they both have the same element. which is hydrogen and helium.
a nebula is cloud of particles which forms into a star.
A nebula may condense and ignite to become a star, conversely a star may explode and form a nebula.
The Crab Nebula is primarily composed of gas and dust, with a significant amount of hydrogen, helium, and heavier elements like carbon, oxygen, and nitrogen. It also contains a pulsar at its center, which is a highly magnetized, rotating neutron star. The nebula is the remnant of a supernova explosion, resulting in the dispersal of elements synthesized during the star's life and explosion. This mixture of materials contributes to the nebula's complex structure and vibrant colors observed in various wavelengths of light.
it is not the it is a stellar nebula considering that there are multiple stellar nebulas in the universe. what a steller nebula is though is dust and such maing a nebula then when the nebula is strong enough to make a star is creates a prostar, then it is either a massive star or a non massive star. soon they will either turn into a super giant or a red giant. then either the star will explode or simply poof then either it is a white dwarf a neutron star or a black hole. the end
A White Dwarf Star remains.
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
A star like our sun will shed a planetary nebula after its 'death'
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.
No, Arcturus is a red giant star, not a nebula.
Yes, a nebula is far larger than a neutron star. A neutron star is a few miles across. A nebula is light years across.
A star does not "stay" in a nebula; rather, it forms within a nebula. A nebula is a vast cloud of gas and dust where star formation occurs, and the process can take millions of years. Once a star forms, it will eventually evolve and leave the nebula, transitioning into different stages of its lifecycle, such as a main-sequence star, red giant, or supernova, depending on its mass. Thus, a star is only associated with a nebula during the initial stages of its formation.
protostar or nebula