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Q.The energy required to separate all the nucleons inside a nucleus is called binding energy of the nucleus.

(a) Write an expression for binding energy in terms of mass defect.
(1)
(b) Draw the graph showing the variation of binding energy per nucleon as a function of mass number.
(1)
(c) Which nucleus possess maximum binding energy per nucleon ? (1)
Kerala DhseKerala DHSE Plus Two Board 2019Subjective· 3mImportance★★★★★
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Figure — Part (b) explicitly says 'Draw the graph showing the variation of binding energy per nucleon as a function of
Figure — Part (b) explicitly says 'Draw the graph showing the variation of binding energy per nucleon as a function of

Binding energy comes from the mass defect via E=mc2E=mc^2; the binding-energy-per-nucleon curve peaks near iron-56, which is why iron is the most tightly bound nucleus.

  1. Expression for binding energy: The mass of a nucleus is always slightly less than the sum of the masses of its free constituent nucleons — this difference is the mass defect Δm\Delta m: Δm=[Zmp+(A−Z)mn]−M\Delta m = [Zm_p + (A-Z)m_n] - M where ZZ = number of protons, A−ZA-Z = number of neutrons, mp,mnm_p, m_n = proton/neutron mass, MM = actual nuclear mass. By Einstein's mass-energy relation, the binding energy is: BE=Δm c2=[Zmp+(A−Z)mn−M]c2BE = \Delta m\, c^2 = \big[Zm_p + (A-Z)m_n - M\big]c^2
  2. Binding energy per nucleon vs mass number graph: …

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