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Theorem f1ofveu 6645
Description: There is one domain element for each value of a one-to-one onto function. (Contributed by NM, 26-May-2006.)
Assertion
Ref Expression
f1ofveu ((𝐹:𝐴1-1-onto𝐵𝐶𝐵) → ∃!𝑥𝐴 (𝐹𝑥) = 𝐶)
Distinct variable groups:   𝑥,𝐴   𝑥,𝐵   𝑥,𝐶   𝑥,𝐹

Proof of Theorem f1ofveu
StepHypRef Expression
1 f1ocnv 6149 . . . 4 (𝐹:𝐴1-1-onto𝐵𝐹:𝐵1-1-onto𝐴)
2 f1of 6137 . . . 4 (𝐹:𝐵1-1-onto𝐴𝐹:𝐵𝐴)
31, 2syl 17 . . 3 (𝐹:𝐴1-1-onto𝐵𝐹:𝐵𝐴)
4 feu 6080 . . 3 ((𝐹:𝐵𝐴𝐶𝐵) → ∃!𝑥𝐴𝐶, 𝑥⟩ ∈ 𝐹)
53, 4sylan 488 . 2 ((𝐹:𝐴1-1-onto𝐵𝐶𝐵) → ∃!𝑥𝐴𝐶, 𝑥⟩ ∈ 𝐹)
6 f1ocnvfvb 6535 . . . . . 6 ((𝐹:𝐴1-1-onto𝐵𝑥𝐴𝐶𝐵) → ((𝐹𝑥) = 𝐶 ↔ (𝐹𝐶) = 𝑥))
763com23 1271 . . . . 5 ((𝐹:𝐴1-1-onto𝐵𝐶𝐵𝑥𝐴) → ((𝐹𝑥) = 𝐶 ↔ (𝐹𝐶) = 𝑥))
8 dff1o4 6145 . . . . . . 7 (𝐹:𝐴1-1-onto𝐵 ↔ (𝐹 Fn 𝐴𝐹 Fn 𝐵))
98simprbi 480 . . . . . 6 (𝐹:𝐴1-1-onto𝐵𝐹 Fn 𝐵)
10 fnopfvb 6237 . . . . . . 7 ((𝐹 Fn 𝐵𝐶𝐵) → ((𝐹𝐶) = 𝑥 ↔ ⟨𝐶, 𝑥⟩ ∈ 𝐹))
11103adant3 1081 . . . . . 6 ((𝐹 Fn 𝐵𝐶𝐵𝑥𝐴) → ((𝐹𝐶) = 𝑥 ↔ ⟨𝐶, 𝑥⟩ ∈ 𝐹))
129, 11syl3an1 1359 . . . . 5 ((𝐹:𝐴1-1-onto𝐵𝐶𝐵𝑥𝐴) → ((𝐹𝐶) = 𝑥 ↔ ⟨𝐶, 𝑥⟩ ∈ 𝐹))
137, 12bitrd 268 . . . 4 ((𝐹:𝐴1-1-onto𝐵𝐶𝐵𝑥𝐴) → ((𝐹𝑥) = 𝐶 ↔ ⟨𝐶, 𝑥⟩ ∈ 𝐹))
14133expa 1265 . . 3 (((𝐹:𝐴1-1-onto𝐵𝐶𝐵) ∧ 𝑥𝐴) → ((𝐹𝑥) = 𝐶 ↔ ⟨𝐶, 𝑥⟩ ∈ 𝐹))
1514reubidva 3125 . 2 ((𝐹:𝐴1-1-onto𝐵𝐶𝐵) → (∃!𝑥𝐴 (𝐹𝑥) = 𝐶 ↔ ∃!𝑥𝐴𝐶, 𝑥⟩ ∈ 𝐹))
165, 15mpbird 247 1 ((𝐹:𝐴1-1-onto𝐵𝐶𝐵) → ∃!𝑥𝐴 (𝐹𝑥) = 𝐶)
Colors of variables: wff setvar class
Syntax hints:  wi 4  wb 196  wa 384  w3a 1037   = wceq 1483  wcel 1990  ∃!wreu 2914  cop 4183  ccnv 5113   Fn wfn 5883  wf 5884  1-1-ontowf1o 5887  cfv 5888
This theorem was proved from axioms:  ax-mp 5  ax-1 6  ax-2 7  ax-3 8  ax-gen 1722  ax-4 1737  ax-5 1839  ax-6 1888  ax-7 1935  ax-8 1992  ax-9 1999  ax-10 2019  ax-11 2034  ax-12 2047  ax-13 2246  ax-ext 2602  ax-sep 4781  ax-nul 4789  ax-pow 4843  ax-pr 4906
This theorem depends on definitions:  df-bi 197  df-or 385  df-an 386  df-3an 1039  df-tru 1486  df-ex 1705  df-nf 1710  df-sb 1881  df-eu 2474  df-mo 2475  df-clab 2609  df-cleq 2615  df-clel 2618  df-nfc 2753  df-ne 2795  df-ral 2917  df-rex 2918  df-reu 2919  df-rab 2921  df-v 3202  df-sbc 3436  df-dif 3577  df-un 3579  df-in 3581  df-ss 3588  df-nul 3916  df-if 4087  df-sn 4178  df-pr 4180  df-op 4184  df-uni 4437  df-br 4654  df-opab 4713  df-id 5024  df-xp 5120  df-rel 5121  df-cnv 5122  df-co 5123  df-dm 5124  df-rn 5125  df-res 5126  df-ima 5127  df-iota 5851  df-fun 5890  df-fn 5891  df-f 5892  df-f1 5893  df-fo 5894  df-f1o 5895  df-fv 5896
This theorem is referenced by:  1arith2  15632  disjrdx  29404
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