Nuclear Moments


Book Description




Nuclear Moments


Book Description

Nuclear Moments focuses on the processes, methodologies, reactions, and transformations of molecules and atoms, including magnetic resonance and nuclear moments. The book first offers information on nuclear moments in free atoms and molecules, including theoretical foundations of hyperfine structure, isotope shift, spectra of diatomic molecules, and vector model of molecules. The manuscript then takes a look at nuclear moments in liquids and crystals. Discussions focus on nuclear paramagnetic and magnetic resonance and nuclear quadrupole resonance. The text discusses nuclear moments and nuclear models, as well as simple conclusions from experimental data and graphical representations of nuclear models and moments. An explanation of symbols used in the manuscript is also presented. The book is a dependable reference for readers interested in the study of nuclear moments.




Modern Theories of Nuclear Moments


Book Description

The study of nuclear moments parallels the development of nuclear physics as a whole. Thus it can prove an excellent pedagogical tool toward understanding the complexities and elegance of some of the most current and powerful nuclear models. That is what the authors have attempted in this book. Instead of presenting a compilation of theoretical calculations of nuclear moments, they have endeavored to show the extent to which nuclear moments can be used as a stringent test of current nuclear models and of their predictive power.




Nuclear Moments


Book Description










Theories of Nuclear Moments


Book Description




Progress in Nuclear Physics


Book Description

Progress in Nuclear Physics: Volume 6 is a collection of scientific papers in the field of experimental and theoretical physics. The compendium contains research papers covering a wide and diverse range of subjects in various areas of physics. The book provides contributions that discuss the methods for measuring atomic masses; the preparation of pure or enriched isotopes through electromagnetic separators; the study of nuclear moments; the spectroscopy of mesonic atoms; and parity nonconservation in weak interactions. Theoretical and experimental physicists will find this book very insightful.