Wait did nobody seriously consider rotation yet? Everything is rotating. Angular momentum is conserved.
Rotation implies a great many observables and properties of the universe. There would be a cosmic axis, which implies a cosmic center and a cosmic north. Both concepts that are problematic in an infinite universe. If the universe is in fact inside of a black hole of a different universe - some of these problems go away as the Hubble volume would be the finite boundary of the universe.
Can rotation solve the Hubble Puzzle?
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Re: Can rotation solve the Hubble Puzzle?
#12Earlier quoted context omitted.
Rotation implies a great many observables and properties of the universe. There would be a cosmic axis, which implies a cosmic center and a cosmic north. Both concepts that are problematic in an infinite universe. If the universe is in fact inside of a black hole of a different universe - some of these problems go away as the Hubble volume would be the finite boundary of the universe.
Are we in an infinite universe? I thought the current thinking was that it was finite but unbounded; that is, that it curved back on itself.
My money’s on non-infinite, just because I’m not sure infinity is a well-defined concept outside of mathematics. We’ve certainly never observed any other infinite phenomena.
Re: Can rotation solve the Hubble Puzzle?
#13Earlier quoted context omitted.
Rotation implies a great many observables and properties of the universe. There would be a cosmic axis, which implies a cosmic center and a cosmic north. Both concepts that are problematic in an infinite universe. If the universe is in fact inside of a black hole of a different universe - some of these problems go away as the Hubble volume would be the finite boundary of the universe.
Are we in an infinite universe? I thought the current thinking was that it was finite but unbounded; that is, that it curved back on itself.
Re: Can rotation solve the Hubble Puzzle?
#14Earlier quoted context omitted.
Are we in an infinite universe? I thought the current thinking was that it was finite but unbounded; that is, that it curved back on itself.
That’s one speculative possibility, but we don’t know. It could be infinite, or finite with a boundary just out of sight (beyond the edge of the observable universe), or some other more exotic geometry. There’s no solid evidence either way. My money’s on non-infinite, just because I’m not sure infinity is a well-defined concept outside of mathematics. We’ve certainly never observed any other infinite phenomena.
Infinity extends both upwards and downwards in scale.
Re: Can rotation solve the Hubble Puzzle?
#15Earlier quoted context omitted.
Are we in an infinite universe? I thought the current thinking was that it was finite but unbounded; that is, that it curved back on itself.
That’s one speculative possibility, but we don’t know. It could be infinite, or finite with a boundary just out of sight (beyond the edge of the observable universe), or some other more exotic geometry. There’s no solid evidence either way. My money’s on non-infinite, just because I’m not sure infinity is a well-defined concept outside of mathematics. We’ve certainly never observed any other infinite phenomena.
Re: Can rotation solve the Hubble Puzzle?
#16Earlier quoted context omitted.
That’s one speculative possibility, but we don’t know. It could be infinite, or finite with a boundary just out of sight (beyond the edge of the observable universe), or some other more exotic geometry. There’s no solid evidence either way. My money’s on non-infinite, just because I’m not sure infinity is a well-defined concept outside of mathematics. We’ve certainly never observed any other infinite phenomena.
Except plenty exist - every electron is an infinite phenomena. They're point-like particles made up of no constituents. You can get infinitely close to an electron and still get closer to it. Infinity extends both upwards and downwards in scale.
Re: Can rotation solve the Hubble Puzzle?
#17Earlier quoted context omitted.
That’s one speculative possibility, but we don’t know. It could be infinite, or finite with a boundary just out of sight (beyond the edge of the observable universe), or some other more exotic geometry. There’s no solid evidence either way. My money’s on non-infinite, just because I’m not sure infinity is a well-defined concept outside of mathematics. We’ve certainly never observed any other infinite phenomena.
It's only been a finite time since the universe was very small, so unless it's expanding infinitely fast, I don't see how it could be infinite
Anyway, we don't actually know that, since we do not have a time machine. The theory that the universe used to be much smaller is something we infer based on the snapshot we see today, just like we infer rotation based on the snapshot we see today. Either one could yet be proven wrong.
Re: Can rotation solve the Hubble Puzzle?
#18I seem to recall there was an article posted here recently which noted that galaxies have a preferred direction of rotation. Seems like the universe itself rotating could be a reason why?
Re: Can rotation solve the Hubble Puzzle?
#19Earlier quoted context omitted.
Except plenty exist - every electron is an infinite phenomena. They're point-like particles made up of no constituents. You can get infinitely close to an electron and still get closer to it. Infinity extends both upwards and downwards in scale.
Below the Planck distance, "closer" ceases to be a meaningful concept. Similarly, distances larger than the size of the observable universe may also be meaningless.
Re: Can rotation solve the Hubble Puzzle?
#20Earlier quoted context omitted.
Except plenty exist - every electron is an infinite phenomena. They're point-like particles made up of no constituents. You can get infinitely close to an electron and still get closer to it. Infinity extends both upwards and downwards in scale.
Below the Planck distance, "closer" ceases to be a meaningful concept. Similarly, distances larger than the size of the observable universe may also be meaningless.