What would happen is a black hole was in the path of a gamma ray burst?

Answer 1

It could occur but nothing would happen.

The portion of the light spectrum with the highest energy associated with it is the gamma ray.

A black hole would simply eat up any gamma energy that reached it because of its immense gravity, which causes it to swallow up anything that gets caught at the event horizon—the part of a black hole beyond which all matter and light cannot escape.

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Answer 2

To add to the previously provided response, gamma radiation is still in the light spectrum, so its speed is actually not greater than the speed of light. As stated in the previous response, the black hole would simply absorb the radiation and nothing would happen. This radius is known as the Schwarzschild radius, and it denotes the area surrounding a black hole where practically everything is absorbed due to the powerful gravitational forces of the black hole. one of the characteristics of this radius is that the escape velocity is equal to the speed of light.

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Answer 3

If a black hole was in the path of a gamma ray burst, some photons would follow a curved path and some would be absorbed.

High energy photons, known as gamma rays, would have their trajectory altered if a black hole happened to be in the way of a gamma ray burst.

When there is no gravity, photons move in straight lines. The strong gravitational pull of a black hole causes spacetime to curve. When photons approach a black hole, they follow geodesics, which are straight lines in curved spacetime, and their paths bend around the black hole.

The energy of the photons would increase the mass of the black hole because any photons with a path that crosses its event horizon would fall into the black hole and be unable to escape its gravitational pull.

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Answer 4

The details would depend on the black hole's mass, the angle at which the gamma-ray burst intersects it, and the distance between them. If a black hole were in the path of a gamma-ray burst, it might absorb some of the energy and matter from the burst, changing its trajectory and emission characteristics.

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Answer from HIX Tutor

When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

When evaluating a one-sided limit, you need to be careful when a quantity is approaching zero since its sign is different depending on which way it is approaching zero from. Let us look at some examples.

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