By Lloyd M. Jackman
Dynamic Nuclear Magnetic Resonance Spectroscopy
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The booklet offers with diluted magnetic semiconductors, a category of fabrics vital to the rising box of spintronics. In those fabrics semiconducting homes, either delivery and optical, are motivated via the presence of magnetic ions. It concentrates on easy actual mechanisms (e. g. carrier-ion and ion-ion interactions) and ensuing phenomena (e.
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6) may be used to partition Hvw into equivalency classes. #, is called the number of nmr differentiable reactions* in Hvw. By selecting one reaction from each equivalency class, a complete set of nmr differentiable reactions in Hvw is formed. It must be emphasized that there is in general no guarantee that two nmr differentiable reactions generate dependences of line * If V = W and Vvv = Vvv, then one of the D$$ equivalency classes in Hvv generated by Eq. (6) contains no reactions, and therefore the number of nmr differentiable reactions in Hvv is Z>Vv = D$v — 1.
P. (1953). / . Chem. Phys. 21, 279. Harary, F. (1969). "Graph Theory," p. 184. Addison-Wesley, Reading, Massachusetts. Johnson, C. , Jr. (1964). / . Phys. 41, 3277. Johnson, C. , Jr. (1965). Advan. Magn. Resonance 1, 33. Kaplan, J. , and Fraenkel, G. (1972). / . Amer. Chem. Soc. 94, 2907. Klemperer, W. G. (1972a). / . Chem. Phys. 56, 5478. Klemperer, W. G. (1972b). Inorg. Chem. 11, 2668. Klemperer, W. G. (1973a). / . Amer. Chem. Soc. 95, 380. Klemperer, W. G. (1973b). / . Amer. Chem. Soc. 95, 2105.
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