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The technique of nuclear magnetic resonance (NMR) spectroscopy is an important tool in biochemistry and biophysics for the understanding of the structure and, ultimately, the function of biomolecules. This textbook explains the salient features of biological NMR spectroscopy to undergraduates and postgraduates taking courses in NMR, biological NMR, physical biochemistry, and biophysics. Unlike other books in the general field of NMR (except the advanced treatises), the approach here is to introduce and make use of quantum mechanical product operators as well as the classical vector method of explaining the bewildering array of pulse sequences available today. The book covers two-dimensional, three-dimensional, and four-dimensional NMR, and their application to protein and DNA structure determination. A unique feature is the coverage of the biological aspects of solid-state NMR spectroscopy. The author provides many selected examples from the research literature, illustrating the applications of NMR spectroscopy to biological proteins.
This textbook investigates the fundamental principles and practical applications of nuclear magnetic resonance (NMR) spectroscopy as a primary method for determining the structure and function of biomolecules. Author Jeremy N. S. Evans, drawing on his expertise in biophysics, provides a structured framework that bridges the gap between classical vector models and advanced quantum mechanical product operators. The text serves as a comprehensive guide for students and researchers to navigate the complex landscape of modern pulse sequences and multidimensional NMR techniques.
What You Will Find
Experts and educators frequently cite this text as a foundational resource for students transitioning from basic biochemistry to advanced biophysical analysis. Readers often note the balance between theoretical rigor and practical application, making it a standard reference for those mastering complex pulse sequences.
Page Count:
464
Publication Date:
1995-09-28
Publisher:
Oxford University Press
ISBN-10:
0198547668
ISBN-13:
9780198547662
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