Description

Book Synopsis
The renowned Oxford Chemistry Primers 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.This new edition of NMR Spectroscopy in Inorganic Chemistry has been extensively updated to include worked examples, problems, self-test questions, and interactive online questions encouraging active learning and promoting a deeper understanding. With a concise and accessible introduction to predicting NMR spectra and expanded sections on quadrupolar nuclei, this excellent introductory text will help students get to grips with the bas

Trade Review
Review from previous edition This edition is perfect for anyone undergraduate or post-graduate to broaden their knowledge on NMR. These are ideal as study guides and they are useful as quick summaries for students. I think this is the best book for the job. * Ian Butler, Department of Chemistry, University of Bangor *
A good overview of the topic with some nice specific examples for teaching. * Katherine Haxton, Department of Chemistry, Keele University *
An excellent introductory text. * Bela Bode, School of Chemistry, University of St Andrews *

Table of Contents
1: Fundamentals 2: Structure determination 3: Factors influencing the chemical shift and coupling constants 4: Experimental methods: pulses, the vector model and relaxation 5: Polarization transfer and 2D NMR spectroscopy 6: Dynamic NMR spectroscopy 7: The solid state

NMR Spectroscopy in Inorganic Chemistry

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    £32.99

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    Order before 4pm today for delivery by Thu 18 Jun 2026.

    A Paperback / softback by Jonathan A. Iggo, Konstantin Luzyanin

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      View other formats and editions of NMR Spectroscopy in Inorganic Chemistry by Jonathan A. Iggo

      Publisher: Oxford University Press
      Publication Date: 30/04/2020
      ISBN13: 9780198794851, 978-0198794851
      ISBN10: 0198794851

      Description

      Book Synopsis
      The renowned Oxford Chemistry Primers 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.This new edition of NMR Spectroscopy in Inorganic Chemistry has been extensively updated to include worked examples, problems, self-test questions, and interactive online questions encouraging active learning and promoting a deeper understanding. With a concise and accessible introduction to predicting NMR spectra and expanded sections on quadrupolar nuclei, this excellent introductory text will help students get to grips with the bas

      Trade Review
      Review from previous edition This edition is perfect for anyone undergraduate or post-graduate to broaden their knowledge on NMR. These are ideal as study guides and they are useful as quick summaries for students. I think this is the best book for the job. * Ian Butler, Department of Chemistry, University of Bangor *
      A good overview of the topic with some nice specific examples for teaching. * Katherine Haxton, Department of Chemistry, Keele University *
      An excellent introductory text. * Bela Bode, School of Chemistry, University of St Andrews *

      Table of Contents
      1: Fundamentals 2: Structure determination 3: Factors influencing the chemical shift and coupling constants 4: Experimental methods: pulses, the vector model and relaxation 5: Polarization transfer and 2D NMR spectroscopy 6: Dynamic NMR spectroscopy 7: The solid state

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