Q.Energy produced in nuclear fusion is much larger than that produced in nuclear fission. Why is it difficult to use fusion to produce energy?
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Start your 14-day free trial to unlock the full solution →Step 1. All nuclei carry positive charge, so bringing two light nuclei close enough together for the short-range nuclear force to bind them requires overcoming their mutual electrostatic (coulombic) repulsion first.
Step 2. This chapter states that fusion needs a temperature typically of order K to give the nuclei enough kinetic energy to get past that repulsion and actually fuse -- vastly hotter than any conventional fossil-fuel or even fission-based heat source.
Step 3. Sustaining such an extreme temperature, while also physically containing the resulting hot plasma (since no solid material container can survive contact with matter at K) long enough to extract net usable energy, is an extremely demanding engineering problem -- much harder in practice than controlling a fission chain reaction, which proceeds at comparatively modest reactor temperatures and can be moderated with solid control rods and a solid/liquid moderator. …
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