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Theorem elrn2 5247
 Description: Membership in a range. (Contributed by NM, 10-Jul-1994.)
Hypothesis
Ref Expression
elrn.1
Assertion
Ref Expression
elrn2
Distinct variable groups:   ,   ,

Proof of Theorem elrn2
Dummy variable is distinct from all other variables.
StepHypRef Expression
1 elrn.1 . 2
2 opeq2 4218 . . . 4
32eleq1d 2526 . . 3
43exbidv 1714 . 2
5 dfrn3 5197 . 2
61, 4, 5elab2 3249 1
 Colors of variables: wff setvar class Syntax hints:  <->wb 184  =wceq 1395  E.wex 1612  e.wcel 1818   cvv 3109  <.cop 4035  rancrn 5005 This theorem is referenced by:  elrn  5248  dmrnssfld  5266  rniun  5421  ssrnres  5450  relssdmrn  5533  fvelrn  6024  tz7.48-1  7127  prsrn  27897  dfrn5  29207 This theorem was proved from axioms:  ax-mp 5  ax-1 6  ax-2 7  ax-3 8  ax-gen 1618  ax-4 1631  ax-5 1704  ax-6 1747  ax-7 1790  ax-9 1822  ax-10 1837  ax-11 1842  ax-12 1854  ax-13 1999  ax-ext 2435  ax-sep 4573  ax-nul 4581  ax-pr 4691 This theorem depends on definitions:  df-bi 185  df-or 370  df-an 371  df-3an 975  df-tru 1398  df-ex 1613  df-nf 1617  df-sb 1740  df-eu 2286  df-mo 2287  df-clab 2443  df-cleq 2449  df-clel 2452  df-nfc 2607  df-ne 2654  df-rab 2816  df-v 3111  df-dif 3478  df-un 3480  df-in 3482  df-ss 3489  df-nul 3785  df-if 3942  df-sn 4030  df-pr 4032  df-op 4036  df-br 4453  df-opab 4511  df-cnv 5012  df-dm 5014  df-rn 5015
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