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Titlebook: Biological Magnetic Resonance; Lawrence J. Berliner,Jacques Reuben Book 1978 Springer Science+Business Media New York 1978 Aspartat.DNA.Ga

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NMR of Sodium-23 and Potassium-39 in Biological Systems,ve been applied. In addition, we give a brief description of other major techniques that have been used, and point out how NMR can be helpful in obtaining different complementary information concerning Na. and K. in biological systems.
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Fluorine Magnetic Resonance in Biochemistry,zky, 1970; Casy, 1971; Jardetzky and Wade-Jardetzky, 1971; Dwek, 1973; James, 1975; Wuthrich, 1976; Thomas, 1976). The magnetic fields currently available can provide resonance frequencies of 360 MHz or higher, and with the spectral dispersion available under these conditions, PMR is often the metho
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ESR of Free Radicals in Enzymatic Systems,oblems of the physicist and chemist to application to investigations in medicine and biology. As of this writing, the diversity of biological problems to which ESR spectroscopy has been applied is so widespread that several volumes would be required to adequately cover the field.
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Berechnung von Metallklebungen,tion of the structure of tRNA is based on the results of a number of different studies (Rich and RajBhandary, 1976). In this review we will be concerned primarily with results obtained through the use of proton magnetic resonance (PMR). Results obtained by other methods will be discussed as they relate to those obtained by PMR.
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