∈ V → ((𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠)) = (𝑠 ∈ (0[,]1) ↦ (𝑀‘0)) ↔ ∀𝑠 ∈ (0[,]1)(0𝐴𝑠) = (𝑀‘0))) |
| 173 | | ovexd 6680 |
. . . . . . . . . . 11
⊢ (𝑠 ∈ (0[,]1) → (0𝐴𝑠) ∈ V) |
| 174 | 172, 173 | mprg 2926 |
. . . . . . . . . 10
⊢ ((𝑠 ∈ (0[,]1) ↦ (0𝐴𝑠)) = (𝑠 ∈ (0[,]1) ↦ (𝑀‘0)) ↔ ∀𝑠 ∈ (0[,]1)(0𝐴𝑠) = (𝑀‘0)) |
| 175 | 171, 174 | sylib 208 |
. . . . . . . . 9
⊢ (𝜑 → ∀𝑠 ∈ (0[,]1)(0𝐴𝑠) = (𝑀‘0)) |
| 176 | | oveq2 6658 |
. . . . . . . . . . 11
⊢ (𝑠 = 1 → (0𝐴𝑠) = (0𝐴1)) |
| 177 | 176 | eqeq1d 2624 |
. . . . . . . . . 10
⊢ (𝑠 = 1 → ((0𝐴𝑠) = (𝑀‘0) ↔ (0𝐴1) = (𝑀‘0))) |
| 178 | 177 | rspcv 3305 |
. . . . . . . . 9
⊢ (1 ∈
(0[,]1) → (∀𝑠
∈ (0[,]1)(0𝐴𝑠) = (𝑀‘0) → (0𝐴1) = (𝑀‘0))) |
| 179 | 91, 175, 178 | mpsyl 68 |
. . . . . . . 8
⊢ (𝜑 → (0𝐴1) = (𝑀‘0)) |
| 180 | 179, 140 | eqtrd 2656 |
. . . . . . 7
⊢ (𝜑 → (0𝐴1) = 𝑃) |
| 181 | 91 | a1i 11 |
. . . . . . . . . 10
⊢ (𝜑 → 1 ∈
(0[,]1)) |
| 182 | 37, 37, 181 | cnmptc 21465 |
. . . . . . . . 9
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ 1) ∈ (II Cn
II)) |
| 183 | 37, 61, 182, 17 | cnmpt12f 21469 |
. . . . . . . 8
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) ∈ (II Cn 𝐶)) |
| 184 | 1 | cvmlift 31281 |
. . . . . . . . 9
⊢ (((𝐹 ∈ (𝐶 CovMap 𝐽) ∧ 𝐻 ∈ (II Cn 𝐽)) ∧ (𝑃 ∈ 𝐵 ∧ (𝐹‘𝑃) = (𝐻‘0))) → ∃!𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐻 ∧ (𝑓‘0) = 𝑃)) |
| 185 | 3, 10, 5, 14, 184 | syl22anc 1327 |
. . . . . . . 8
⊢ (𝜑 → ∃!𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐻 ∧ (𝑓‘0) = 𝑃)) |
| 186 | | coeq2 5280 |
. . . . . . . . . . 11
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) → (𝐹 ∘ 𝑓) = (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)))) |
| 187 | 186 | eqeq1d 2624 |
. . . . . . . . . 10
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) → ((𝐹 ∘ 𝑓) = 𝐻 ↔ (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1))) = 𝐻)) |
| 188 | | fveq1 6190 |
. . . . . . . . . . . 12
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) → (𝑓‘0) = ((𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1))‘0)) |
| 189 | | oveq1 6657 |
. . . . . . . . . . . . . 14
⊢ (𝑠 = 0 → (𝑠𝐴1) = (0𝐴1)) |
| 190 | | eqid 2622 |
. . . . . . . . . . . . . 14
⊢ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) |
| 191 | | ovex 6678 |
. . . . . . . . . . . . . 14
⊢ (0𝐴1) ∈ V |
| 192 | 189, 190,
