Nuclear Magnetic Resonance and Relaxation

Nuclear Magnetic Resonance and Relaxation PDF Author: B. P. Cowan
Publisher: Cambridge University Press
ISBN: 0521303931
Category : Science
Languages : en
Pages : 462

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Book Description
Advanced text on nuclear magnetic resonance.

Nuclear Magnetic Resonance and Relaxation

Nuclear Magnetic Resonance and Relaxation PDF Author: B. P. Cowan
Publisher: Cambridge University Press
ISBN: 0521303931
Category : Science
Languages : en
Pages : 462

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Book Description
Advanced text on nuclear magnetic resonance.

Nuclear Magnetic Resonance in Solids

Nuclear Magnetic Resonance in Solids PDF Author: Lieven Gerven
Publisher: Springer Science & Business Media
ISBN: 146842808X
Category : Science
Languages : en
Pages : 433

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Nuclear Magnetic Resonance On Relaxation In Solids

Nuclear Magnetic Resonance On Relaxation In Solids PDF Author: Ampere
Publisher:
ISBN:
Category :
Languages : it
Pages : 0

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Nuclear Magnetic Resonance and Relaxation in Solids

Nuclear Magnetic Resonance and Relaxation in Solids PDF Author: Lieven van Gerven
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 468

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Relaxation in Magnetic Resonance

Relaxation in Magnetic Resonance PDF Author: Charles P. Jr. Poole
Publisher: Elsevier
ISBN: 0323151825
Category : Science
Languages : en
Pages : 409

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Book Description
Relaxation in Magnetic Resonance contains a series of lecture notes for a special topics course at the University of South Carolina in 1967. This book contains 21 chapters that summarize the main theoretical formulations and experimental results of magnetic resonance relaxation phenomena in several physical systems. This text deals first with the various methods in determining the relaxation behavior of the macroscopic spin system, such as Bloch equations, saturation methods, and transient resonant absorption. The subsequent chapters discuss the homogeneous and inhomogeneous resonant lines in solids and liquids and the significance of the Kubo-Tomita and Redfield theories in magnetic resonance. This book then considers the background research on electron spin resonance and relaxation in ionic solids. The concluding chapters explore the acoustic absorption coefficient and dielectric constant calculation; the relaxation processes in paramagnetic substance; and the characteristics of Mössbauer spectra and their application in magnetic relaxation. This book will be useful to both graduate students embarking upon thesis problems in relaxation and more advanced workers who seek an overall summary of the status of the field, as well as to physicists and chemists.

Nuclear Magnetic Resonance and Relaxation in Solids

Nuclear Magnetic Resonance and Relaxation in Solids PDF Author: Lieven van Gerven
Publisher:
ISBN:
Category : Nuclear magnetic resonance
Languages : en
Pages : 468

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Nuclear Magnetic Resonance and Relaxation in Solids

Nuclear Magnetic Resonance and Relaxation in Solids PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Principles of High Resolution NMR in Solids

Principles of High Resolution NMR in Solids PDF Author: M. Mehring
Publisher: Springer Science & Business Media
ISBN: 3642687563
Category : Science
Languages : en
Pages : 352

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Book Description
The field of Nuclear Magnetic Resonance (NMR) has developed at a fascinating pace during the last decade. It always has been an extremely valuable tool to the organic chemist by supplying molecular "finger print" spectra at the atomic level. Unfortunately the high resolution achievable in liquid solutions could not be obtained in solids and physicists and physical chemists had to live with unresolved lines open to a wealth of curve fitting procedures and a vast amount of speculations. High resolution NMR in solids seemed to be a paradoxon. Broad structure less lines are usually encountered when dealing with NMR in solids. Only with the recent advent of mUltiple pulse, magic angle, cross-polarization, two-dimen sional and multiple-quantum spectroscopy and other techniques during the last decade it became possible to resolve finer details of nuclear spin interactions in solids. I have felt that graduate students, researchers and others beginning to get involved with these techniques needed a book which treats the principles, theo retical foundations and applications of these rather sophisticated experimental techniques. Therefore I wrote a monograph on the subject in 1976. Very soon new ideas led to the developement of "two-dimensional spectroscopy" and "multiple-quantum spectroscopy", topics which were not covered in the first edition of my book. Moreover an exponential growth of literature appeared in this area of research leaving the beginner in an awkward situation of tracing back from a current article to the roots of the experiment.

