In the reaction _ 1 ^ 2 H + _ 1 ^ 3 H _ 2 ^ 4 He + _ 0 ^ 1 n , if the binding energies of…
Physics · Class 12 · CBSE — Nuclei
In the reaction \({ }_{1}^{2} \mathrm{H}+{ }_{1}^{3} \mathrm{H} \rightarrow{ }_{2}^{4} \mathrm{He}+{ }_{0}^{1} n\) , if the binding energies of \({ }_{1}^{2} \mathrm{H}\) , \({ }_{1}^{3 } \mathrm{H}\) and \({ }_{2}^{4} \mathrm{H}\) are respectively a, b and c (in MeV), then the energy (in MeV) released in this reaction is
- a + b + c
- a + b - c
- c - a - b
- c + a - b
Answer
(C) c - a - b
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