ILE Home Intuitionistic Logic Explorer < Previous   Next >
Nearby theorems
Mirrors  >  Home  >  ILE Home  >  Th. List  >  mapfoss GIF version

Theorem mapfoss 6937
Description: The value of the set exponentiation (𝐵𝑚 𝐴) is a superset of the set of all functions from 𝐴 onto 𝐵. (Contributed by AV, 7-Aug-2024.)
Assertion
Ref Expression
mapfoss {𝑓𝑓:𝐴onto𝐵} ⊆ (𝐵𝑚 𝐴)
Distinct variable groups:   𝐴,𝑓   𝐵,𝑓

Proof of Theorem mapfoss
Dummy variable 𝑚 is distinct from all other variables.
StepHypRef Expression
1 vex 2824 . . . 4 𝑚 ∈ V
2 foeq1 5606 . . . 4 (𝑓 = 𝑚 → (𝑓:𝐴onto𝐵𝑚:𝐴onto𝐵))
31, 2elab 2970 . . 3 (𝑚 ∈ {𝑓𝑓:𝐴onto𝐵} ↔ 𝑚:𝐴onto𝐵)
4 fof 5610 . . . 4 (𝑚:𝐴onto𝐵𝑚:𝐴𝐵)
5 forn 5613 . . . . . 6 (𝑚:𝐴onto𝐵 → ran 𝑚 = 𝐵)
61rnex 5045 . . . . . 6 ran 𝑚 ∈ V
75, 6eqeltrrdi 2330 . . . . 5 (𝑚:𝐴onto𝐵𝐵 ∈ V)
8 dmfex 5577 . . . . . 6 ((𝑚 ∈ V ∧ 𝑚:𝐴𝐵) → 𝐴 ∈ V)
91, 4, 8sylancr 418 . . . . 5 (𝑚:𝐴onto𝐵𝐴 ∈ V)
107, 9elmapd 6926 . . . 4 (𝑚:𝐴onto𝐵 → (𝑚 ∈ (𝐵𝑚 𝐴) ↔ 𝑚:𝐴𝐵))
114, 10mpbird 167 . . 3 (𝑚:𝐴onto𝐵𝑚 ∈ (𝐵𝑚 𝐴))
123, 11sylbi 121 . 2 (𝑚 ∈ {𝑓𝑓:𝐴onto𝐵} → 𝑚 ∈ (𝐵𝑚 𝐴))
1312ssriv 3252 1 {𝑓𝑓:𝐴onto𝐵} ⊆ (𝐵𝑚 𝐴)
Colors of variables: wff set class
Syntax hints:  wcel 2209  {cab 2224  Vcvv 2821  wss 3220  ran crn 4770  wf 5368  ontowfo 5370  (class class class)co 6075  𝑚 cmap 6912
This theorem was proved from axioms:  ax-mp 5  ax-1 6  ax-2 7  ax-ia1 106  ax-ia2 107  ax-ia3 108  ax-in1 623  ax-in2 624  ax-io 721  ax-5 1500  ax-7 1501  ax-gen 1502  ax-ie1 1546  ax-ie2 1547  ax-8 1557  ax-10 1558  ax-11 1559  ax-i12 1560  ax-bndl 1562  ax-4 1563  ax-17 1579  ax-i9 1583  ax-ial 1587  ax-i5r 1588  ax-14 2212  ax-ext 2220  ax-sep 4244  ax-pow 4306  ax-pr 4341  ax-un 4573  ax-setind 4679
This theorem depends on definitions:  df-bi 117  df-3an 1011  df-tru 1405  df-fal 1408  df-nf 1514  df-sb 1816  df-eu 2089  df-mo 2090  df-clab 2225  df-cleq 2231  df-clel 2234  df-nfc 2381  df-ne 2421  df-ral 2533  df-rex 2534  df-v 2823  df-sbc 3052  df-dif 3222  df-un 3224  df-in 3226  df-ss 3233  df-pw 3687  df-sn 3711  df-pr 3712  df-op 3714  df-uni 3931  df-br 4126  df-opab 4188  df-id 4433  df-xp 4775  df-rel 4776  df-cnv 4777  df-co 4778  df-dm 4779  df-rn 4780  df-iota 5332  df-fun 5374  df-fn 5375  df-f 5376  df-fo 5378  df-fv 5380  df-ov 6078  df-oprab 6079  df-mpo 6080  df-map 6914
This theorem is referenced by: (None)
  Copyright terms: Public domain W3C validator