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High Resolution NMR in the Solid State

Stejskal Memory

$380

Hardback

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English
Oxford University Press Inc
25 August 1994
This text was developed from a course for physical chemistry and chemical physics students using cross-polarization (CP) magic angle spinning (MAS) NMR in their laboratory assignments.

The book provides students with the details of the CP/MAS experiment as it is used to obtain rare-spin, high-resolution NMR spectra.

The design of the CP/MAS experiments and the interpretation of spectra and relaxation measurements require an understanding of the interplay of several fundamental physical interactions not normally encountered in solution NMR. The student can observe the way interacting spin systems behave in the solid state, and have a quantum mechanically rigorous understanding of solid-state spin phenomena.

The text will have the added benefit of serving as a self-study resource for students seeking to learn the underlying principles of laboratory experiments using the technique.

The history of NMR is also treated, and the instrumentation of the spectrometer and probe are discussed.

By:   ,
Imprint:   Oxford University Press Inc
Country of Publication:   United States
Dimensions:   Height: 244mm,  Width: 160mm,  Spine: 20mm
Weight:   440g
ISBN:   9780195073805
ISBN 10:   0195073800
Pages:   208
Publication Date:  
Audience:   Professional and scholarly ,  Undergraduate
Format:   Hardback
Publisher's Status:   Active
1: Introduction to NMR Principles 2: High Resolution Methods in the Solid State 3: Spin-Spin Interactions 4: Magic Angle Sample Spinning 5: Spectrometer and Probe Design Appendix A1 Vectors, Matrices, and Complex Numbers: Appendix A2 Geometric Considerations: Appendix A3 Spinning Sidebands: Appendix A4 Average Hamiltonian Theory: Appendix A5 Transmission Lines: Appendix A6 Phase Sensitive Detection: Bibliography:

Reviews for High Resolution NMR in the Solid State

A fascinating introduction to the subject ... highly recommend it to those wishing to make the jump from solution NMR. -- NMR Newsletter


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