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Molecular Magnetic Fields and ESR Parameters

Exercise 5.6 Derive the expression (5.49) for the molecular magnetic induction. [Pg.106]

Consequently, the molecular magnetic induction at the position of some nucleus K can be defined as the derivative of the energy of the distribution of charges, [Pg.106]

This definition is also listed in the first column of Table B.2 of Appendix B. [Pg.106]

Inserted in the molecular Hamiltonian, Eq. (2.101), the first-order perturbation Hamiltonian becomes [see Exercise 5.71 [Pg.107]

All perturbation operators derived in this chapter are collected in Appendix A. [Pg.107]


See other pages where Molecular Magnetic Fields and ESR Parameters is mentioned: [Pg.105]    [Pg.105]    [Pg.107]   


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