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Gamma is not a decay process. It is a consequence of a decay process, but it, in itself, is not a decay process. It is the emission of a photon from the excited state of the nucleus in response to a decay process such as alpha or beta that changes the nucleus and leaves it with excess energy.

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12y ago
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12y ago

Alpha decay involves the emission of a helium nucleus, 24He2+, which means that the parent atomic number goes down by two and the parent Atomic Mass number goes down by four. The generalized equation would be...

ANAMNParent --> AN-2AMN-4Daughter + 24He2+

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10y ago

That depends on the type of decay, alpha or beta decay.

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jotinacastillo

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2y ago
beta now can you answer the q

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Q: What is a radioactive decay equation?
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What is the equation for the alpha particle decay of radioactive Bi-187?

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alpha


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Radioactive decay may or may not involve electrons. There are different types of radioactive decay.


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

radioactive decay


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.


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when an isotope is it does not undergo radioactive decay


What is lost during radioactive decay?

Decay energy is the energy that has been freed during radioactive decay. When radioactive decay is ongoing it drops off some energy by means of discharging radiation.


What are advantages of radioactive decay?

One reason is that radioactive decay heats the earths interior


Who discovered radioactive decay in 1898?

ernest Rutherford _______________________________________________________________ Radioactive decay was actually discovered in 1896 by Henri Bacquerel. Ernest Rutherford discovered the formula of radioactive decay (Such as the falk-life, differences between alpha and beta decay and even how the elements become new elements after the decay), but he did not discover the radioactive decay himself.