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By The Staff of REA

Covers virtually all types of challenge that an engineering significant will stumble upon in electrical fees, box depth, dielectrics, capacitance, Poisson's and Laplace's equations, magnetic fields, waves, transmission traces, turbines, and antennae.

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Case, Curr. Opin. Struct. Biol. 8, 624 (1998). 3 D. A. Case, Curr. Opin. Struct. Biol. 10, 197 (2000). 4 D. S. Wishart and B. D. Sykes, Methods Enzymol. 239, 363 (1994). 5 D. A. Case, H. J. Dyson, and P. E. Wright, Methods Enzymol. 239, 392 (1994). 6 L. Szilagyi, Prog. Nucl. Magn. Reson. Spectrosc. 27, 325 (1995). 7 M. P. Williamson and T. Asakura, Meth. Mol. Biol. 60, 53 (1997). 2 METHODS IN ENZYMOLOGY, VOL. 338 Copyright C 2001 by Academic Press All rights of reproduction in any form reserved.

Rico, J. L. Nieto, J. Santoro, M. A. Jimenez, M. Bruix, J. L. Neira, and F. J. Blanco, Magn. Reson. Chem. 30, 1012 (1992). S. Neal and D. S. Wishart (unpublished data). 18 GENERAL TECHNIQUES [1] Nitrogen shifts are also sensitive measures of protein structure and dynamics. Like 1HN shifts, they are primarily affected by φ/ψi−1 backbone dihedral angles. , the amino acid residue type). Approximately 15 ppm of the chemical shift variation associated with 15N shifts arises from these covalent effects.

24,26,27 In particular, by using predetermined nucleus-specific frequency ratios (called or 8 D. S. Wishart, B. D. Sykes, and F. M. Richards, Biochemistry 31, 1647 (1992). W. J. Metzler, K. L. Constantine, M. S. Friedrichs, A. J. Bell, and E. G. Ernst, Biochemistry 32, 13818 (1993). 10 A. M. Gronenborn and G. M. Clore, J. Biomol. NMR 4, 455 (1994). 11 K. Osapay ¨ and D. A. Case, J. Biomol. NMR 4, 215 (1994). 12 G. Wagner, A. Pardi, and K. Wuthrich, J. Am. Chem. Soc. 105, 5948 (1983). 13 D. S. Wishart, B.

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