Does black hole's gravity really travel out of it's own Event Horizon?

In summary, there is a doubt raised by the fact that within the Event horizon of a black hole, no influence can travel from inside to outside at or below the speed of light, while gravitational influence only travels at or below the speed of light. This raises the question of how the gravity of a mass inside a black hole can influence a particle outside the Event horizon if gravity cannot cross at the speed of light. However, in a static situation, the gravitational field does not "travel" but rather "is", and the speed of gravity refers to the speed of changes in the gravitational field. This is similar to the speed of changes in the electric and magnetic fields in electrodynamics.
  • #1
srikkanth_kn
12
0
To Physicists/Administrators/Moderators:

The following two facts raises a doubt
1) "No influence can travel from inside the Event horizon of a black
hole to the outside of it AT or below the speed of LIGHT (V<=C)."
2) "Gravitational influence travels AT (or below?) the speed of light only".


The question is how the GRAVITY itself of a mass say, 'X' -which is located INSIDE the Event horizon of a Super Massive Black hole can influence a particle say, 'Y' which is located OUTSIDE the Event horizon IF at all gravity CAN'T cross the Event horizon at V=C?
Eventually if 'X' so can't influence 'Y' then this Black holes can't GROW anyway by swallowing any such 'X' (it looks like a paradox as gravity is proportional to matter inside the black hole). Thanks.
(I'm a new comer looking for some answers.Please help)
 
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  • #3
In a static situation, the gravitational field (better, the curvature of spacetime) doesn't "travel". It simply "is".

When we talk about the "speed of gravity" or the "speed of gravitational influences," we are really talking about the speed of changes in the gravitational field.

To make an analogy with electrodynamics, a stationary charge has a static, unchanging electric field associated with it. If you start to shake that charge back and forth, the electric field (and magnetic field!) at each point starts to change, and those changes propagate outwards from the charge at speed c.
 

1. What is the Event Horizon of a black hole?

The Event Horizon of a black hole is the point of no return, where the gravitational pull is so strong that not even light can escape from it. It is the boundary between the black hole and the rest of the universe.

2. Does the gravity of a black hole really travel out of its Event Horizon?

Yes, the gravity of a black hole does travel out of its Event Horizon. This is because gravity is a fundamental force that affects everything around it, regardless of the object's location.

3. How does the gravity of a black hole affect objects outside of its Event Horizon?

The gravity of a black hole affects objects outside of its Event Horizon by pulling them towards it. This is why objects that are close to a black hole will experience a stronger gravitational pull than objects that are further away from it.

4. Can anything escape the gravity of a black hole's Event Horizon?

No, nothing can escape the gravity of a black hole's Event Horizon. This is because the escape velocity (the speed needed to escape an object's gravitational pull) at the Event Horizon is greater than the speed of light, which is the fastest speed possible.

5. How does the gravity of a black hole's Event Horizon affect time and space?

The gravity of a black hole's Event Horizon affects time and space by warping them. This is due to the extreme gravitational pull, which causes time and space to stretch and bend around the black hole. This effect is known as gravitational time dilation.

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