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Q.What does mean by mass defect? Establish relation between mass defect and nuclear binding energy. And hence write the expression for binding energy per nucleon. [1 + 1½ + ½ = 3]

Rajasthan RbseRajasthan Board Senior Secondary Examination 2018Subjective· 3mImportance★★★★★
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Mass defect Δm is the mass lost when nucleons bind; E_b = Δm·c² is the binding energy, and E_b/A the binding energy per nucleon.

Mass defect: The actual mass of a nucleus is always found to be slightly less than the total mass of its constituent nucleons (protons and neutrons) taken separately. This difference is called the mass defect, Δm\Delta m.

For a nucleus of mass number AA and atomic number ZZ (so it has ZZ protons and A−ZA-Z neutrons) and actual mass MM:

Δm=[ Z mp+(A−Z) mn ]−M\Delta m = \big[\,Z\,m_p + (A-Z)\,m_n\,\big] - M

where mpm_p and mnm_n are the masses of a free proton and neutron.

Relation to binding energy: When nucleons combine to form a nucleus, the mass defect Δm\Delta m is converted into energy that is released and holds the nucleus together. By Einstein's mass–energy relation E=mc2E = mc^2, this energy is the binding energy of the nucleus:

Eb=Δm c2=[ Z mp+(A−Z) mn−M ]c2E_b = \Delta m\,c^2 = \big[\,Z\,m_p + (A-Z)\,m_n - M\,\big]c^2

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