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Q.What do you understand by mass defect and binding energy of a nucleus?

Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2024Subjective· 2mImportance★★★★★
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Mass defect is the "missing mass" of a nucleus compared to its free nucleons; binding energy is that missing mass converted to energy via E=mc2E=mc^2.

Mass defect (Δm\Delta m): The mass of a nucleus is always found to be less than the sum of the masses of its individual, free (unbound) protons and neutrons. This difference is called the mass defect:

Δm=[Zmp+(A−Z)mn]−Mnucleus\Delta m = \left[Zm_p+(A-Z)m_n\right]-M_{nucleus}

where ZZ is the number of protons, A−ZA-Z the number of neutrons, mpm_p and mnm_n the masses of a free proton and neutron, and MnucleusM_{nucleus} the actual mass of the nucleus.

Binding energy: By Einstein's mass–energy relation, this "missing" mass corresponds to an energy:

Eb=Δm c2E_b=\Delta m\,c^2 …

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