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III Long answer questions · Q9

Q.Discuss the gamma decay process with an example.

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Step 1. Why excited states arise. After an alpha or beta decay, the resulting daughter nucleus is very often left in an excited energy state rather than settling directly into its ground state.

Step 2. The gamma decay process. Such excited nuclear states typically last only about 10−1110^{-11} s before the nucleus drops to its ground state (or a lower excited state), releasing the excess energy as a highly energetic photon - a gamma ray. Since this is purely a release of internal energy, neither the mass number AA nor the atomic number ZZ changes:

ZAX∗→ZAX+γ{}^{A}_{Z}X^{*}\to{}^{A}_{Z}X+\gamma

Step 3. Worked example. Boron-12 decays via two competing beta pathways: directly to ground-state carbon-12 by emitting a 13.4 MeV electron, or to an excited carbon-12 state (612C∗^{12}_{6}C^{*}) by emitting a lower-energy 9.0 MeV electron, followed immediately by a 4.4 MeV gamma decay of 612C∗^{12}_{6}C^{*} to the same ground state, 612C∗→612C+γ^{12}_{6}C^{*}\to{}^{12}_{6}C+\gamma. …

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