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Binding Energy Per Nucleon...

Binding Energy Per Nucleon

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Variation Of Binding Energy Of Per Nucleon With Mass Number

Statement: Binding energy per nucleons becomes almost constant at 7.6 for elements beyond Pb and onwards. Explanation: The lower value of binding energy/nucleons is responsible for decay of transuranic elements.

Draw a plot of the binding energy per nucleon as a function of mass number for a large number of nuclei , 2 le A le 240 . How do you explain the constancy of binding energy per nucleon in the range 30 lt A lt 170 using the property that nuclear force is short-ranged ?

A heavy nucleus X of mass number 240 and binding energy per nucleon 7.6 MeV is split into two fragments Y and Z of mass numbers 110 and 130. The binding energy of nucleons in Y and Z is 8.5MeV per nucleon. Calculate the energy Q released per fission in MeV.

The binding energy per each nucleon in the neighborhood of medium nuclei is 8.5 MeV and the binding energy per each nucleon is about 7.6 MeV and the neighborhood of Uranium. The energy released in the fission of U ^(236) is

Statement-1:In a nuclear reaction energy is released , if total binding energy is increasing. Statement-2:For a stability of a nucleus, total binding energy is more important than binding energy per nucleon. Statement-3:Nuclear force is different for different nucleons and it dependent on charge .