191 | fvmpt 6282 |
. . . . . . . . . . . . 13
⊢ (0 ∈
(0[,]1) → ((𝑠 ∈
(0[,]1) ↦ (𝑠𝐴1))‘0) = (0𝐴1)) |
| 193 | 23, 192 | ax-mp 5 |
. . . . . . . . . . . 12
⊢ ((𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1))‘0) = (0𝐴1) |
| 194 | 188, 193 | syl6eq 2672 |
. . . . . . . . . . 11
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) → (𝑓‘0) = (0𝐴1)) |
| 195 | 194 | eqeq1d 2624 |
. . . . . . . . . 10
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) → ((𝑓‘0) = 𝑃 ↔ (0𝐴1) = 𝑃)) |
| 196 | 187, 195 | anbi12d 747 |
. . . . . . . . 9
⊢ (𝑓 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) → (((𝐹 ∘ 𝑓) = 𝐻 ∧ (𝑓‘0) = 𝑃) ↔ ((𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1))) = 𝐻 ∧ (0𝐴1) = 𝑃))) |
| 197 | 196 | riota2 6633 |
. . . . . . . 8
⊢ (((𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) ∈ (II Cn 𝐶) ∧ ∃!𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐻 ∧ (𝑓‘0) = 𝑃)) → (((𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1))) = 𝐻 ∧ (0𝐴1) = 𝑃) ↔ (℩𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐻 ∧ (𝑓‘0) = 𝑃)) = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)))) |
| 198 | 183, 185,
197 | syl2anc 693 |
. . . . . . 7
⊢ (𝜑 → (((𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1))) = 𝐻 ∧ (0𝐴1) = 𝑃) ↔ (℩𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐻 ∧ (𝑓‘0) = 𝑃)) = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)))) |
| 199 | 114, 180,
198 | mpbi2and 956 |
. . . . . 6
⊢ (𝜑 → (℩𝑓 ∈ (II Cn 𝐶)((𝐹 ∘ 𝑓) = 𝐻 ∧ (𝑓‘0) = 𝑃)) = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1))) |
| 200 | 9, 199 | syl5eq 2668 |
. . . . 5
⊢ (𝜑 → 𝑁 = (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1))) |
| 201 | 19, 1 | cnf 21050 |
. . . . . . 7
⊢ (𝑁 ∈ (II Cn 𝐶) → 𝑁:(0[,]1)⟶𝐵) |
| 202 | 16, 201 | syl 17 |
. . . . . 6
⊢ (𝜑 → 𝑁:(0[,]1)⟶𝐵) |
| 203 | 202 | feqmptd 6249 |
. . . . 5
⊢ (𝜑 → 𝑁 = (𝑠 ∈ (0[,]1) ↦ (𝑁‘𝑠))) |
| 204 | 200, 203 | eqtr3d 2658 |
. . . 4
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) = (𝑠 ∈ (0[,]1) ↦ (𝑁‘𝑠))) |
| 205 | | mpteqb 6299 |
. . . . 5
⊢
(∀𝑠 ∈
(0[,]1)(𝑠𝐴1) ∈ V → ((𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) = (𝑠 ∈ (0[,]1) ↦ (𝑁‘𝑠)) ↔ ∀𝑠 ∈ (0[,]1)(𝑠𝐴1) = (𝑁‘𝑠))) |
| 206 | | ovexd 6680 |
. . . . 5
⊢ (𝑠 ∈ (0[,]1) → (𝑠𝐴1) ∈ V) |
| 207 | 205, 206 | mprg 2926 |
. . . 4
