High energy, high frequency photons.
Gamma rays are a type of electromagnetic radiation, which is a type energy. Because a gamma ray is a type of energy, it has no mass.
Losing a gamma ray does not change the number of protons or neutrons in the nucleus, so the nucleus remains the same element. However, the nucleus may be left in an excited state after emitting a gamma ray, and it typically returns to its ground state quickly by emitting the gamma ray.
The symbol for a gamma ray is γ, and its charge is neutral (0). Gamma rays are high-energy electromagnetic radiation emitted by the nucleus of an atom.
Gamma ray photons are produced in the core of the Sun through the process of nuclear fusion. The core is where the temperature and pressure are high enough to drive these reactions, leading to the release of gamma ray photons.
Gamma rays consist of pure energy in the form of electromagnetic radiation. They do not consist of electrons or protons. Beta particles are high-energy electrons or positrons emitted during certain types of radioactive decay, but they are not present in gamma rays.
Gamma rays are a type of electromagnetic radiation, which is a type energy. Because a gamma ray is a type of energy, it has no mass.
Gamma Ray
We use a gamma ray machine to find out where the gamma rays are and where they are pointed to. We also use these machines to study a gamma ray.
Gamma Ray - band - was created in 1988.
Alpha particles are in the same group with gamma rays. Gamma rays helps remove all of the excise energy in a nucleus. Alpha particles consist of two protons and two neutrons that are bound together.
Gamma decay involves the emission of a gamma ray, which is a high-energy photon with no charge and no mass.
well none, its either gamma ray or gamma radiation, it has the same wavelength as an x-ray but higher energy level.
Gamma Ray
Gamma rays are gamma rays are gamma rays.
Gamma rays. Each individual photon is more energetic, at any rate.
Gamma ray radiation
Light ray and gamma ray both travel in a straight line.