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As a spectroscopic method, Nuclear Magnetic Resonance (NMR) has
seen spectacular growth over the past two decades, both as a
technique and in its applications. Today the applications of NMR
span a wide range of scientific disciplines, from physics to
biology to medicine. Each volume of Nuclear Magnetic Resonance
comprises a combination of annual and biennial reports which
together provide comprehensive of the literature on this topic.
This Specialist Periodical Report reflects the growing volume of
published work involving NMR techniques and applications, in
particular NMR of natural macromolecules which is covered in two
reports: "NMR of Proteins and Acids" and "NMR of Carbohydrates,
Lipids and Membranes." For those wanting to become rapidly
acquainted with specific areas of NMR, this title provides
unrivalled scope of coverage. Seasoned practitioners of NMR will
find this an in valuable source of current methods and
applications. Specialist Periodical Reports provide systematic and
detailed review coverage in major areas of chemical research.
Compiled by teams of leading authorities in the relevant subject
areas, the series creates a unique service for the active research
chemist, with regular, in-depth accounts of progress in particular
fields of chemistry. Subject coverage within different volumes of a
given title is similar and publication is on an annual or biennial
basis.
As a spectroscopic method, Nuclear Magnetic Resonance (NMR) has
seen spectacular growth over the past two decades, both as a
technique and in its applications. Today the applications of NMR
span a wide range of scientific disciplines, from physics to
biology to medicine. Each volume of Nuclear Magnetic Resonance
comprises a combination of annual and biennial reports which
together provide comprehensive of the literature on this topic.
This Specialist Periodical Report reflects the growing volume of
published work involving NMR techniques and applications, in
particular NMR of natural macromolecules which is covered in two
reports: "NMR of Proteins and Acids" and "NMR of Carbohydrates,
Lipids and Membranes." For those wanting to become rapidly
acquainted with specific areas of NMR, this title provides
unrivalled scope of coverage. Seasoned practitioners of NMR will
find this an in valuable source of current methods and
applications. Specialist Periodical Reports provide systematic and
detailed review coverage in major areas of chemical research.
Compiled by teams of leading authorities in the relevant subject
areas, the series creates a unique service for the active research
chemist, with regular, in-depth accounts of progress in particular
fields of chemistry. Subject coverage within different volumes of a
given title is similar and publication is on an annual or biennial
basis.
As a spectroscopic method, Nuclear Magnetic Resonance (NMR) has
seen spectacular growth over the past two decades, both as a
technique and in its applications. Today the applications of NMR
span a wide range of scientific disciplines, from physics to
biology to medicine. Each volume of Nuclear Magnetic Resonance
comprises a combination of annual and biennial reports which
together provide comprehensive of the literature on this topic.
This Specialist Periodical Report reflects the growing volume of
published work involving NMR techniques and applications, in
particular NMR of natural macromolecules which is covered in two
reports: "NMR of Proteins and Acids" and "NMR of Carbohydrates,
Lipids and Membranes." For those wanting to become rapidly
acquainted with specific areas of NMR, this title provides
unrivalled scope of coverage. Seasoned practitioners of NMR will
find this an in valuable source of current methods and
applications. Specialist Periodical Reports provide systematic and
detailed review coverage in major areas of chemical research.
Compiled by teams of leading authorities in the relevant subject
areas, the series creates a unique service for the active research
chemist, with regular, in-depth accounts of progress in particular
fields of chemistry. Subject coverage within different volumes of a
given title is similar and publication is on an annual or biennial
basis.
Introduction to NMR Spectroscopy R. J. Abraham, School of Chemistry, University of Liverpool J. Fisher, Biological NMR Centre, University of Leicester P. Loftus, Stuart Pharmaceuticals, Delaware, USA This book is a new, extended edition of Proton and Carbon 13 NMR by R. J. Abraham and P. Loftus. The initial chapters cover the fundamentals of NMR spectroscopy commencing with an explanation of how the nuclear magnetic response occurs, followed by a detailed discussion of chemical shifts and coupling constants, parameters not discussed to any length in other textbooks aimed at a similar level of interest. Emphasis is given to the vectorial description of multipulse experiments, as this is probably the easiest way to grasp how different information may be gained simply by changing a pulse sequence. An understanding of multipulse NMR is a prerequisite for understanding 2D NMR. The section on 2D NMR begins with a discussion of the resolved experiment. This is a logical initial choice as the spectra produced by this experiment may be readily compared with 1D spectra. Following on from this both heteronuclear and homonuclear correlation spectroscopy are described and examples given. The final section of the book should be considered as an applications section. It is aimed at showing the reader that NMR is not just of use to the synthetic organic chemist but is also of use to biochemists for investigating the solution state structure and function of proteins, enzymes, etc. The application of high resolution NMR to the solid state is also discussed, thereby indicating the developments which have taken place as far as spectrometer hardware is concerned.
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