Wouldn't gravity have to be repulsive in a reversed time? Doesn't that mean time can't run in reverse. Also information might be lost in black holes. Wouldn't that also prohibit it reversing time?
No. Consider what it would look like if you ran the solar system in reverse - all the planets and moons would go backwards in their orbits, but gravity still works exactly the same. The equations of mechanics don't care about time. And yes, information being lost in black holes would be an issue, if true - that's why that problem has been studied so much recently.
Time’s Almost Reversible Arrow
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Re: Time’s Almost Reversible Arrow
#12This was a great read! But I wish the article would have mentioned how tiny the microscopic time-reversal effects are, compared to macroscopic time reversal. The microscopic effects are too small to explain why we have such a clear direction of time. Our direction of time is defined by the observation that entropy (or "chaoticness") always increases with time. If you mix orange juice with water, you will not see the…
Then it is the universe expansion that made the entropy per volume decrease, actually allowing complex systems to evolve. The expansion still has to occur faster than the entropy increase rate but I read somewhere that the universe total entropy did not increase that much since the Big Bang.
Re: Time’s Almost Reversible Arrow
#13Earlier quoted context omitted.
No. Consider what it would look like if you ran the solar system in reverse - all the planets and moons would go backwards in their orbits, but gravity still works exactly the same. The equations of mechanics don't care about time. And yes, information being lost in black holes would be an issue, if true - that's why that problem has been studied so much recently.
But if gravity isn't reversed how would planet formation be reversed? What would allow the matter in a planet to fly apart?
Re: Time’s Almost Reversible Arrow
#14Earlier quoted context omitted.
No. Consider what it would look like if you ran the solar system in reverse - all the planets and moons would go backwards in their orbits, but gravity still works exactly the same. The equations of mechanics don't care about time. And yes, information being lost in black holes would be an issue, if true - that's why that problem has been studied so much recently.
But if gravity isn't reversed how would planet formation be reversed? What would allow the matter in a planet to fly apart?
Re: Time’s Almost Reversible Arrow
#15Or 1781, when Critique of Pure Reason was published. Kant proposed that time was an empirical fact based on experiencing events in time being a precondition of all human experience. The tradeoff for a well reasoned non-skeptical position was that we give up claims to "really really" know how things really are independent of human experience...i.e we give up claims to potential omniscience.
That we normally take "knowledge" to mean human knowledge, doesn't change that this is what we mean. Or to put it another way, what would time be for a computer with knowledge or as the article mentions for creatures that experience time backward?
Re: Time’s Almost Reversible Arrow
#16Re: Time’s Almost Reversible Arrow
#17What s the current thinking on being able to run Schrödinger's cat backwards? How can time be reversed on something in an indeterminate state?
Re: Time’s Almost Reversible Arrow
#18Earlier quoted context omitted.
No. Consider what it would look like if you ran the solar system in reverse - all the planets and moons would go backwards in their orbits, but gravity still works exactly the same. The equations of mechanics don't care about time. And yes, information being lost in black holes would be an issue, if true - that's why that problem has been studied so much recently.
So if I understand correctly, time reversal means that all the object speeds get inverted, but the fields remain the same. If you change the sign of the field (gravity becomes repulsive) then things will explode very quickly :)
Re: Time’s Almost Reversible Arrow
#19This was a great read! But I wish the article would have mentioned how tiny the microscopic time-reversal effects are, compared to macroscopic time reversal. The microscopic effects are too small to explain why we have such a clear direction of time. Our direction of time is defined by the observation that entropy (or "chaoticness") always increases with time. If you mix orange juice with water, you will not see the…
This one thing I don't understand about the 2nd law of thermodynamics: given enough time won't the system go back to a more organized state simply by chance? And in that case, wouldn't the total entropy be reduced?
Re: Time’s Almost Reversible Arrow
#20Earlier quoted context omitted.
No. Consider what it would look like if you ran the solar system in reverse - all the planets and moons would go backwards in their orbits, but gravity still works exactly the same. The equations of mechanics don't care about time. And yes, information being lost in black holes would be an issue, if true - that's why that problem has been studied so much recently.
But if gravity isn't reversed how would planet formation be reversed? What would allow the matter in a planet to fly apart?
Basically take the movie and play it backwards.