NMR and Chemistry : An introduction to modern NMR spectroscopy, Fourth Edition
Book Details
Format
Paperback / Softback
ISBN-10
0748743448
ISBN-13
9780748743445
Publisher
Taylor & Francis Ltd
Imprint
Nelson Thornes Ltd
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Feb 17th, 2000
Print length
400 Pages
Weight
772 grams
Dimensions
24.30 x 18.80 x 2.40 cms
Product Classification:
Magnetic resonanceSpectrum analysis, spectrochemistry, mass spectrometry
Ksh 12,050.00
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This is an introduction to current high resolution NMR practice. It provides the physical background to NMR spectroscopy from the point of view of the whole periodic table rather than concentrating on the narrow applications of 1H and 13C NMR spectroscopy.
Keeping mathematics to a minimum, this book introduces nuclear properties, nuclear screening, chemical shift, spin-spin coupling, and relaxation. It is one of the few books that provides the student with the physical background to NMR spectroscopy from the point of view of the whole of the periodic table rather than concentrating on the narrow applications of 1H and 13C NMR spectroscopy. Aids to structure determination, such as decoupling, the nuclear Overhauser effect, INEPT, DEPT, and special editing, and two dimensional NMR spectroscopy are discussed in detail with examples, including the complete assignment of the 1H and 13C NMR spectra of D-amygdain.
The authors examine the requirements of a modern spectrometer and the effects of pulses and discuss the effects of dynamic processes as a function of temperature or pressure on NMR spectra. The book concludes with chapters on some of the applications of NMR spectroscopy to medical and non-medical imaging techniques and solid state chemistry of both I = F1/2 and I > F1/2 nuclei. Examples and problems, mainly from the recent inorganic/organometallic chemistry literature support the text throughout. Brief answers to all the problems are provided in the text with full answers at the end of the book.
The authors examine the requirements of a modern spectrometer and the effects of pulses and discuss the effects of dynamic processes as a function of temperature or pressure on NMR spectra. The book concludes with chapters on some of the applications of NMR spectroscopy to medical and non-medical imaging techniques and solid state chemistry of both I = F1/2 and I > F1/2 nuclei. Examples and problems, mainly from the recent inorganic/organometallic chemistry literature support the text throughout. Brief answers to all the problems are provided in the text with full answers at the end of the book.
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