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impossible & inexplicable. in classical physics radioactivity simply can't happen.

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12y ago

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Does the process of radioactive decay fall under the study of chemistry or physics or is it a combination of both?

Radioactive decay falls under chemistry, because the chemical properties of the substance are changed during radioactive decay.


Does the process of radioactive decay fall under the study of chemistry or physics Is it a combination of both?

The process of radioactive decay actually falls under the study of nuclear chemistry rather than physics or a combination of the two.


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In physics, radioactive refers to the property of certain nuclei to spontaneously decay and emit radiation in the form of alpha particles, beta particles, or gamma rays. This radioactive decay process results in the transformation of the nucleus into a more stable configuration.


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This all depends on the situation and context. In particle physics, proton decay is hypothetical. It is a type of radioactive decay where protons decay into lighter subatomic particles.


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When radioactive isotopes break down into other elements the process is called?

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Marie and Pierre Curie studied radioactive decay to discover the elements polonium and radium. They found that certain elements undergo spontaneous decay, emitting radiation in the process. Their work laid the foundation for the field of nuclear physics.


How does light waves and radioactive decay relate to Quantum Mechanics?

Because light waves and radioactive decay are some of the key factors that lead to the development of Quantum Mechanics. Quantum mechanics is also our best apparatus for describing and predicting those phenomena.


How is the radioactive decay of Krypton different from the radioactive decay of Americium?

The radioactive decay of americium 241 is by alpha disintegration; the disintegration of radioactive krypton isotopes is by beta particles emission.


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

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


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Heating radioactive uranium would not make it decay faster because the decay rate of a radioactive material is a fundamental property of that specific isotope and is not affected by external factors like temperature. The decay rate of uranium is governed by its half-life, which is a constant characteristic of the isotope. Heating the uranium would not alter this intrinsic property and thus would not impact the decay rate.


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