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What is a process in which atomic nuclei of unstable isotopes release fast-moving particles and energy?

Nuclear decay is the process in which atomic nuclei of unstable isotopes release fast-moving particles, such as alpha or beta particles, along with energy in the form of gamma radiation. This process is also known as radioactive decay and results in the transformation of the unstable isotope into a more stable one.


What is the process in which the atomic nuclei of unstable isotopes release fast moving particles and energy?

The process is called radioactive decay, in which unstable isotopes undergo spontaneous disintegration to form more stable elements. During this process, fast-moving particles such as alpha and beta particles are emitted, along with energy in the form of gamma rays.


In unstable isotopes is called what?

Unstable isotopes are called radioisotopes or radioactive isotopes. They undergo radioactive decay, transforming into more stable forms by emitting radiation in the form of alpha particles, beta particles, or gamma rays. This process continues until they reach a stable state, often resulting in the formation of different elements.


Isotopes with unstable nuclei are?

Isotopes with unstable nuclei are radioactive and can undergo radioactive decay to achieve a more stable state. This decay process involves the release of radiation such as alpha or beta particles. The unstable isotopes are often used in various applications, including medicine and energy production.


What is the process in which the nuclei of unstable atoms can become more stable by emitting particles or electromagnetic radiation?

This process is called radioactive decay. Unstable atoms, also known as radioactive isotopes, undergo decay by emitting particles (such as alpha or beta particles) or electromagnetic radiation (such as gamma rays) in order to achieve a more stable configuration.


What are atoms with unstable nuclei and will change into another atom called?

Atoms with unstable nuclei that undergo radioactive decay to transform into another atom are called radioactive isotopes or radioisotopes. These isotopes emit radiation in the form of particles or electromagnetic waves as they decay. This process can result in the formation of different elements or isotopes, depending on the type of decay.


Is the decay of unstable isotopes always the same process?

Yes, for the specified isotope; but the process is statistic.


What is the process of isotopes breaking down and emitting particles such as alpha or beta to form a new substance?

Radioactive decay is the process in which a nucleus of an unstable atom loses energy through ionizing radiation. When this happens, one of its neutrons breaks down into a proton and an electron. The electron then leaves the atom as a beta particle.


Where does decay and radiation occur?

Decay and radiation occur at the atomic level within unstable nuclei of atoms. Decay is the process where an unstable nucleus emits particles or energy to become more stable, while radiation refers to the particles or energy emitted during this process. Both decay and radiation can occur in natural radioactive elements or in artificially created radioactive isotopes.


Are radioactive isotopes electrically unbalanced?

No, radioactive isotopes are not necessarily electrically unbalanced. Radioactive isotopes have unstable nuclei that undergo radioactive decay, which can result in the emission of radiation such as alpha, beta, or gamma particles to achieve a more stable state. This decay process does not impact the electrical balance of the atom.


How do radioisotopes of an element differ from other isotopes?

Radioisotopes are unstable isotopes that undergo radioactive decay, emitting particles and/or energy in the process. This distinguishes them from stable isotopes that do not undergo radioactive decay. Radioisotopes are often used in medicine, industry, and research for various applications due to their unique properties related to their decay process.


What term indicates the process in which unstable nuclide release radiation?

If it is related to Nuclear studies, then the answer would be fusion.