generic · CBSE Class 12th English Medium · PHYSICS PART-2 · Page 137definition

13.3 SIZE OF THE NUCLEUS

Chapter 5: Chapter 13 · PHYSICS PART-2 · EN medium

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As we have seen in Chapter , Rutherford was the pioneer who postulated and established the existence of the atomic nucleus. At Rutherford’s suggestion, Geiger and Marsden performed their classic experiment: on the scattering of (-particles from thin gold foils. Their experiments revealed that the distance of closest approach to a gold nucleus of an (-particle of kinetic energy . MeV is about . × – m. The scattering of (-particle by the gold sheet could be understood by Rutherford by assuming that the coulomb repulsive force was solely responsible for scattering. Since the positive charge is confined to the nucleus, the actual size of the nucleus has to be less than . × – m.

📖 NCERT Class 12 Physics Part 2 · Page 137

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As we have seen in Chapter , Rutherford was the pioneer who postulated and established the existence of the atomic nucleus. At Rutherford’s suggestion, Geiger and Marsden performed their classic experiment: on the scattering of (-particles from thin gold foils. Their experiments revealed that the distance of closest approach to a gold nucleus of an (-particle of kinetic energy . MeV is about .

× – m. The scattering of (-particle by the gold sheet could be understood by Rutherford by assuming that the coulomb repulsive force was solely responsible for scattering. Since the positive charge is confined to the nucleus, the actual size of the nucleus has to be less than . × – m.

If we use (-particles of higher energies than . MeV, the distance of closest approach to the gold nucleus will be smaller and at some point the scattering will begin to be affected by the short range nuclear forces, and differ from Rutherford’s calculations. Rutherford’s calculations are based on pure coulomb repulsion between the positive charges of the (- particle and the gold nucleus. From the distance at which deviations set in, nuclear sizes can be inferred.

By performing scattering experiments in which fast electrons, instead of (-particles, are projectiles that bombard targets made up of various elements, the sizes of nuclei of various elements have been accurately measured. It has been found that a nucleus of mass number A has a radius

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