Yes, a solar nebula is much larger than a neutron star. In terms of objects in space, neutron stars are tiny; only a few miles across. A stellar nebula such as the one that formed the sun is light years across.
Yes, the first neutron star was observed in a supernova remnant. The object, named PSR B1919+21, was discovered in 1967 in the Crab Nebula, the remnant of a supernova that exploded in the year 1054 AD.
A one solar mass white dwarf typically has a diameter of about 10,000 kilometers, while a two solar mass neutron star has a diameter of approximately 20 kilometers. Despite having a greater mass, the neutron star is significantly smaller in size due to its extreme density and the effects of neutron degeneracy pressure. In comparison, the white dwarf, being less dense, has a much larger diameter. Thus, the white dwarf is vastly larger in size than the neutron star, despite its lower mass.
A white dwarf is much larger than a neutron star.
No. A neutron star is quite small, generally only a few miles across. A nebula is light years across.
A subgiant star is larger than a neutron star. Neutron stars are incredibly dense and compact remnants of massive stars, while subgiant stars are in a transitional phase between main sequence and red giant stages, typically larger and more diffuse than neutron stars.
Yes, a nebula is far larger than a neutron star. A neutron star is a few miles across. A nebula is light years across.
Nebula, The solar system, The sun, Jupiter, Earth, Mars, The moon, Pluto, Neutron Star
From largest to smallest: Nebula, Solar System, Sun, Jupiter, Earth, Mars, Moon, Pluto, neutron star.
No, a neutron star can't become a nebula. A neutron star is not made of atomic matter, has less mass than a nebula, and has no mechanism by which to expand.
Yes, the first neutron star was observed in a supernova remnant. The object, named PSR B1919+21, was discovered in 1967 in the Crab Nebula, the remnant of a supernova that exploded in the year 1054 AD.
A nebula galaxy does not exist.
There is no such thing as a nebula star.
Universe, galaxy,nebula,solar system, star, planet
No, its a molecular cloud.
After a planetary nebula the oxygen in the middle will make it turn into a blackhole or neutron star.
A one solar mass white dwarf typically has a diameter of about 10,000 kilometers, while a two solar mass neutron star has a diameter of approximately 20 kilometers. Despite having a greater mass, the neutron star is significantly smaller in size due to its extreme density and the effects of neutron degeneracy pressure. In comparison, the white dwarf, being less dense, has a much larger diameter. Thus, the white dwarf is vastly larger in size than the neutron star, despite its lower mass.
A Nebula is a gas of dust and minerals that surrounds a star. Also, a nebula is a birthplace of a star, where a star and sometimes a solar system is formed after a huge explosions