AP EAMCET · PHYSICS · Nuclear Physics
In the nuclear fusion reaction \({ }_1 \mathrm{H}^2+{ }_1 \mathrm{H}^3 \rightarrow{ }_2 \mathrm{He}^4+\mathrm{n}\), if the repulsive potential energy between the two nuclei is \(2.07 \times 10^{-14} \mathrm{~J}\), then the temperature at which the gases must be heated to initiate the reaction is \(\left(\right.\) Boltzmann constant \(\left.=1.38 \times 10^{-23} \mathrm{JK}^{-1}\right)\)
- A \(10^9 \mathrm{~K}\)
- B \(10^7 \mathrm{~K}\)
- C \(10^5 \mathrm{~K}\)
- D \(10^{12} \mathrm{~K}\)
Answer & Solution
Correct Answer
(A) \(10^9 \mathrm{~K}\)
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