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geodesic incompleteness definitionwhat happens to things that go into a black hole

The other effects are much smaller.Now, what would happen if the Sun became a black hole? And misunderstanding of this concept is one of my pet peeves.But that aside, please explain why you think it’s incorrect and I’ll try to explain.There is a very basic theorem which states that a spherically symmetric mass has the same effect as a point mass of the same mass at the center of the sphere.

For example, a trajectory through space that collides with the event horizon of a black hole will terminate in finite time, as the observer is spaghettified and sucked into the singularity. And the reason why so few get it correct.I can’t blame you, Ted, for not getting the answer right since you obviously have very little understanding of the more advanced modern physics. The main one is gravitational tugs from other planets, especially Jupiter. It has more than three dimensions and some of the higher dimension are ones in which the energy-momentum has its manifold stretching effect.Look at it this way: if you (ignoring being ionized etc.)

The Penrose–Hawking singularity theorems (after Roger Penrose and Stephen Hawking) are a set of results in general relativity that attempt to answer the question of when gravitation produces singularities. When a supermassive star, much much larger than our sun dies. In general relativity, a geodesic generalizes the notion of a "straight line" to curved spacetime.Importantly, the world line of a particle free from all external, non-gravitational forces is a particular type of geodesic. The

Usually because of the limit of ability to draw the acretion disc properly.“The physics in this comment is, for the record, incorrect, as nearly a century’s worth of general relativity textbooks will confirm.”Unless the field equations for GR have changed significantly, a century’s worth of textbooks would actually yield exactly the result I’m talking about.You could, with some fairly contrived use of language, argue that the Sun has become farther away from the Earth, but I don’t think there’s any reasonable sense you could say that the Earth has “drifted away.” The Earth’s orbit is precisely the same geodesic, with the same circumference, length of year, etc. One thing about the event horizon: once matter is inside it, that matter will fall to the center. With such st… Learn more about hiring developers or posting ads with us you absolutely can. Those presumably slow the Earth down in its orbit. One cannot agree to disagree if one point of view contradicts a theorem.

This is one of the very few situations in general relativity in which the equations can be solved exactly.Do you agree that if the sun suddenly decreased in mass, the earth would spiral away?In another context, Ted said that one can’t argue with a theorem. It’s just a long long fall.This fall is into a higher dimension.

Density becomes infinite.You can't say "Plank length" because, remember, we can't combine GR and QM, we just don't know how. Is it just the warping of space time that makes it this way?A singularity is a point in space-time where the current physical models we use to describe forces and how particles behave break down i.e.

We only know of their existence through mathematical equations, as opposed to direct experimental discovery. Paths that carry on indefinitely are called complete geodesics, and those that stop abruptly, incomplete geodesics.Geodesics can fail to be complete for a variety of reasons. Specifically, it would move to a smaller orbit. I now wonder if the black hole that was our Sun would evaporate, losing gravitational effects on the Earth, and the Earth would end up drifting away from where our Sun use to be.First, let me say that all of the effects you mention are It is true that, if the mass of the Sun (or black hole, whichever is at the center of the Solar System) goes up, then the Earth’s orbit will be affected.

star's mass compacted into the size of the plank length or something Is it worth clarifying that the density of the black hole is not infinite from the event horizon?Very informative answer for people like me who are not experts in GR!

IThere’s also the fact that the Earth is being bombarded by meteors. Gravity is now propagated over a greater distance and as such pulls less.I’ve been working on a GR simulator for awhile now. Yes, a black hole will push it farther down than the Sun will and, due to the stretching, the centre will be farther away. to a unified field theory, such as the In mathematics, there is a deep connection between the curvature of a Starting with a small sphere and sending out parallel geodesics from the boundary, assuming that the manifold has a Roger Penrose argued analogously in relativity.

If geodesic paths through deep space fail to terminate in this way, it could indicate the universe is infinite in expanse, or that it is cyclic like the surface of the Earth, where travelling in one direction for long enough leaves you back where you started.Properties like having a black hole, or an edge over which an observer could fall are topological properties of the universe; That is, they describe what space “looks like” on a large scale. The increased gravity comes from the increased overall mass of the resulting black hole, as simple as that.Spacelike geodesic incompleteness would be another way to have a singularity not covered by the second criterion.

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