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GUJCET · Physics · Nuclei
The binding energy per nucleon of \({ }_{8} \mathrm{O}^{16}\) is 7.97 MeV and that of \({ }_{8} \mathrm{O}^{17}\) is 7.75 MeV . The energy required to remove one neutron from \({ }_{8} O^{17}\) is \(\qquad\) MeV
- A 3.52
- B 3.62
- C 4.23
- D 7.86
Answer & Solution
Correct Answer
(C) 4.23
Step-by-step Solution
Detailed explanation
C.4.23
\({ }_{8}^{17} \mathrm{O} \rightarrow{ }_{8}^{16} \mathrm{O}+{ }_{0}^{1} n\)
energy required to release neutron
\(\mathrm{E}=7.75 \times 17-7.97 \times 16\)
\(\mathrm{E}=131.75-127.52\)
\(\mathrm{E}=4.23 \mathrm{MeV}\)
\({ }_{8}^{17} \mathrm{O} \rightarrow{ }_{8}^{16} \mathrm{O}+{ }_{0}^{1} n\)
energy required to release neutron
\(\mathrm{E}=7.75 \times 17-7.97 \times 16\)
\(\mathrm{E}=131.75-127.52\)
\(\mathrm{E}=4.23 \mathrm{MeV}\)
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