When a black hole dies, will it cause the surrounding space time to collapse?

Updated on science 2024-04-28
8 answers
  1. Anonymous users2024-02-08

    The death of a black hole can indeed cause the phenomenon of "space-time collapse". However, we have not found this scene so far. When it comes to the most terrifying celestial bodies in the universe, of course, the terrifying existence of "black holes".

    How scary are black holes? Its gravitational pull, almost infinite;

    Neither neutron stars nor photons can escape the shackles of black holes. Black holes, like a giant in the universe, run rampant and unstoppable.

    However, black holes are not "eternal" either. It also has its own cycles and "spheres of influence". The sphere of influence of a black hole, known as the Schwarzschild radius, is generally determined by the mass of the black hole itself. The lifetime of a black hole should be analyzed from its **.

    In general, a black hole represents a crater in the dimension. Its interior is a "Schwarzschild singularity", with infinite mass and density. It is also the source of its gravitational pull.

    Gravity, in general relativity, actually stands for "space-time curvature", which is a kind of bending of time and space.

    According to NASA's research, black holes will have a "big explosion" from inside the singularity before they are dying. Of course, this will cause violent fluctuations in space-time, and it is also possible that some large black holes will cause the phenomenon of "space-time collapse".

    Even in 2018, researchers from the Australian Astronomical Directorate Bureau detected "gravitational waves" 800,000 light-years away. It is speculated that it is most likely caused by the explosion of a black hole.

    As for what will become of the black hole after its death, there has always been a lot of discussion in the market, and there are different opinions. Some people say that space-time collapses and expands rapidly, turning black holes into "white holes". The core of the white hole is the legendary "wormhole".

    Through wormholes, we can travel through dimensions and go to other multiverses to achieve the magical operation of "interstellar" in the movie. However, it has not yet been widely accepted and is nothing more than a hypothesis.

  2. Anonymous users2024-02-07

    When a black hole dies, it does cause the surrounding space-time to collapse, because the black hole will swallow up the surrounding space-time, so this happens.

  3. Anonymous users2024-02-06

    There is a certain probability that it will, but there is no way for humans to understand it in detail. Because humans know very little about black holes.

  4. Anonymous users2024-02-05

    Yes. Because black holes are constantly absorbing matter from the outside world, and their interiors are filled with infinite energy, the collapse of space-time when a black hole dies.

  5. Anonymous users2024-02-04

    Through prolonged ejection, the black hole will eventually become nothing, disappear, and die. Black holes will glow brightly and shrink in size.

  6. Anonymous users2024-02-03

    A black hole is a place in space where the gravitational pull is so great that even light can't shoot out. The gravitational pull is so strong because matter is squeezed into a very small space.

    We understand black holes through Einstein's theory of general relativity. This theory tells us that if enough matter is compressed into a small enough volume, then it forms a black hole.

    For example, if you compress the Earth to about the size of a soybean, it becomes a black hole the size of a soybean. If we compress you to the size of an atom, you are an atom-sized black hole.

    This is a diagram of a supermassive black hole, weighing 21 million suns, in the middle of the superdense galaxy M60-UCD1. Since no light can escape from the black hole, it appears only as a silhouette against the background of the starry sky.

    According to the general theory of relativity, black holes are invincible. Once they are formed, anything that falls into them will be trapped forever, and that's how the story ends.

    But back in the 1970s, astrophysicist Stephen Hawking discovered something extraordinary. Through the interaction between the black hole boundary and the quantum field that makes up reality, the black hole can slowly evaporate.

    So they're not exactly black. They do release a little bit of energy, which also causes them to lose mass. But not much, because a typical black hole will only emit one particle per year.

    Over time, they shrink to nothing and then suddenly disappear in a flash of energy.

    A black hole that is several times more massive than the Sun takes about 10 100 years to finally evaporate through this process, a process known as Hawking radiation.

    Considering that the universe is now only 13.8 billion years old, the earth will probably not exist until the black hole disappears.

    In the distant future, after every star dies, after every planet disintegrates, after every galaxy tears itself apart, the only thing left in the universe is black holes. Eventually, the black hole will also disappear, leaving behind showers of subatomic particles floating aimlessly in the empty and inhospitable universe.

