A brown/black dwarf.
A white dwarf. Basically, a red dwarf just gets cooler and cooler until it has consumed all of its hydrogen. Then it becomes a white dwarf star. It will then dissipate any remaining heat into space and eventually become a "black dwarf".
It gets bigger and blows up and then it becomes a white dwarf
As the sun ages, it will expand into a red giant, engulfing the inner planets of our solar system, including Earth. Eventually, it will shed its outer layers and become a planetary nebula, leaving behind a dense core called a white dwarf. The white dwarf will gradually cool over billions of years, eventually fading into a black dwarf.
The basic requisite is that enough mass gets together. This can happen with a large star if, after it explodes as a supernova, enough residual mass remains to go beyond the limit of a white dwarf, and of a neutron star. Yet there is also another possibility: a star may end up first as a white dwarf or as a neutron star, but it may eventually receive enough infalling matter to become a black hole.The basic requisite is that enough mass gets together. This can happen with a large star if, after it explodes as a supernova, enough residual mass remains to go beyond the limit of a white dwarf, and of a neutron star. Yet there is also another possibility: a star may end up first as a white dwarf or as a neutron star, but it may eventually receive enough infalling matter to become a black hole.The basic requisite is that enough mass gets together. This can happen with a large star if, after it explodes as a supernova, enough residual mass remains to go beyond the limit of a white dwarf, and of a neutron star. Yet there is also another possibility: a star may end up first as a white dwarf or as a neutron star, but it may eventually receive enough infalling matter to become a black hole.The basic requisite is that enough mass gets together. This can happen with a large star if, after it explodes as a supernova, enough residual mass remains to go beyond the limit of a white dwarf, and of a neutron star. Yet there is also another possibility: a star may end up first as a white dwarf or as a neutron star, but it may eventually receive enough infalling matter to become a black hole.
Because the water gets colder isn't that obvious!
because as it gets deeper it gets colder
No, it gets hotter.
No.
Towel
Yes, a dwarf planet can become a moon if it is captured by the gravitational field of a larger planet. This process can happen when a dwarf planet gets close enough to a planet and is pulled in by its gravity. Once captured, the dwarf planet would then orbit the larger planet as one of its moons.
Yes, ozone layer gets colder as you move forward. This is the sign of ozone layer in atmosphere.
It gets Colder. SK(APEX)