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yes beta rays are present in nucleus. these rays are due to negative pi meson

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What are beta rays also called?

Beta rays are also called beta particles. They are high-speed electrons or positrons emitted by a radioactive nucleus during beta decay.


How beta particles are emitted from nuclei as there are no electrons in nucleas of an atom than from where beta rays are emmited?

nucleus is a very complicated region and we known little about thattheoretically a neutron is broken down to a proton and a beta particle during radioactivity so with in nucleus beta particle is a part of neutron.


Are beta rays made of pure energy?

Beta rays are not made of pure energy; they are actually streams of fast-moving electrons or positrons emitted from the nucleus of a radioactive atom during beta decay. Beta rays have both mass and energy and can interact with matter through electromagnetic forces, causing ionization and other effects.


Why the speed of beta rays emitted by the same element are different?

because the control of neucles on different electrons is different and we know that beta rays are infact electrons then we can say that the speed of beta rays emitted by the same element is different


Emission of gamma rays does not change the atomic number of a nucleus?

Correct. Gamma rays are high-energy photons emitted by a nucleus undergoing a nuclear transition. Unlike alpha or beta decay, gamma emission does not change the atomic number or mass of the nucleus, as it is simply a way for the nucleus to release excess energy and transition to a lower energy state.


What is the difference between ultra violet alpha and ultra violet beta rays?

Ultraviolet is low energy light. Alpha particles are helium nucleii ejected from the nucleus of a heavy element during radioactive decay. Beta particles are electrons (or positrons) ejected from the nucleus of an element during radioactive decay.There is no such thing as "ultra violet alpha and ultra violet beta" rays.


High-energy light waves that are released from a radioactive nucleus during alpha decay and beta decay?

Gamma rays, which are photons with a certain energy step change, are emitted from the nucleus when the nucleus is returned from an excited state back down to ground state, as often occurs during alpha and beta decay.


Do radioactive elements produce alpha and beta particles only?

No, radioactive elements can also produce gamma rays along with alpha and beta particles. Gamma rays are high-energy electromagnetic radiation emitted from the nucleus during nuclear decay.


What are the particles called from a nuclear decay?

These are known as alpha, beta, and gamma rays. Alpha rays are helium-4 nuclei, beta rays can be electrons or positrons, gamma rays are high-energy electromagnetic waves.These are known as alpha, beta, and gamma rays. Alpha rays are helium-4 nuclei, beta rays can be electrons or positrons, gamma rays are high-energy electromagnetic waves.These are known as alpha, beta, and gamma rays. Alpha rays are helium-4 nuclei, beta rays can be electrons or positrons, gamma rays are high-energy electromagnetic waves.These are known as alpha, beta, and gamma rays. Alpha rays are helium-4 nuclei, beta rays can be electrons or positrons, gamma rays are high-energy electromagnetic waves.


Are Beta particles are electrons that originate in the nucleus?

The primary difference between gamma-rays and x-rays is that gamma-rays originate in , while x-rays are created either by transitions between energy states of orbital electrons or as bremsstrahlung radiation.


What is a high energy electron from the nucleus called?

beta particle In beta decay a neutron is converted into a proton, electron (also called a beta particle) and an electron antineutrino.


How is gamma ray emitted?

Gamma rays are emitted during radioactive decay processes in which the nucleus releases excess energy. This can happen after alpha or beta decay has occurred, leaving the nucleus in an excited state. The emission of gamma rays allows the nucleus to transition to a more stable state by releasing high-energy photons.