Theoretical Nuclear Physics: Nuclear structurePresents, in a concise, systematic & lucid form, the achievements of nuclear research over half a century. Throughout, the emphasis is on the fundamental principles underlying our present understanding of nuclear structure & interactions. Readers will gain sufficient insight to turn to the original literature & review articles with ease & to their best advantage. |
Contents
LIST OF SYMBOLS | 1 |
Vector potential | 9 |
NUCLEAR MASSES | 10 |
Copyright | |
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A-particle amplitude antisymmetric approximation average binding energy calculations center-of-mass central potential charge closed shells coefficients component configuration coordinates core corresponding Coulomb cross section decay density dependence diagonal dipole discussion effects eigenfunctions eigenvalues electromagnetic electron equation evaluation excited experimental factor Fermi gas given Hamiltonian Hartree-Fock independent involved isospin j₁ levels m₁ magnetic magnetic moment mass matrix elements moment of inertia moments motion multipole neutrino neutron nuclear forces nuclear matter nuclei nucleon-nucleon nucleons obtain operator orbital oscillator pair parameters parity particles Pauli principle perturbation Phys pion properties proton quadrupole quantum numbers r₁ r₂ radius residual interaction resonance result rotational satisfy scattering Schrödinger equation shell model shown in Fig single-particle potential Slater determinant solution space spherical spin ẞ-decay symmetric tensor theory tion total angular momentum two-body two-particle v(ij vector wave function weak interaction zero