What is the daughter nuclues after C-10 ($_{6}^{10}C$) undergoes $\beta+$ decay?
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Step 1: The parent nucleus is Carbon-10, represented as $_{6}^{10}C$. Show more…
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When the nuclide carbon-10 undergoes positron emission, the name of the product nuclide is The symbol for the product nuclide is
Suman K.
Beta-plus decay is $^{\wedge} \mathbf{X}_{\mathbf{Z}} \rightarrow^{\wedge} \mathbf{Y}_{\mathbf{Z}-1}+\mathbf{e}^{+}+\nu$ a. Determine the mass threshold for beta-plus decay. That is, what is the minimum atomic mass $m_{\mathrm{X}}$ for which this decay is energetically possible? Your answer will be in terms of the atomic mass $m_{Y}$ and the electron mass $m_{e}$ Hint: Start with the nuclear masses, then add an equal number of electrons to both sides of the reaction to get atomic masses. b. Can "N undergo beta-plus decay into $^{13} \mathrm{C} ?$ If so, how much energy is released in the decay?
${ }_{6} \mathrm{C}^{12}$ absorbs an energetic neutron and emits a $\beta$ Particle. The resulting nucleus is (A) ${ }_{7} \mathrm{~N}^{13}$ (B) ${ }_{7} \mathrm{~N}^{14}$ (C) ${ }_{6} \mathrm{C}^{13}$ (D) ${ }_{6} \mathrm{C}^{12}$
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