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Theorem elabreximdv 29349
Description: Class substitution in an image set. (Contributed by Thierry Arnoux, 30-Dec-2016.)
Hypotheses
Ref Expression
elabreximdv.1 (𝐴 = 𝐵 → (𝜒𝜓))
elabreximdv.2 (𝜑𝐴𝑉)
elabreximdv.3 ((𝜑𝑥𝐶) → 𝜓)
Assertion
Ref Expression
elabreximdv ((𝜑𝐴 ∈ {𝑦 ∣ ∃𝑥𝐶 𝑦 = 𝐵}) → 𝜒)
Distinct variable groups:   𝑥,𝑦,𝐴   𝑦,𝐵   𝑥,𝐶,𝑦   𝜒,𝑥   𝜑,𝑥
Allowed substitution hints:   𝜑(𝑦)   𝜓(𝑥,𝑦)   𝜒(𝑦)   𝐵(𝑥)   𝑉(𝑥,𝑦)

Proof of Theorem elabreximdv
StepHypRef Expression
1 nfv 1843 . 2 𝑥𝜑
2 nfv 1843 . 2 𝑥𝜒
3 elabreximdv.1 . 2 (𝐴 = 𝐵 → (𝜒𝜓))
4 elabreximdv.2 . 2 (𝜑𝐴𝑉)
5 elabreximdv.3 . 2 ((𝜑𝑥𝐶) → 𝜓)
61, 2, 3, 4, 5elabreximd 29348 1 ((𝜑𝐴 ∈ {𝑦 ∣ ∃𝑥𝐶 𝑦 = 𝐵}) → 𝜒)
Colors of variables: wff setvar class
Syntax hints:  wi 4  wb 196  wa 384   = wceq 1483  wcel 1990  {cab 2608  wrex 2913
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
This theorem depends on definitions:  df-bi 197  df-or 385  df-an 386  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-ral 2917  df-rex 2918  df-v 3202
This theorem is referenced by: (None)
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