Neutron rays are very high-energy rays. They are composed of neutrons, which are particles with mass but no charge
During neutron-antineutron annihilation, a neutron and an antineutron collide and are converted into energy in the form of gamma rays, mesons, and other particles. This process releases a large amount of energy and results in the destruction of the neutron and antineutron.
Five types of radiation include alpha, beta, gamma, neutron, and electromagnetic radiation (such as x-rays and UV rays). Gamma and neutron radiation are generally considered the most dangerous due to their ability to penetrate deep into tissues and cause severe damage.
Gamma rays can be bent by the presence of strong gravitational fields, such as those near black holes or neutron stars. This bending is known as gravitational lensing, which occurs as the gamma rays travel through the curved spacetime around these massive objects.
Gamma rays originate from various sources in the universe, such as supernovae explosions, black holes, neutron stars, and other high-energy processes. They are also produced in nuclear reactions and particle interactions on Earth.
Gamma rays are used in medical imaging, cancer treatment, industrial radiography, and sterilization processes. Neutrons are used for material analysis, neutron radiography, and in nuclear reactors for power generation and research purposes.
Yes
Yes
It uses high energy, penetrating waves or particles such as x rays, gamma rays, proton rays, or neutron rays
X-rays are not a type of nuclear radiation. They are a type of electromagnetic radiation.
No. JJ Thomson's experiments with cathode rays lead to the discovery of the electron.
Neutron source Alpha rays source for radiotherapy
It uses high energy, penetrating waves or particles such as x rays, gamma rays, proton rays, or neutron rays
Neutron source Alpha rays source for radiotherapy
Neutrons are neutral particles found in the nucleus of an atom, while gamma rays are electromagnetic radiation emitted by the nucleus of an atom. Neutrons have mass but no charge, while gamma rays are massless and have no charge. Neutrons are typically involved in nuclear reactions, while gamma rays are involved in the release of excess energy from an unstable nucleus.
During neutron-antineutron annihilation, a neutron and an antineutron collide and are converted into energy in the form of gamma rays, mesons, and other particles. This process releases a large amount of energy and results in the destruction of the neutron and antineutron.
Five types of radiation include alpha, beta, gamma, neutron, and electromagnetic radiation (such as x-rays and UV rays). Gamma and neutron radiation are generally considered the most dangerous due to their ability to penetrate deep into tissues and cause severe damage.
No, a positron cannot react with a neutron in any kind of annihilation reaction. An electron and a positron can, and the same with a neutron and an anti-neutron, but it does not occur between a positron and a neutron.