@puffnfresh @dibblego @jedws @tpolecat @nuttycom Then what *do* you use? Define it for me please.
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Replying to @djspiewak
@djspiewak@dibblego@jedws@tpolecat@nuttycom I talk about equivalence with laws, absolutely not structural equality.2 replies 0 retweets 1 like -
Replying to @puffnfresh
@puffnfresh@dibblego@jedws@tpolecat@nuttycom What is equivalence?1 reply 0 retweets 0 likes -
Replying to @djspiewak
@djspiewak@dibblego@jedws@tpolecat@nuttycom http://ncatlab.org/nlab/show/principle+of+equivalence …1 reply 1 retweet 0 likes -
Replying to @puffnfresh
@puffnfresh@djspiewak@dibblego@tpolecat@nuttycom good link, failure of equivalence preservation is the fundamental issue here1 reply 0 retweets 1 like -
Replying to @jedws
@puffnfresh@djspiewak@dibblego@tpolecat@nuttycom I like the idea that breaking equivalence invariance is evil – Arch Dr Functor[Set]1 reply 0 retweets 1 like -
Replying to @djspiewak
@djspiewak@puffnfresh@dibblego@tpolecat@nuttycom Functor type (not notion) is forall a -> b, but Set is constrained to things with Eq2 replies 0 retweets 1 like -
Replying to @jedws
@jedws@djspiewak@puffnfresh@tpolecat@nuttycom and is therefore, not a functor.2 replies 0 retweets 1 like -
Replying to @dibblego
@dibblego@djspiewak@puffnfresh@tpolecat@nuttycom not so sure@mbrcknl has explained it is, only under the preservation of equivalence1 reply 0 retweets 0 likes
@jedws @djspiewak @puffnfresh @tpolecat @nuttycom @mbrcknl Exactly and a very different type of functor to the one we are discussing.
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