Nobody knows, but most probably the enormous gravitation of the black hole(which traps light in its core, therefore it is black from outside) breaks down every material to its very elemental pieces
Yes - The dense nature of a black hole rearranges and transforms matter into energy. In fact, even before matter crosses the threshold of the black hole's event horizon, the accretion disk of a black hole provides for a formidal barrier. Despite its invisible interior, the presence of a black hole can be inferred through its interaction with other matter and with electromagnetic radiation such as light. Matter falling onto a black hole can form an accretion disk heated by friction, forming some of the brightest objects in the universe.
The Black Hole will explode because the gravity of a Black Hole is formed by the matter that is in the process of going intothe Black Hole, and not that matter that has already gone inside.
Yes, light is the only thing that can escape a black hole's gravitational pull. Nothing with mass, including matter and other forms of energy, can escape a black hole once it crosses its event horizon.
An active black hole is a black hole that it by all manner of terms is "feeding". That is, it is accreting matter, or sucking matter into itself. Most black holes are dormant and don't show any signs of accreting matter.
A white hole is a theoretical region of spacetime that expels matter and energy, whereas a black hole is a region where matter and light cannot escape from. They are considered opposites due to their behavior, but white holes have not been observed in nature.
A black hole is not a true vacuum, as it contains matter and energy that we do not fully understand.
An accretion disk around a black hole plays a crucial role in the process of matter falling into the black hole and emitting energy. The disk is made up of gas and dust that spirals inward due to the black hole's gravitational pull. As the matter in the disk moves closer to the black hole, it heats up and emits energy in the form of X-rays and other high-energy radiation. This process of accretion and energy emission is what allows scientists to detect and study black holes, as the emitted radiation provides valuable information about the black hole's properties and behavior.
black holes swallow all energy and matter around them, including electricity
When a black hole spits something out, it is called a "black hole jet." This event happens when matter and energy are ejected from the black hole at high speeds, creating powerful jets of particles and radiation.
A black hole is a void in space-time where gravity is so strong that no matter or energy can escape the effects of its force.
Black holes are hidden behind an even horizon we do not know what happen in side them.
Yes, matter and energy can come out of a black hole through a process called Hawking radiation, which was proposed by physicist Stephen Hawking.
From the black hole itself? Nothing. No matter or energy can escape from a black hole. From the accretion disk AROUND the black hole, where matter is accelerated to light speed at the event horizon? All possible frequencies of electromagnetic radiation can be emitted from the accretion disk, but the typical "signature" of a black hole is mostly hard X-rays.
Yes - The dense nature of a black hole rearranges and transforms matter into energy. In fact, even before matter crosses the threshold of the black hole's event horizon, the accretion disk of a black hole provides for a formidal barrier. Despite its invisible interior, the presence of a black hole can be inferred through its interaction with other matter and with electromagnetic radiation such as light. Matter falling onto a black hole can form an accretion disk heated by friction, forming some of the brightest objects in the universe.
The Black Hole will explode because the gravity of a Black Hole is formed by the matter that is in the process of going intothe Black Hole, and not that matter that has already gone inside.
They're still called black holes. A black hole remains defined as a black hole as long as it absorb everything near them, both energy and matter, including gas.
The rotation is not related to the black hole's ability to attract matter. The attraction depends only on the black hole's mass.The rotation is not related to the black hole's ability to attract matter. The attraction depends only on the black hole's mass.The rotation is not related to the black hole's ability to attract matter. The attraction depends only on the black hole's mass.The rotation is not related to the black hole's ability to attract matter. The attraction depends only on the black hole's mass.