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Explain · Q15

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?

Maharashtra MsbshseTextbookSubjectiveImportance★★★★★est
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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 10810^8 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 10810^8 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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