Answer: mc019-1.jpg11 6 C ---> 11 5 B + 0 +1 e
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Which represents the balanced nuclear equation for the beta plus decay of C-11?
Positron emission or beta plus decay (β decay) is a subtype of radioactive decay called beta decay in which a proton inside a radionuclide nucleus is converted into a neutron while releasing a positron and an electron neutrino (νe). Positron emission is mediated by the weak force. The positron is a type of beta particle (β ) the other beta particle being the electron (β ) emitted from the β decay of a nucleus. An example of positron emission (β decay) is shown with magnesium-23 decaying into sodium-23:
In nuclear physics beta decay (β-decay) is a type of radioactive decay in which a beta particle (fast energetic electron or positron) is emitted from an atomic nucleus transforming the original nuclide to an isobar of that nuclide. For example beta decay of a neutron transforms it into a proton by the emission of an electron accompanied by an antineutrino; or conversely a proton is converted into a neutron by the emission of a positron with a neutrino in so-called positron emission. Neither the beta particle nor its ass…
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Electron capture is sometimes included as a type of beta decay because the basic nuclear process mediated by the weak force is the same. In nuclear physics beta decay is a type of radioactive decay in which a beta ray (fast energetic electron or positron) …
The essential idea is that a radioactive species will capture a proton before it can beta decay opening new nuclear burning pathways that are otherwise inaccessible. Because of the higher temperatures involved these catalytic cycles are typically referred to as the hot CNO cycles; because the timescales are limited by beta decays instead of proton captures they are also called the beta ...
Aluminium-26 (26 Al Al-26) is a radioactive isotope of the chemical element aluminium decaying by ...
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