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Titlebook: Dynamics During Spectroscopic Transitions; Basic Concepts E. Lippert,J. D. Macomber Textbook 1995 Springer-Verlag Berlin Heidelberg 1995 Sp

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Basic Principles of Magnetic Resonancef spectroscopic transitions. This system is particularly suitable for such a purpose because the component of the transition dipole moment in any direction in space can be made an eigenvalue property by choosing an appropriate state. In Chap. 1 it was noted that the ideas presented in this book were
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Spin Dynamics and Radical Reactionsere . is the operator for the electron spin. As the minus sign shows, . . points in the opposite direction as the spin, owing to the negative charge of the electron. The strength of the magnetic moment, which is about 658 times that of a proton, is expressed in terms of the Bohr magneton . of the el
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Generalization of the Gyroscopic Modelions between matter and radiation that lead to spectroscopic transitions. These assertions were proved for the cases of nuclear and electron magnetic resonance in Chap. 8. The theory used in the magnetic resonance case will now be generalized to cover rotational, vibrational, and electronic transiti
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René C. G. Arnold,Ruth Fleuchaus the quantum systems could be studied one at a time. By way of contrast, in this chapter the emphasis will be placed on spin?1/2 particles in bulk samples, and the statistical methods introduced in Chap. 5 must be employed.
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