As far as I know, there is no specific word for the growth of a black hole. I am assuming you're asking about the addition of mass rather than the birth of a black hole. The word used would be "accretion." Accreting means growing.via the addition of mass.
black hole got it's name because when look at a black hole, you only see black. also if you drop an item in the black hole the item is gone because there is a hole in there. so that's how black hole get's its name
they are black and their bottomless!
noone can go black hole as the name suggest it is a hole which is black so how any one can go ad com back...
A quasar is a disk of superheated material falling into a supermassive black hole. The radiation from a quasar is so intense that it actually pushes matter away from the black hole, preventing it from falling in. This process limits how fast a black hole can grow.
Supermassive Black Hole-Muse Supermassive Black Hole-Muse
As far as we know, most, if not all galaxies have a massive black hole at their centre.
When an atom is smashed in a black hole, its particles are torn apart due to the extreme gravitational forces. The subatomic particles are then absorbed into the black hole, adding to its mass and energy. The energy released during this process can contribute to the black hole's growth and power its intense gravitational pull.
Pick anyone and there will be black hole in it.
A black hole is an objects with such strong gravity that not even light can escape them. If observed up close a black hole would appear as a completely black sphere.
Yeah magic Johnson was said to have conquered the black hole. That's how he got 'magic' in his name. 2012 Olympics.
As black hole do not zip about as we imagine of alien spacecraft, I imagine the intent of this question is how fast can a black hole rotate. The expectation is consistent with the speed of light. Noting that the speed of a black hole's rotation is faster with respect to its mass, then the mass of a black hole is limited via this maximum speed of rotation. [Reference - Constraints on Black Hole Growth, Quasar Lifetimes, and Eddington Ratio Distributions from the SDSS Broad-line Quasar Black Hole Mass Function; The Astrophysical Journal, Volume 719, Issue 2, pp. 1315-1334 (2010).]
A Schwarzschild black hole is a non-rotating black hole. The Kerr black hole is a rotating black hole. Since the latter is more complicated to describe, it was developed much later.A Schwarzschild black hole is a non-rotating black hole. The Kerr black hole is a rotating black hole. Since the latter is more complicated to describe, it was developed much later.A Schwarzschild black hole is a non-rotating black hole. The Kerr black hole is a rotating black hole. Since the latter is more complicated to describe, it was developed much later.A Schwarzschild black hole is a non-rotating black hole. The Kerr black hole is a rotating black hole. Since the latter is more complicated to describe, it was developed much later.