Consider the nuclear fission \( { }^{20} \mathrm{Ne} \rightarrow 2^{4} \mathrm{He}+{ }^{12} \mat....
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Consider the nuclear fission \( { }^{20} \mathrm{Ne} \rightarrow 2^{4} \mathrm{He}+{ }^{12} \mathrm{C} \).
\( \mathrm{P} \)
Given that the binding energy/nucleon of \( { }^{20} \mathrm{Ne},{ }^{4} \mathrm{He} \) and \( { }^{12} \mathrm{C} \) are, respectively, \( 8.03 \mathrm{MeV}, 7.07 \mathrm{MeV} \) and \( 7.86 \mathrm{MeV} \). Find energy required in \( \mathrm{MeV} \).
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