Among the smallest astronomical objects is the neutron star, which is smaller than Earth's Moon, but larger than some. Next would be our Moon, followed by the shrunken White dwarf. Normal stars would then follow, and a galaxy is the largest , being a collection of millions or billions of stars.
Neutron Star : as small as 20-24 km
Moons : for Earth, 3400 km in diameter
White Dwarf star : from about 5000 to 50000 km diameter
Galaxies : 2000 to 100000 light-years across
A white dwarf is much larger than a neutron star.
Both white dwarfs and neutron stars are extremely dense remnants of the collapsed cores of dead stars.
A neutron star is smaller, but has a greater mass. A typical white dwarf is about the size of a terrestrial planet. A typical neutron star is a few miles across.
"Dead star" is a term used to describe various astronomical phenomena related to dying stars, such as white dwarfs, neutron stars, or black holes. These occur as stars reach the end of their life cycle and can be found throughout the universe.
because of the great mass of the star, the gravity of it is very high. So after its death, it actually contracts so tightly that even protons and electrons combine to form neutron and thus results to a star called neutron star. If its previous mass is considerably low, then it could have become a white dwarf
No, the density of a neutron star is much higher than that of a white dwarf. Neutron stars are composed mostly of densely packed neutrons, while white dwarfs are made of electron-degenerate matter. Neutron stars are some of the densest objects in the universe.
A white dwarf is much larger than a neutron star.
There are white dwarfs in every galaxy.
White
Neutron stars and white dwarfs are both remnants of dead stars, but neutron stars are much denser and have stronger gravitational forces compared to white dwarfs. Both objects are composed mostly of degenerate matter, but neutron stars are made up of neutrons while white dwarfs are made up of electrons.
Answer is 1
Both white dwarfs and neutron stars are extremely dense remnants of the collapsed cores of dead stars.
A neutron star is smaller, but has a greater mass. A typical white dwarf is about the size of a terrestrial planet. A typical neutron star is a few miles across.
the color of most of the stars in our galaxy are white. They are concered white dwarfs
The remains of a high mass star could be a neutron star or a black hole, depending on the mass of the original star. Neutron stars are extremely dense and compact objects, while black holes are regions of spacetime where gravity is so strong that nothing, not even light, can escape.
No. A pulsar is a neutron star.
Dongsu Kyu has written: 'Neutron stars and white dwarfs in galactic halos?' -- subject(s): White dwarfs, Neutron stars