⊢ ((𝑠 ∈ (0[,]1) ↦ (𝑠𝐴1)) = (𝑠 ∈ (0[,]1) ↦ (𝑁‘𝑠)) ↔ ∀𝑠 ∈ (0[,]1)(𝑠𝐴1) = (𝑁‘𝑠)) |
| 208 | 204, 207 | sylib 208 |
. . 3
⊢ (𝜑 → ∀𝑠 ∈ (0[,]1)(𝑠𝐴1) = (𝑁‘𝑠)) |
| 209 | 208 | r19.21bi 2932 |
. 2
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝑠𝐴1) = (𝑁‘𝑠)) |
| 210 | 175 | r19.21bi 2932 |
. 2
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (0𝐴𝑠) = (𝑀‘0)) |
| 211 | 37, 182, 61, 17 | cnmpt12f 21469 |
. . . . . 6
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠)) ∈ (II Cn 𝐶)) |
| 212 | | ffvelrn 6357 |
. . . . . . . 8
⊢ ((𝑀:(0[,]1)⟶𝐵 ∧ 1 ∈ (0[,]1)) →
(𝑀‘1) ∈ 𝐵) |
| 213 | 83, 91, 212 | sylancl 694 |
. . . . . . 7
⊢ (𝜑 → (𝑀‘1) ∈ 𝐵) |
| 214 | | cnconst2 21087 |
. . . . . . 7
⊢ ((II
∈ (TopOn‘(0[,]1)) ∧ 𝐶 ∈ (TopOn‘𝐵) ∧ (𝑀‘1) ∈ 𝐵) → ((0[,]1) × {(𝑀‘1)}) ∈ (II Cn 𝐶)) |
| 215 | 37, 123, 213, 214 | syl3anc 1326 |
. . . . . 6
⊢ (𝜑 → ((0[,]1) × {(𝑀‘1)}) ∈ (II Cn 𝐶)) |
| 216 | | opelxpi 5148 |
. . . . . . . . . . . . . 14
⊢ ((1
∈ (0[,]1) ∧ 𝑠
∈ (0[,]1)) → 〈1, 𝑠〉 ∈ ((0[,]1) ×
(0[,]1))) |
| 217 | 91, 216 | mpan 706 |
. . . . . . . . . . . . 13
⊢ (𝑠 ∈ (0[,]1) → 〈1,
𝑠〉 ∈ ((0[,]1)
× (0[,]1))) |
| 218 | | fvco3 6275 |
. . . . . . . . . . . . 13
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧
〈1, 𝑠〉 ∈
((0[,]1) × (0[,]1))) → ((𝐹 ∘ 𝐴)‘〈1, 𝑠〉) = (𝐹‘(𝐴‘〈1, 𝑠〉))) |
| 219 | 22, 217, 218 | syl2an 494 |
. . . . . . . . . . . 12
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((𝐹 ∘ 𝐴)‘〈1, 𝑠〉) = (𝐹‘(𝐴‘〈1, 𝑠〉))) |
| 220 | 29 | fveq1d 6193 |
. . . . . . . . . . . 12
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((𝐹 ∘ 𝐴)‘〈1, 𝑠〉) = (𝐾‘〈1, 𝑠〉)) |
| 221 | 219, 220 | eqtr3d 2658 |
. . . . . . . . . . 11
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(𝐴‘〈1, 𝑠〉)) = (𝐾‘〈1, 𝑠〉)) |
| 222 | | df-ov 6653 |
. . . . . . . . . . . 12
⊢ (1𝐴𝑠) = (𝐴‘〈1, 𝑠〉) |
| 223 | 222 | fveq2i 6194 |
. . . . . . . . . . 11
⊢ (𝐹‘(1𝐴𝑠)) = (𝐹‘(𝐴‘〈1, 𝑠〉)) |
| 224 | | df-ov 6653 |
. . . . . . . . . . 11
⊢ (1𝐾𝑠) = (𝐾‘〈1, 𝑠〉) |
| 225 | 221, 223,
224 | 3eqtr4g 2681 |
. . . . . . . . . 10
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(1𝐴𝑠)) = (1𝐾𝑠)) |
| 226 | 128 | simprd 479 |
. . . . . . . . . 10
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (1𝐾𝑠) = (𝐺‘1)) |
| 227 | 7 | simp2d 1074 |
. . . . . . . . . . . . 13
⊢ (𝜑 → (𝐹 ∘ 𝑀) = 𝐺) |
| 228 | 227 | adantr 481 |
. . . . . . . . . . . 12
