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Q.Draw the graph showing the variation of average binding energy per nucleon of a nucleus with its mass number. Explain nuclear fission and fusion on the basis of this graph.

Odisha ChseOdisha CHSE +2 Science Board Exam 2020Subjective· 3mImportance★★★★★
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Figure — Stem 'Draw the graph showing variation of binding energy per nucleon with mass number' is a hard draw gate; th
Figure — Stem 'Draw the graph showing variation of binding energy per nucleon with mass number' is a hard draw gate; th

The binding energy per nucleon vs mass number curve peaks around iron (A≈56); both fission of heavy nuclei and fusion of light nuclei release energy by moving products toward this more stable, higher-BE/nucleon region.

Shape of the graph (described, since it cannot be drawn here): On the x-axis is mass number A, and on the y-axis is binding energy per nucleon (in MeV). The curve:

  • rises sharply from very low values for the lightest nuclei (e.g., deuterium, A=2) up to about A≈20,
  • reaches a broad maximum of about 8.7–8.8 MeV per nucleon in the region A≈50–60, with iron (Fe-56) near the very peak,
  • then decreases slowly and gradually as A increases further, dropping to about 7.6 MeV per nucleon for very heavy nuclei like uranium (A≈238).

Explaining nuclear fission using this curve: Heavy nuclei (large A, e.g., uranium) lie on the right, gently descending part of the curve, where BE/nucleon is comparatively lower. When such a heavy nucleus splits (fissions) into two medium-mass nuclei (with A roughly half, lying closer to the peak of the curve), the binding energy per nucleon of the products is higher than that of the original nucleus. This increase in total binding energy is released as kinetic energy of the fragments and radiation — this is nuclear fission (used in nuclear reactors and fission bombs).

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