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The mass of a typical neutron star is believed to be between one and three times the mass of the sun. However, in size they would be much smaller than the earth, something on the order of around ten kilometers in diameter.
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.
The relative mass of a neutron compared with a proton is one.
The neutron has no charge, therefore the charge to mass ratio for the neutron is zero.
A neutron has a zero electric charge and has a mass slightly greater than that of a proton. A proton and an electron can be fused to create a neutron, and a neutron decays into a proton and an electron (and a bit of something else). More details about the neutron can be had by using the link to the Wikipedia article on this "building block" of the atom.
The electron is the smallest having about 1/1836th the mass of a proton or neutron, which means that basically an electron has no mass. The neutron and proton weigh the same both having a mass of 1.
The mass of a typical neutron star is believed to be between one and three times the mass of the sun. However, in size they would be much smaller than the earth, something on the order of around ten kilometers in diameter.
Neutron has mass nearly 1,840 times the mass of the electron.
The mass of neutron is similar to the mass of proton, but not equal !
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.
The relative mass of a neutron compared with a proton is one.
the neutral or no charge particle of an atom:it is located in the nucleus;has the same mass as the proton.
The neutron has no charge, therefore the charge to mass ratio for the neutron is zero.
A neutron has a zero electric charge and has a mass slightly greater than that of a proton. A proton and an electron can be fused to create a neutron, and a neutron decays into a proton and an electron (and a bit of something else). More details about the neutron can be had by using the link to the Wikipedia article on this "building block" of the atom.
Mass no-the no of proton=no of neutron
The electron has only a small fraction of the mass of the neutron. The neutron is about 1837 times as massive as the electron. The proton is just a tiny bit less massive as the neutron, so the proton and neutron are said to have about the same amount of mass.
The electron has only a small fraction of the mass of the neutron. The neutron is about 1837 times as massive as the electron. The proton is just a tiny bit less massive as the neutron, so the proton and neutron are said to have about the same amount of mass.