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹 ∘ 𝑀) = 𝐺) |
| 229 | 228 | fveq1d 6193 |
. . . . . . . . . . 11
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((𝐹 ∘ 𝑀)‘1) = (𝐺‘1)) |
| 230 | 83 | adantr 481 |
. . . . . . . . . . . 12
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → 𝑀:(0[,]1)⟶𝐵) |
| 231 | | fvco3 6275 |
. . . . . . . . . . . 12
⊢ ((𝑀:(0[,]1)⟶𝐵 ∧ 1 ∈ (0[,]1)) →
((𝐹 ∘ 𝑀)‘1) = (𝐹‘(𝑀‘1))) |
| 232 | 230, 91, 231 | sylancl 694 |
. . . . . . . . . . 11
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → ((𝐹 ∘ 𝑀)‘1) = (𝐹‘(𝑀‘1))) |
| 233 | 229, 232 | eqtr3d 2658 |
. . . . . . . . . 10
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐺‘1) = (𝐹‘(𝑀‘1))) |
| 234 | 225, 226,
233 | 3eqtrd 2660 |
. . . . . . . . 9
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (𝐹‘(1𝐴𝑠)) = (𝐹‘(𝑀‘1))) |
| 235 | 234 | mpteq2dva 4744 |
. . . . . . . 8
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝐹‘(1𝐴𝑠))) = (𝑠 ∈ (0[,]1) ↦ (𝐹‘(𝑀‘1)))) |
| 236 | | fconstmpt 5163 |
. . . . . . . 8
⊢ ((0[,]1)
× {(𝐹‘(𝑀‘1))}) = (𝑠 ∈ (0[,]1) ↦ (𝐹‘(𝑀‘1))) |
| 237 | 235, 236 | syl6eqr 2674 |
. . . . . . 7
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (𝐹‘(1𝐴𝑠))) = ((0[,]1) × {(𝐹‘(𝑀‘1))})) |
| 238 | | fovrn 6804 |
. . . . . . . . . 10
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧ 1
∈ (0[,]1) ∧ 𝑠
∈ (0[,]1)) → (1𝐴𝑠) ∈ 𝐵) |
| 239 | 91, 238 | mp3an2 1412 |
. . . . . . . . 9
⊢ ((𝐴:((0[,]1) ×
(0[,]1))⟶𝐵 ∧
𝑠 ∈ (0[,]1)) →
(1𝐴𝑠) ∈ 𝐵) |
| 240 | 22, 239 | sylan 488 |
. . . . . . . 8
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (1𝐴𝑠) ∈ 𝐵) |
| 241 | | eqidd 2623 |
. . . . . . . 8
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠)) = (𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠))) |
| 242 | | fveq2 6191 |
. . . . . . . 8
⊢ (𝑥 = (1𝐴𝑠) → (𝐹‘𝑥) = (𝐹‘(1𝐴𝑠))) |
| 243 | 240, 241,
53, 242 | fmptco 6396 |
. . . . . . 7
⊢ (𝜑 → (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠))) = (𝑠 ∈ (0[,]1) ↦ (𝐹‘(1𝐴𝑠)))) |
| 244 | | fcoconst 6401 |
. . . . . . . 8
⊢ ((𝐹 Fn 𝐵 ∧ (𝑀‘1) ∈ 𝐵) → (𝐹 ∘ ((0[,]1) × {(𝑀‘1)})) = ((0[,]1) ×
{(𝐹‘(𝑀‘1))})) |
| 245 | 156, 213,
244 | syl2anc 693 |
. . . . . . 7
⊢ (𝜑 → (𝐹 ∘ ((0[,]1) × {(𝑀‘1)})) = ((0[,]1) ×
{(𝐹‘(𝑀‘1))})) |
| 246 | 237, 243,
245 | 3eqtr4d 2666 |
. . . . . 6
⊢ (𝜑 → (𝐹 ∘ (𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠))) = (𝐹 ∘ ((0[,]1) × {(𝑀‘1)}))) |
