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Q.Define mass defect and nuclear binding energy.

Jharkhand JacJAC Intermediate Board 2018Subjective· 2mImportance★★★★★
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A nucleus weighs slightly less than the sum of its free constituent nucleons; this 'missing' mass, called the mass defect, corresponds (via E = mc^2) to the binding energy holding the nucleus together.

MASS DEFECT (delta-m): If a nucleus of atomic number Z and mass number A is made of Z protons and N (= A - Z) neutrons, the sum of the individual (free) masses of these nucleons is always found to be GREATER than the actual measured mass M of the nucleus. This difference,

delta-m = [Zm_p + Nm_n] - M_nucleus,

is called the mass defect.

NUCLEAR BINDING ENERGY (E_b): By Einstein's mass-energy equivalence, this 'missing' mass has been converted into energy that was released when the nucleus formed, and correspondingly must be SUPPLIED to pull the nucleus apart into free nucleons again. This energy is: …

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