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I agree, and indeed there are solutions to chaotic systems - the problem being precision as you mentionned. To me the precision problem it is important : it reframes the "mechanical universe" as being way out of our grasp not because of our understanding but because of it's structure. You got me!

Not certain that philosophy is not bound by our universe - is that something you could elaborate (or lend a link) on?

To apply these hypotheticals to our universe implies (from my understanding) that the density of information present at any and all times since it's inception was present (while compressed) at it's creation/whatever - which I imagine I can find some proof of theoretical maximum information density and information compression compare that to the first state of the universe we can measure to have a better idea if it tracks.






> Not certain that philosophy is not bound by our universe - is that something you could elaborate (or lend a link) on?

I simply mean it’s happy to assume perfect information, perfect clones, etc. The trolly problem generally ignores the possibility that choosing a different track could with some probability result in derailment because the inherent question is simplified by design. We don’t need for the possibility of perfect cloning to exist to consider the ramifications of such etc.


I think I see a distinction in that a hypothetical universe with perfect information is pertinent precisely because it is comparable to our measurable universe and could be tested against.

I guess that's the point of any hypothetical, exploring a simplified model of something complex, but it's not easy to simplify the fabric of reality itself.




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