1 cubic centimeter of neutron star stuff would weigh as much as 1000 aircraft carriers
1,100,000,000,000 kilograms = 1.21254244 × 109 short tons
A neutron star has slightly more mass than a white dwarf. This results in higher gravitational attraction. As a result, in a white dwarf, the star's mass (roughly the mass of the Sun - may vary in different white dwarves) has a diameter of a few thousand kilometers, and a density of a few tonnes per cubic centimeter. The neutron star, on the other hand, has a diameter of only 20-30 kilometers, and a density of millions of tonnes per cubic centimeter. For comparison, water has a density of 1 gram per cubic centimeter, other substances around us have similar densities; so the density of a white dwarf is millions of times the density of water, while a neutron star has billions of times the density of water.
Judy neutron
A neutron does not have a charge -- its neutral
The neutron. There are others, but the neutron is the best-known particle that is electrically neutral.The neutron. There are others, but the neutron is the best-known particle that is electrically neutral.The neutron. There are others, but the neutron is the best-known particle that is electrically neutral.The neutron. There are others, but the neutron is the best-known particle that is electrically neutral.
1,100,000,000,000 kilograms = 1.21254244 × 109 short tons
That might be the matter in a neutron star, which has typical densities of millions of tons per cubic centimeter. The situation within a black hole is more extreme, but not entirely clear.That might be the matter in a neutron star, which has typical densities of millions of tons per cubic centimeter. The situation within a black hole is more extreme, but not entirely clear.That might be the matter in a neutron star, which has typical densities of millions of tons per cubic centimeter. The situation within a black hole is more extreme, but not entirely clear.That might be the matter in a neutron star, which has typical densities of millions of tons per cubic centimeter. The situation within a black hole is more extreme, but not entirely clear.
Some applications of californium: - neutron source as Cf-Be source - neutron source for neutron activation analysis (portable installations) - neutron radiography - irradiation for some cancers treatment - nuclear fuel rod scanning - neutron source to detect water, petroleum, metals, methane etc.
A neutron star has slightly more mass than a white dwarf. This results in higher gravitational attraction. As a result, in a white dwarf, the star's mass (roughly the mass of the Sun - may vary in different white dwarves) has a diameter of a few thousand kilometers, and a density of a few tonnes per cubic centimeter. The neutron star, on the other hand, has a diameter of only 20-30 kilometers, and a density of millions of tonnes per cubic centimeter. For comparison, water has a density of 1 gram per cubic centimeter, other substances around us have similar densities; so the density of a white dwarf is millions of times the density of water, while a neutron star has billions of times the density of water.
you already partly answered your own question. Neutrons.
Judy neutron
No. A neutron carries no charge.
There is no such thing as a "positive neutron" or a "negative neutron". A neutron is always neutral.
James chadwick was the discoverer of neutron. He gave the famous neutron reaction.
A neutron does not have a charge -- its neutral
The neutron. There are others, but the neutron is the best-known particle that is electrically neutral.The neutron. There are others, but the neutron is the best-known particle that is electrically neutral.The neutron. There are others, but the neutron is the best-known particle that is electrically neutral.The neutron. There are others, but the neutron is the best-known particle that is electrically neutral.
No, a neutron is a particle.