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Product details:
- Edition number 2
- Publisher OUP Oxford
- Date of Publication 21 May 2015
- ISBN 9780198703426
- Binding Paperback
- No. of pages136 pages
- Size 247x190x6 mm
- Weight 238 g
- Language English 0
Categories
Short description:
This primer describes succinctly the range of NMR techniques commonly used in modern research, and explains how these experiments actually work, giving a unique perspective on this powerful experimental tool.
MoreLong description:
The renowned Oxford Chemistry Primer series, which provides focused introductions to a range of important topics in chemistry, has been refreshed and updated to suit the needs of today's students, lecturers, and postgraduate researchers. The rigorous, yet accessible, treatment of each subject area is ideal for those wanting a primer in a given topic to prepare them for more advanced study or research. Moreover, cutting-edge examples and applications throughout the texts show the relevance of the chemistry being described to current research and industry.
The learning features provided, including questions at the end of every chapter and online multiple-choice questions, encourage active learning and promote understanding. Furthermore, frequent diagrams, margin notes, further reading, and glossary definitions all help to enhance a student's understanding of these essential areas of chemistry.
NMR: The Toolkit describes succinctly the range of NMR techniques commonly used in modern research to probe the structures and properties of molecules in liquids. Emphasis is placed throughout on how these experiments actually work, giving a unique perspective on this powerful experimental tool.
Online Resources
The online resources to accompany NMR The Toolkit: How Pulse Sequences Work feature:
For registered adopters of the text:
? Figures from the book available to download
For students:
? Full worked solutions to the end-of-chapter exercises
Table of Contents:
Part A: Product Operators
The vector model
Fourier transform NMR
Product operators I
Product operators II
Two-dimensional NMR
Phase cycling and pulsed field gradients
Part B: Quantum mechanics
Quantum mechanics
Density matrices
Weak coupling
Strong coupling and equivalence