Question:

In which sequence the radioactive radiations are emitted in the following nuclear reaction? \[ Z^{X}A \rightarrow Z+1Y^{A} \rightarrow Z-1K^{A-4} \]

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In nuclear reactions, the emission of \( \alpha \), \( \beta \), and \( \gamma \) radiations typically follows a specific sequence, with \( \alpha \)-decay followed by \( \beta \)-decay, and sometimes \( \gamma \)-rays are emitted to stabilize the nucleus.
Updated On: Jan 12, 2026
  • \( \gamma, \alpha, \beta \)
  • \( \alpha, \beta, \gamma \)
  • \( \beta, \gamma, \alpha \)
  • \( \gamma, \beta, \alpha \)
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The Correct Option is B

Solution and Explanation

Step 1: Understand the sequence of nuclear reactions.
In the given nuclear reaction, a heavy nucleus undergoes a sequence of decay steps. The first decay is \( \gamma \) emission, which is followed by \( \alpha \)-decay, and finally, \( \beta \)-decay.
Step 2: Identify the correct order.
Thus, the correct sequence of radiation emissions is \( \alpha, \beta, \gamma \).
Final Answer: \[ \boxed{\alpha, \beta, \gamma} \]
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