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Q.Define mass defect and nuclear binding energy. For a nucleus A/Z X (mass number A, atomic number Z), write the value of mass defect and nuclear binding energy.

Haryana BsehBSEH Intermediate Board 2023Subjective· 3mImportance★★★★★
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Mass defect is the 'missing mass' when nucleons bind into a nucleus; binding energy is the energy equivalent of that missing mass.

Mass defect: When Z protons and (A−Z) neutrons combine to form a nucleus, the mass of the nucleus is found to be slightly LESS than the sum of the masses of its free constituent nucleons. This difference is called the mass defect:

Δm=[Zmp+(A−Z)mn]−M\Delta m = [Zm_p + (A-Z)m_n] - M

where mpm_p = mass of a proton, mnm_n = mass of a neutron, and MM = actual mass of the nucleus ZAX^{A}_{Z}X.

Nuclear binding energy: This mass defect is converted (by Einstein's mass-energy relation) into the energy that binds the nucleons together — the binding energy: …

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