  7. Anonymous users2024-02-02

    Nothing in the world is eternal, we will also experience birth, old age, sickness and death, disappear in the world, and nothing in the universe is eternal, as the most mysterious black hole in the universe can not escape the catastrophe, so the following constellation knowledge will reveal how the black hole died? What does a black hole end up in?

    How black holes die.

    In Hawking's theory of black hole evaporation, it is mentioned that black holes will also emit matter outward, and due to the divergence of matter, the black hole will eventually "die". In general, the greater the mass of a black hole, the shorter its lifetime.

    The larger the black hole, the slower it evaporates, and vice versa, the faster it evaporates. A 100-ton black hole will disappear without a trace in 1 million years, and a 10-billion-ton black hole will disappear without a trace in 10 to the 60th power. In a black hole, all matter breaks down neutrinos and tiny particles and ejects them through the poles of the black hole.

    Through prolonged ejection, the black hole will eventually become nothing, disappear, and die.

    Black holes will shine brightly, shrink in size, and even **. When British physicist Stephen Hawking made this prediction in 1974, the entire scientific community was shaken. Black holes were once thought to be the ultimate precipitation of the universe

    There is nothing to escape from black holes, they devour gas and stars, and their mass increases, so the size of the hole only increases.

    Black holes don't stand still all the time. Quantum effects suggest that black holes are not strictly black, but are emitting a faint light all the time through thermal radiation. A black hole as massive as the Sun, whose temperature is pitifully low, is only minus 10 billionths of a degree of absolute temperature, and when the black hole collides with other objects or other black holes, there is still some activity, and the rotation of the black hole gradually slows down as the black hole's spin is consumed.

    However, the most drastic changes occur when the temperature of space drops below the temperature of a black hole.

    What does a black hole end up in?

    A black hole that is hotter than its surroundings loses heat and therefore energy. The loss of energy will cause the black hole to contract. The contraction of the black hole will increase the temperature slightly, which will accelerate the energy radiation.

    As a result, the black hole begins an uncontrollable evaporation process. For an extremely long time, the rate of contraction of black holes has been climbing upward, and finally, after about 10e108 years, those black holes that were originally heavier than many galaxies combined will shrink completely without a trace.

  8. Anonymous users2024-02-01

    Summary. Hello, dear, for your question, my analysis is that the black hole will indeed die eventually, but it will take a long time. And we don't know exactly what will happen in the end, because we have never seen it with our own eyes.

    Hello, dear, for your question, my analysis is that the black hole will indeed die eventually, but it will take a long time. And we don't know exactly what will happen in the end, because we have never seen it with our own eyes.

    Are matter, energy, and space all eternal?

    The world is full of wonders.

    Matter, time, and space all exist eternally, they all follow the law of the immortality of matter, they are interdependent, interdependent, and mutually unified, and there is no antagonistic relationship, and there is no antagonistic relationship, there is no mutual unity relationship between them, and there is no contradiction or self-contradiction between them, and they form the universe on three legs. Lenin once said: Existence is matter.

    Broadly speaking, time and space also exist and belong to matter, the world is completely made of matter, the world is material, and the world is unified with matter.

    Does entropy only reduce the available energy?

    The entropy increases, and the total energy of the system remains the same, but the usable part of it decreases. Statistical definition: Entropy measures the disorder of a system. The higher the entropy of a system, the more difficult it is to accurately describe its microscopic state.

    Will the available energy eventually disappear completely?

    Won't go away. Is the universe a big black hole?

    In the "black hole universe model", our universe is a giant black hole, but the current black hole universe model is only a "hypothesis".

    Among the many cosmological views, there is one that the universe itself is a black hole. The evidence is that if all the matter in the observable universe is compressed into a black hole, then what is the Schwarzschild radius of this black hole, which is approximately equal to the radius of the observable universe, and in this sense, the observable universe itself is a black hole. And in such a theory, the expansion of the universe does not need to be explained with the help of dark energy, because the black hole accretes matter, and the volume naturally increases, thus showing expansion.

    In addition, the cosmic microwave background radiation has also been explained as a decrease in temperature caused by the continuous expansion of the black hole, up to 3 K.

    Is there something controlling the universe?

    There is no control power, but as we continue to study and explore, we find a fact that we have to face, that is, everything in the universe is too regular. Whether it is the birth and evolution of the universe, the evolution of matter, or the movement of celestial bodies, they are all very regular.

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