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Theorem minveclem7 8547
Description: Lemma for minvecex 8574.
Hypothesis
Ref Expression
minvec7.f |- (j e. NN -> (F` j) = (N` (H` j)))
Assertion
Ref Expression
minveclem7 |- (n e. NN -> (F` n) = (N` (H` n)))
Distinct variable groups:   j,F   j,H   j,N   j,n

Proof of Theorem minveclem7
StepHypRef Expression
1 fveq2 3730 . . 3 |- (j = n -> (F` j) = (F` n))
2 fveq2 3730 . . . 4 |- (j = n -> (H` j) = (H` n))
32fveq2d 3734 . . 3 |- (j = n -> (N` (H` j)) = (N` (H` n)))
41, 3eqeq12d 1492 . 2 |- (j = n -> ((F` j) = (N` (H` j)) <-> (F` n) = (N` (H` n))))
5 minvec7.f . 2 |- (j e. NN -> (F` j) = (N` (H` j)))
64, 5vtoclga 1855 1 |- (n e. NN -> (F` n) = (N` (H` n)))
Colors of variables: wff set class
Syntax hints:   -> wi 3   = wceq 958   e. wcel 960  ` cfv 3188  NNcn 5308
This theorem is referenced by:  minveclem20 8560  minveclem21 8561
This theorem was proved from axioms:  ax-1 4  ax-2 5  ax-3 6  ax-mp 7  ax-7 964  ax-gen 965  ax-8 966  ax-10 968  ax-11 969  ax-12 970  ax-13 971  ax-14 972  ax-17 973  ax-4 975  ax-5o 977  ax-6o 980  ax-9o 1125  ax-10o 1142  ax-16 1212  ax-11o 1220  ax-ext 1462  ax-sep 2708  ax-pow 2748  ax-pr 2785
This theorem depends on definitions:  df-bi 147  df-or 224  df-an 225  df-ex 983  df-sb 1174  df-eu 1384  df-mo 1385  df-clab 1467  df-cleq 1472  df-clel 1475  df-ne 1590  df-v 1815  df-dif 2052  df-un 2053  df-in 2054  df-ss 2056  df-nul 2284  df-pw 2406  df-sn 2416  df-pr 2417  df-op 2420  df-uni 2508  df-br 2625  df-opab 2672  df-xp 3190  df-cnv 3192  df-dm 3194  df-rn 3195  df-res 3196  df-ima 3197  df-fv 3204
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