Theoretical Nuclear Physics: Nuclear structure
Presents, 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.
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angular momentum approximation assume average becomes calculations Chapter charge closed collective complete component configuration conservation consider contribution coordinates core corresponding coupling decay deformed density dependence derived described determined diagonalization direction discussion effects electron energy equation example exchange excited expect experiment experimental expression fact factor field final follows forces give given ground Hamiltonian Hence important independent indicated integral interaction introduce involves isospin later lead levels limit lowest magnetic mass matrix elements moment moments motion neutron nuclear nuclei nucleons observed obtain occupied operator orbital pair parity particles possible potential probability problem properties proton range referred relation relative respect result rotational satisfy scattering separation shell model shown shows similar single single-particle solution space spherical spin structure symmetric Table taken theory tion transition various wave function