| 247 | | oveq1 6657 |
. . . . . . . . . 10
⊢ (𝑠 = 1 → (𝑠𝐴0) = (1𝐴0)) |
| 248 | | fveq2 6191 |
. . . . . . . . . 10
⊢ (𝑠 = 1 → (𝑀‘𝑠) = (𝑀‘1)) |
| 249 | 247, 248 | eqeq12d 2637 |
. . . . . . . . 9
⊢ (𝑠 = 1 → ((𝑠𝐴0) = (𝑀‘𝑠) ↔ (1𝐴0) = (𝑀‘1))) |
| 250 | 249 | rspcv 3305 |
. . . . . . . 8
⊢ (1 ∈
(0[,]1) → (∀𝑠
∈ (0[,]1)(𝑠𝐴0) = (𝑀‘𝑠) → (1𝐴0) = (𝑀‘1))) |
| 251 | 91, 89, 250 | mpsyl 68 |
. . . . . . 7
⊢ (𝜑 → (1𝐴0) = (𝑀‘1)) |
| 252 | | oveq2 6658 |
. . . . . . . . 9
⊢ (𝑠 = 0 → (1𝐴𝑠) = (1𝐴0)) |
| 253 | | eqid 2622 |
. . . . . . . . 9
⊢ (𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠)) = (𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠)) |
| 254 | | ovex 6678 |
. . . . . . . . 9
⊢ (1𝐴0) ∈ V |
| 255 | 252, 253,
254 | fvmpt 6282 |
. . . . . . . 8
⊢ (0 ∈
(0[,]1) → ((𝑠 ∈
(0[,]1) ↦ (1𝐴𝑠))‘0) = (1𝐴0)) |
| 256 | 23, 255 | ax-mp 5 |
. . . . . . 7
⊢ ((𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠))‘0) = (1𝐴0) |
| 257 | | fvex 6201 |
. . . . . . . . 9
⊢ (𝑀‘1) ∈
V |
| 258 | 257 | fvconst2 6469 |
. . . . . . . 8
⊢ (0 ∈
(0[,]1) → (((0[,]1) × {(𝑀‘1)})‘0) = (𝑀‘1)) |
| 259 | 23, 258 | ax-mp 5 |
. . . . . . 7
⊢ (((0[,]1)
× {(𝑀‘1)})‘0) = (𝑀‘1) |
| 260 | 251, 256,
259 | 3eqtr4g 2681 |
. . . . . 6
⊢ (𝜑 → ((𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠))‘0) = (((0[,]1) × {(𝑀‘1)})‘0)) |
| 261 | 1, 19, 3, 116, 118, 62, 211, 215, 246, 260 | cvmliftmoi 31265 |
. . . . 5
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠)) = ((0[,]1) × {(𝑀‘1)})) |
| 262 | | fconstmpt 5163 |
. . . . 5
⊢ ((0[,]1)
× {(𝑀‘1)}) =
(𝑠 ∈ (0[,]1) ↦
(𝑀‘1)) |
| 263 | 261, 262 | syl6eq 2672 |
. . . 4
⊢ (𝜑 → (𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠)) = (𝑠 ∈ (0[,]1) ↦ (𝑀‘1))) |
| 264 | | mpteqb 6299 |
. . . . 5
⊢
(∀𝑠 ∈
(0[,]1)(1𝐴𝑠) ∈ V → ((𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠)) = (𝑠 ∈ (0[,]1) ↦ (𝑀‘1)) ↔ ∀𝑠 ∈ (0[,]1)(1𝐴𝑠) = (𝑀‘1))) |
| 265 | | ovexd 6680 |
. . . . 5
⊢ (𝑠 ∈ (0[,]1) → (1𝐴𝑠) ∈ V) |
| 266 | 264, 265 | mprg 2926 |
. . . 4
⊢ ((𝑠 ∈ (0[,]1) ↦ (1𝐴𝑠)) = (𝑠 ∈ (0[,]1) ↦ (𝑀‘1)) ↔ ∀𝑠 ∈ (0[,]1)(1𝐴𝑠) = (𝑀‘1)) |
| 267 | 263, 266 | sylib 208 |
. . 3
⊢ (𝜑 → ∀𝑠 ∈ (0[,]1)(1𝐴𝑠) = (𝑀‘1)) |
| 268 | 267 | r19.21bi 2932 |
. 2
⊢ ((𝜑 ∧ 𝑠 ∈ (0[,]1)) → (1𝐴𝑠) = (𝑀‘1)) |
| 269 | 8, 16, 17, 90, 209, 210, 268 | isphtpy2d 22786 |
1
⊢ (𝜑 → 𝐴 ∈ (𝑀(PHtpy‘𝐶)𝑁)) |