MHT CET · Physics · Nuclear Physics
If \(M_{O}\) is the mass of an oxygen isotope \({ }_{8} \mathrm{O}^{17}\), \(M_{p}\) and \(M_{n}\) are the masses of a proton and a neutron, respectively, the nuclear binding energy of the isotope is
- A \(\left(M_{O}-8 M_{p}\right) c^{2}\)
- B \(\left(M_{O}-8 M_{p}-9 M_{n}\right) c^{2}\)
- C \(M_{O} c^{2}\)
- D \(\left(M_{O}-17 M_{n}\right) c^{2}\)
Answer & Solution
Correct Answer
(B) \(\left(M_{O}-8 M_{p}-9 M_{n}\right) c^{2}\)
Step-by-step Solution
Detailed explanation
Binding energy
\(
\begin{aligned}
\mathrm{BE} &=\left(M_{\text {nucleus }}-M_{\text {nucleons }}\right) c^{2} \\
&=\left(M_{O}-8 M_{p}-9 M_{n}\right) c^{2}
\end{aligned}
\)
\(
\begin{aligned}
\mathrm{BE} &=\left(M_{\text {nucleus }}-M_{\text {nucleons }}\right) c^{2} \\
&=\left(M_{O}-8 M_{p}-9 M_{n}\right) c^{2}
\end{aligned}
\)
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