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Related theorems
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Theorem relcat 10694
Description: A category is a relation.
Assertion
Ref Expression
relcat |- Rel Cat

Proof of Theorem relcat
StepHypRef Expression
1 strcat 10693 . . 3 |- Cat (_ ((V X. V) X. (V X. V))
2 xpss 3230 . . 3 |- ((V X. V) X. (V X. V)) (_ (V X. V)
31, 2sstri 2073 . 2 |- Cat (_ (V X. V)
4 df-rel 3185 . 2 |- (Rel Cat <-> Cat (_ (V X. V))
53, 4mpbir 190 1 |- Rel Cat
Colors of variables: wff set class
Syntax hints:  Vcvv 1811   (_ wss 2047   X. cxp 3168  Rel wrel 3175  Catccat 10685
This theorem is referenced by:  catded 10697
This theorem was proved from axioms:  ax-1 4  ax-2 5  ax-3 6  ax-mp 7  ax-7 962  ax-gen 963  ax-8 964  ax-10 966  ax-11 967  ax-12 968  ax-13 969  ax-14 970  ax-17 971  ax-4 973  ax-5o 975  ax-6o 978  ax-9o 1123  ax-10o 1140  ax-16 1210  ax-11o 1218  ax-ext 1459  ax-sep 2703  ax-pow 2742  ax-pr 2779
This theorem depends on definitions:  df-bi 147  df-or 224  df-an 225  df-ex 981  df-sb 1172  df-eu 1382  df-mo 1383  df-clab 1464  df-cleq 1469  df-clel 1472  df-ne 1587  df-v 1812  df-dif 2049  df-un 2050  df-in 2051  df-ss 2053  df-nul 2281  df-pw 2402  df-sn 2412  df-pr 2413  df-op 2416  df-opab 2667  df-xp 3184  df-rel 3185  df-cat 10686
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