Difference between revisions of "Commutativity of intersection"

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(Created page with "<math>A\cap B=B\cap A</math> {{Todo}} {{Theorem|Set Theory}}")
 
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<math>A\cap B=B\cap A</math>
 
<math>A\cap B=B\cap A</math>
 
{{Todo}}
 
{{Todo}}
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==Note==
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This is somewhere between a theorem and a definition because at some point you have to accept "and" is commutative or something.
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==Proof==
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===<math>\implies</math>===
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<math>x\in A\cap B\implies x\in A\text{ and }x\in B\implies x\in B\text{ and }x\in A\implies x\in B\cap A</math>, thus by the [[Implies and subset relation|implies and subset relation]] we see <math>A\cap B\subset B\cap A</math>
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===<math>\impliedby</math>===
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By the exact same procedure we see <math>B\cap A\subset A\cap B</math>
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Thus we conclude <math>A\cap B=B\cap A</math>
  
 
{{Theorem|Set Theory}}
 
{{Theorem|Set Theory}}

Revision as of 19:53, 14 February 2015

AB=BA


TODO:



Note

This is somewhere between a theorem and a definition because at some point you have to accept "and" is commutative or something.

Proof

xABxA and xBxB and xAxBA, thus by the implies and subset relation we see ABBA

By the exact same procedure we see BAAB

Thus we conclude AB=BA

[Expand]Set Theory