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GENERAL PROPERTIES OF NUCLEI
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6-decay a-particle absorption angular distribution antisymmetric approximation arise assumed atomic mass average axis barrier beam binding energy cent centre centre-of-mass Chapter classical component constant corresponding Coulomb coupling cross-section decay deduced defined determine deuteron dipole effect elastic scattering electromagnetic electron electrostatic emission emitted exchange excited factor Fermi fission forbidden transition function gives ground inside the nucleus integral interaction intrinsic isospin isotopes kinetic energy latter magnetic moments mass equation matrix element measurements neutrino nuclear forces nuclear radius nuclear reactions nuclear size nucleon nucleon-nucleon nucleus occur orbital angular momentum pairing term parity particle Pauli principle perturbation plane wave plot possible potential probability problem produce projectile proton and neutron quadrupole quantum numbers radiation range reactor represent resonance rotational s-wave shell model single-particle space spectrum spherical spin stable nuclei sub-shells sub-states symmetry target thermal thermal neutrons tion transitions vector wavefunction wavenumber whilst width y-emission zero