(a)
Interpretation:
Kinetic Energy of an
Concept Introduction:
Nuclear binding energy: It is the energy that requires for the breaking one mole of nuclei of an element to its individual nucleons.
Kinetic energy of a particle can be using the below mentioned formula,
(b)
Interpretation:
Number of
Concept Introduction:
Nuclear binding energy: It is the energy that requires for the breaking one mole of nuclei of an element to its individual nucleons.
Nuclear binding energy can be calculated by Einstein’s mass energy equivalence relationship that is,
(c)
Interpretation:
Energy released during the fusion of 4 Hydrogen atoms forming Helium-4 has to be determined using the given data.
Concept Introduction:
Nuclear binding energy: It is the energy that requires for the breaking one mole of nuclei of an element to its individual nucleons.
Nuclear binding energy can be calculated by Einstein’s mass energy equivalence relationship that is,
Change in mass of a given reaction can be determined as given,
(d)
Interpretation:
Increase in energy produce by the fusion of part (c) comparing with
Concept Introduction:
Nuclear binding energy: It is the energy that requires for the breaking one mole of nuclei of an element to its individual nucleons.
Nuclear binding energy can be calculated by Einstein’s mass energy equivalence relationship that is,
Change in mass of a given reaction can be determined as given,
(e)
Interpretation:
Energy released when
Concept Introduction:
Nuclear binding energy: It is the energy that requires for the breaking one mole of nuclei of an element to its individual nucleons.
Nuclear binding energy can be calculated by Einstein’s mass energy equivalence relationship that is,
Change in mass of a given reaction can be determined as given,
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