Does Light Mass Increase a Black Hole?

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PerenialQuest
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I'm just curious, when light enters a black hole, does the black hole gain a little bit of mass? We think of photons as massless particles, but they do have energy, and energy has a mass equivalent, e=mc2 Would the mass gained perhaps be, = / c2 ?
 
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It's better to realize that black holes don't just have mass, they have energy in all forms (mass, e/m field energy, angular momentum). So in reality, you could have a bunch of mass that barely doesn't have enough mass to form a black hole, bombard it with a high powered light source, and it will collapse into a black hole because energy, not just mass, gravitates.
 
Pengwuino said:
It's better to realize that black holes don't just have mass, they have energy in all forms (mass, e/m field energy, angular momentum). So in reality, you could have a bunch of mass that barely doesn't have enough mass to form a black hole, bombard it with a high powered light source, and it will collapse into a black hole because energy, not just mass, gravitates.

Don't black hole have mass and spin only?
 
Aaronvan said:
Don't black hole have mass and spin only?

They also have charge.
 
Pengwuino said:
It's better to realize that black holes don't just have mass, they have energy in all forms (mass, e/m field energy, angular momentum). So in reality, you could have a bunch of mass that barely doesn't have enough mass to form a black hole, bombard it with a high powered light source, and it will collapse into a black hole because energy, not just mass, gravitates.
Generally black holes are of how much mass?
 
PerenialQuest said:
I'm just curious, when light enters a black hole, does the black hole gain a little bit of mass? We think of photons as massless particles, but they do have energy, and energy has a mass equivalent, e=mc2 Would the mass gained perhaps be, = / c2 ?

I don't think you got an answer to your question. The answer is yes, if a photon of frequency nu falls into a black hole, the black hole gains an amount of mass equal to h*nu/c^2.
 
kenrocks said:
Generally black holes are of how much mass?

Black holes that we know about (or think we know about) range in mass from a few solar masses to a few billion solar masses.
 
Pengwuino said:
They also have charge.

Ah yes, spin, mass and charge.
 
phyzguy said:
Black holes that we know about (or think we know about) range in mass from a few solar masses to a few billion solar masses.

With a large gap in between a few tens of solar masses (the most massive stellar balck holes) and a few tens of thousands of solar masses (the lowest observed masses for black holes in the center of galaxies). Although some people have evidence for the so-called intermediate mass black holes ( roughly 100-10.000 solar masses), the evidence is far from compelling.