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Theorem subrfn 37698
Description: Vector subtraction produces a function. (Contributed by Andrew Salmon, 27-Jan-2012.)
Assertion
Ref Expression
subrfn ((𝐴𝐶𝐵𝐷) → (𝐴-𝑟𝐵) Fn ℝ)

Proof of Theorem subrfn
Dummy variable 𝑥 is distinct from all other variables.
StepHypRef Expression
1 ovex 6577 . . 3 ((𝐴𝑥) − (𝐵𝑥)) ∈ V
2 eqid 2610 . . 3 (𝑥 ∈ ℝ ↦ ((𝐴𝑥) − (𝐵𝑥))) = (𝑥 ∈ ℝ ↦ ((𝐴𝑥) − (𝐵𝑥)))
31, 2fnmpti 5935 . 2 (𝑥 ∈ ℝ ↦ ((𝐴𝑥) − (𝐵𝑥))) Fn ℝ
4 subrval 37692 . . 3 ((𝐴𝐶𝐵𝐷) → (𝐴-𝑟𝐵) = (𝑥 ∈ ℝ ↦ ((𝐴𝑥) − (𝐵𝑥))))
54fneq1d 5895 . 2 ((𝐴𝐶𝐵𝐷) → ((𝐴-𝑟𝐵) Fn ℝ ↔ (𝑥 ∈ ℝ ↦ ((𝐴𝑥) − (𝐵𝑥))) Fn ℝ))
63, 5mpbiri 247 1 ((𝐴𝐶𝐵𝐷) → (𝐴-𝑟𝐵) Fn ℝ)
Colors of variables: wff setvar class
Syntax hints:  wi 4  wa 383  wcel 1977  cmpt 4643   Fn wfn 5799  cfv 5804  (class class class)co 6549  cr 9814  cmin 10145  -𝑟cminusr 37683
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-9 1986  ax-10 2006  ax-11 2021  ax-12 2034  ax-13 2234  ax-ext 2590  ax-rep 4699  ax-sep 4709  ax-nul 4717  ax-pr 4833  ax-cnex 9871  ax-resscn 9872
This theorem depends on definitions:  df-bi 196  df-or 384  df-an 385  df-3an 1033  df-tru 1478  df-ex 1696  df-nf 1701  df-sb 1868  df-eu 2462  df-mo 2463  df-clab 2597  df-cleq 2603  df-clel 2606  df-nfc 2740  df-ne 2782  df-ral 2901  df-rex 2902  df-reu 2903  df-rab 2905  df-v 3175  df-sbc 3403  df-csb 3500  df-dif 3543  df-un 3545  df-in 3547  df-ss 3554  df-nul 3875  df-if 4037  df-sn 4126  df-pr 4128  df-op 4132  df-uni 4373  df-iun 4457  df-br 4584  df-opab 4644  df-mpt 4645  df-id 4953  df-xp 5044  df-rel 5045  df-cnv 5046  df-co 5047  df-dm 5048  df-rn 5049  df-res 5050  df-ima 5051  df-iota 5768  df-fun 5806  df-fn 5807  df-f 5808  df-f1 5809  df-fo 5810  df-f1o 5811  df-fv 5812  df-ov 6552  df-oprab 6553  df-mpt2 6554  df-subr 37689
This theorem is referenced by: (None)
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