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The mass of 3Li^7 nucleus is 0.042 a.m.u...

The mass of `_3Li^7` nucleus is 0.042 a.m.u. less than the sum of masses of its nucleons.Find th binding energy per nucleon.

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Calculate the binding energy per nucleon of "_3Li^7 nucleus. Given mass of "_3Li^7 nucleus = 7.01599 a.m.u., mass of proton =1.007825 a.m.u., mass of neutron = 1.008665 a.m.u. and 1 a.m.u. = 931.5 MeV

The mass of deutron (_1h^2) nucleus is 2.0135553 a.m.u.If the masses of proton and neutron are 1.007275 a.m.u. and 1.008665 a.m.u. respectrively.Calculate the mass defect,the packing fraction,binding energy and binding energy per nculeon.

A nucleus at rest undergoes a decay emitting an alpha -particle of de-broglie wavelength lambda = 5.76 xx 10^(-15) m . The mass of daughter nucleus is 223.40 amu and that of alpha-particle is 4.002 a.m.u.detrmine the total kinetic energy in the final state.Hence,obtain teh mass of the parent nucleus in a.m.u. Given that 1 a.m.u.=931.470 MeV .

A nucleus of mass number A, has a mass defect Deltam . Give the formula, for the binding energy per nucleon of this nucleus.

A heavy nucleus P of mass number of 240 and binding energy 7.6 MeV per nucleon splits into two nuclie Q and R of mass numbers 110 and 130 and binding energy per nucleon 8.5 MeV and 8.4 MeV, respectively. Calculate the energy released in the fission.

MODERN PUBLICATION-STRUCTURE OF NUCLEUS-EXERCISE
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