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Theorem equsb3lem 1329
Description: Lemma for equsb3 1330.
Assertion
Ref Expression
equsb3lem |- ([x / y]y = z <-> x = z)
Distinct variable groups:   y,z   x,y

Proof of Theorem equsb3lem
StepHypRef Expression
1 equsb2 1194 . . . 4 |- [x / y]x = y
2 equequ1 1134 . . . . 5 |- (x = y -> (x = z <-> y = z))
32sbimi 1173 . . . 4 |- ([x / y]x = y -> [x / y](x = z <-> y = z))
41, 3ax-mp 7 . . 3 |- [x / y](x = z <-> y = z)
5 sbbi 1239 . . 3 |- ([x / y](x = z <-> y = z) <-> ([x / y]x = z <-> [x / y]y = z))
64, 5mpbi 189 . 2 |- ([x / y]x = z <-> [x / y]y = z)
7 ax-17 971 . . 3 |- (x = z -> A.y x = z)
87sbf 1186 . 2 |- ([x / y]x = z <-> x = z)
96, 8bitr3 175 1 |- ([x / y]y = z <-> x = z)
Colors of variables: wff set class
Syntax hints:   <-> wb 146   = wceq 956  [wsbc 1170
This theorem is referenced by:  equsb3 1330
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-12 968  ax-17 971  ax-4 973  ax-5o 975  ax-6o 978  ax-9o 1123  ax-10o 1140  ax-11o 1218
This theorem depends on definitions:  df-bi 147  df-or 224  df-an 225  df-ex 981  df-sb 1172
Copyright terms: Public domain