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Theorem unipwrVD 39067
Description: Virtual deduction proof of unipwr 39068. (Contributed by Alan Sare, 25-Aug-2011.) (Proof modification is discouraged.) (New usage is discouraged.)
Assertion
Ref Expression
unipwrVD 𝐴 𝒫 𝐴

Proof of Theorem unipwrVD
Dummy variable 𝑥 is distinct from all other variables.
StepHypRef Expression
1 vex 3203 . . . . 5 𝑥 ∈ V
21snid 4208 . . . 4 𝑥 ∈ {𝑥}
3 idn1 38790 . . . . 5 (   𝑥𝐴   ▶   𝑥𝐴   )
4 snelpwi 4912 . . . . 5 (𝑥𝐴 → {𝑥} ∈ 𝒫 𝐴)
53, 4e1a 38852 . . . 4 (   𝑥𝐴   ▶   {𝑥} ∈ 𝒫 𝐴   )
6 elunii 4441 . . . 4 ((𝑥 ∈ {𝑥} ∧ {𝑥} ∈ 𝒫 𝐴) → 𝑥 𝒫 𝐴)
72, 5, 6e01an 38917 . . 3 (   𝑥𝐴   ▶   𝑥 𝒫 𝐴   )
87in1 38787 . 2 (𝑥𝐴𝑥 𝒫 𝐴)
98ssriv 3607 1 𝐴 𝒫 𝐴
Colors of variables: wff setvar class
Syntax hints:  wcel 1990  wss 3574  𝒫 cpw 4158  {csn 4177   cuni 4436
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-9 1999  ax-10 2019  ax-11 2034  ax-12 2047  ax-13 2246  ax-ext 2602  ax-sep 4781  ax-nul 4789  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-clab 2609  df-cleq 2615  df-clel 2618  df-nfc 2753  df-v 3202  df-dif 3577  df-un 3579  df-in 3581  df-ss 3588  df-nul 3916  df-pw 4160  df-sn 4178  df-pr 4180  df-uni 4437  df-vd1 38786
This theorem is referenced by: (None)
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