Gravity is a force acting on masses. It doesn't escape, since it directly alters spacetime; it doesn't travel along it.
Your category is the answer, that thing is black hole
The gravity casued by the black hole is so strong that even light is sucked into it
Theoretically - yes. The gravity inside a black hole is so great that nothing - not even light can escape it.
A black hole is an object in space with such intense gravity that not even light can escape from it. When an object crosses the event horizon, the point of no return around a black hole, it gets pulled in by the strong gravitational forces, making it impossible for anything, including light, to escape.
A black hole has so much mass that light can't escape from it once it passes the event horizon. It can still escape if it hasn't passed the evnt horizon.
There is no way to escape from a black hole because it's gravity is infinite.
In order to escape the gravity of a black hole, an object would have to travel faster than the speed of light - something that is impossible.
Gravity is the only reason a black hole pulls things in. Nothing can escape a black hole, so gravity is its only way of affecting the outside world.
Your category is the answer, that thing is black hole
A black hole
Gravity
A black hole.
The gravity casued by the black hole is so strong that even light is sucked into it
A black hole. It is a region of spacetime where gravity is so intense that nothing, not even light, can escape its pull once it crosses the event horizon.
Theoretically - yes. The gravity inside a black hole is so great that nothing - not even light can escape it.
A black hole is an object in space with such intense gravity that not even light can escape from it. When an object crosses the event horizon, the point of no return around a black hole, it gets pulled in by the strong gravitational forces, making it impossible for anything, including light, to escape.
A black hole is an object with such strong gravity that not even light can escape its pull. This intense gravity is due to its extreme density, formed when a massive star collapses in on itself.