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Q.Define 'mass defect' and 'binding energy' of a nucleus.

Odisha ChseOdisha CHSE +2 Science Board Exam 2024Subjective· 2mImportance★★★★★
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Mass defect is the 'missing' mass when nucleons combine into a nucleus; binding energy is that missing mass converted to energy via E = mc².

Mass defect (Δm): When Z protons and (A−Z) neutrons come together to form a nucleus of mass number A, the actual measured mass M of the nucleus is always found to be LESS than the sum of the masses of its individual, free constituent nucleons. This difference is called the mass defect:

Δm = [Z·m_p + (A−Z)·m_n] − M(nucleus)

where m_p and m_n are the masses of a free proton and free neutron respectively.

Binding energy (BE): By Einstein's mass–energy relation, this 'missing' mass Δm has been converted into energy that was released when the nucleus was formed (and holds the nucleus together). This energy is called the binding energy of the nucleus:

BE = Δm·c² = [Z·m_p + (A−Z)·m_n − M]c²

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