Honey, UY Scuti ain't got time for games. It's a red supergiant star now, but eventually, it's gonna go POOF and become a spectacular supernova. Might end up as a black hole if it's massive enough, but who really knows? Space is full of surprises, darling.
Either a giant or a super giant. Giants will eventually collapse on its core and have a little white dwarf left behind, but they will have the same mass and gravity as the old star. Supergiants will collapse but in an explosion, supernova, and they will either become a nuetron star or a black hole.
UY Scuti is a supergiant star, while a black hole is a region in space where gravity is so strong that nothing, not even light, can escape. UY Scuti is much larger in size compared to a black hole. In terms of composition, UY Scuti is made up of mostly hydrogen and helium, while a black hole is formed from the collapse of a massive star. In terms of behavior, UY Scuti undergoes nuclear fusion to produce energy, while a black hole does not emit any light or energy and instead pulls in surrounding matter with its strong gravitational pull.
It can either become a neutron star or a black hole. If the star is between 8 and 15 solar masses, it will become an incredibly dense neutron star. If it is more than 15 solar masses, it will collapse and become an even denser black hole.
The sun won't become a black hole because it doesn't have enough mass to collapse under its own gravity. Instead, it will eventually expand into a red giant and then shed its outer layers to become a white dwarf.
The big bang theory is the explosion that started the universe. Where as the big crunch is the theory where the universe will eventually contract and become increasingly clumped and eventaully all mater would collapse into black holes which would then coalesce producing a unified black hole or Big Crunch singularity.
Yes, massive blue stars can eventually collapse and form black holes at the end of their lives. When a blue star exhausts its nuclear fuel, it undergoes a supernova explosion and if the remaining core is massive enough, it can collapse into a black hole due to gravitational forces.
The sun should not become a black hole. It does not have sufficient mass to undergo the necessary collapse.
A black dwarf.
it wont.
Earth will not turn into a black hole due to its mass being insufficient for it to collapse into that state. Earth will eventually be engulfed by the Sun as it expands into a red giant in about 5 billion years, but it will not become a black hole.
When they run out of fuel they collapse and become black holes.
Either a giant or a super giant. Giants will eventually collapse on its core and have a little white dwarf left behind, but they will have the same mass and gravity as the old star. Supergiants will collapse but in an explosion, supernova, and they will either become a nuetron star or a black hole.
Swoon means to faint, or lose consciousness. Other synonyms of the word swoon include pass out, black out, feel lightheaded, collapse, and become unconscious.
UY Scuti is a supergiant star, while a black hole is a region in space where gravity is so strong that nothing, not even light, can escape. UY Scuti is much larger in size compared to a black hole. In terms of composition, UY Scuti is made up of mostly hydrogen and helium, while a black hole is formed from the collapse of a massive star. In terms of behavior, UY Scuti undergoes nuclear fusion to produce energy, while a black hole does not emit any light or energy and instead pulls in surrounding matter with its strong gravitational pull.
A higher-mass star will turn into a supergiant, then a supernova. Then, it will collapse and shed it's outer layer and leave behind a white dwarf. However, the star may collapse even further and become a black hole.
It stays where it is. It will eventually become a black dwarf.
It can either become a neutron star or a black hole. If the star is between 8 and 15 solar masses, it will become an incredibly dense neutron star. If it is more than 15 solar masses, it will collapse and become an even denser black hole.