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Theorem neq0f 3885
Description: A nonempty class has at least one element. Proposition 5.17(1) of [TakeutiZaring] p. 20. This version of neq0 3889 requires only that 𝑥 not be free in, rather than not occur in, 𝐴. (Contributed by BJ, 15-Jul-2021.)
Hypothesis
Ref Expression
eq0f.1 𝑥𝐴
Assertion
Ref Expression
neq0f 𝐴 = ∅ ↔ ∃𝑥 𝑥𝐴)

Proof of Theorem neq0f
StepHypRef Expression
1 eq0f.1 . . . 4 𝑥𝐴
21eq0f 3884 . . 3 (𝐴 = ∅ ↔ ∀𝑥 ¬ 𝑥𝐴)
32notbii 309 . 2 𝐴 = ∅ ↔ ¬ ∀𝑥 ¬ 𝑥𝐴)
4 df-ex 1696 . 2 (∃𝑥 𝑥𝐴 ↔ ¬ ∀𝑥 ¬ 𝑥𝐴)
53, 4bitr4i 266 1 𝐴 = ∅ ↔ ∃𝑥 𝑥𝐴)
Colors of variables: wff setvar class
Syntax hints:  ¬ wn 3  wb 195  wal 1473   = wceq 1475  wex 1695  wcel 1977  wnfc 2738  c0 3874
This theorem was proved from axioms:  ax-mp 5  ax-1 6  ax-2 7  ax-3 8  ax-gen 1713  ax-4 1728  ax-5 1827  ax-6 1875  ax-7 1922  ax-10 2006  ax-11 2021  ax-12 2034  ax-13 2234  ax-ext 2590
This theorem depends on definitions:  df-bi 196  df-or 384  df-an 385  df-tru 1478  df-ex 1696  df-nf 1701  df-sb 1868  df-clab 2597  df-cleq 2603  df-clel 2606  df-nfc 2740  df-v 3175  df-dif 3543  df-nul 3875
This theorem is referenced by:  n0f  3886  neq0  3889
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