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Q.Define the terms 'mass defect' and 'binding energy'. How are they related?

Meghalaya MboseMBOSE Meghalaya Intermediate Board 2020Subjective· 3mImportance★★★★★
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A nucleus's mass is slightly less than the sum of its separate nucleons' masses — that "missing" mass converts, via E=mc2E=mc^2, into the binding energy holding the nucleus together.

Mass defect

The mass defect Δm\Delta m of a nucleus is the difference between the sum of the masses of its constituent free nucleons and the actual measured mass of the nucleus:

Δm=[Zmp+Nmn]−Mnucleus\Delta m = \left[Zm_p + Nm_n\right] - M_{nucleus}

Binding energy

The binding energy BEBE is the energy equivalent to this mass defect (by mass-energy equivalence) — physically, the minimum energy that must be supplied to completely separate the nucleus into its individual free nucleons (equivalently, the energy released when the nucleons combine to form the nucleus):

BE=Δm c2BE = \Delta m\,c^2

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