Transient Techniques in NMR of Solids

Transient Techniques in NMR of Solids PDF Author: Bernard C. Gerstein
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 320

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Book Description
This volume is an ideal starting point for the graduate student seeking a basic introduction to the theory and uses of solid-state nuclear magnetic resonance (NMR) spectroscopy. Accessible to students with only a survey-level physics background, the material assumes little prior knowledge of the basic theory of electromagnetism. All the major areas are covered, including an introduction to concepts of time-dependent quantum mechanics as they apply to NMR spectroscopy of the solid state. Each chapter includes problems designed to enhance the reader's understanding of the material. Instructive and practical, this volume provides the basic knowledge needed to access the general literature and the more advanced monographs on this subject. In addition to assisting entrance into the field, Transient Techniques in NMR of Solids will be a useful guide for professionals already working in related areas of chemistry. FROM THE PREFACE: Nuclear magnetic resonance (NMR) is truly a remarkable phenomenon. Remarkable can imply different things to different people. From the point of view of a physicist, spin dynamics is an elegant example of the use of time-dependent quantum mechanics, and NMR absorption of energy is a prototype for spectroscopic transitions. From the point of view of the practicing chemist and materials scientist, NMR spectroscopy is an invaluable tool for the identification of chemical species and structures. Had NMR spectroscopic techniques commercially available in the early 1960s been the only result of investigations of this phenomenon, it would have had a major impact on the course of chemical analysis. The study of liquids and solutions for chemical shifts and couplings of protons had produced a rapid means of identifying chemical species nondestructively. The study of dynamical properties also could be addressed by study of temperature dependence of the spectra or of the saturation of the resonance by high-power irradiation. Even at that time, however, studies of the spin dynamics had already begun to indicate that there were many interesting facets of the NMR phenomenon left to exploit. For example, the Fourier-transform relationship of the free-induction decay and the absorption spectrum had been shown and the basis of the cross-polarization experiment was being investigated. A number of chemists had begun to study the spin*b1lattice relaxation times of species by pulse NMR techniques by utilizing methods that were not familiar at that time to the typical chemist but that are now commonly employed in NMR analysis. The principal characteristic of the NMR technique that makes it so useful for chemical analysis of liquids and solutions is the high resolution that allows one to observe very small interactions such as the chemical shift and the spin*b1spin coupling. These weak interactions are quite sensitive to the local environment of the spin and therefore may be used as a diagnostic for the environment. The connectivity of chemical structure is often mimicked closely in the NMR connectivity of the spectrum, and quantitative informaton is relatively easy to obtain. Nuclear magnetic resonance spectra of solids exhibit such resolution only in special cases. The primary (although not the exclusive) reason for the lack of resolution in the spectrum of a typical solid is the presence of the dipole*b1dipole interaction, which dominates the NMR spectroscopy of solids that have been of interest to chemists. One solution (no pun intended) to the problem of obtaining chemical-shift information about such solids is to dissolve them and to study them in solution. However, if the solid is insoluble or otherwise intractable or if the analysis involves questions about the properties of the substance in the solid state, then there arises a need for techniques to study the weaker interactions in the presence of the dipole*b1dipole interaction or other overwhelming interactions. This volume describes the means dev

Nuclear Magnetic Resonance Spectroscopy

Nuclear Magnetic Resonance Spectroscopy PDF Author: Frank A. Bovey
Publisher: Elsevier
ISBN: 0080916996
Category : Science
Languages : en
Pages : 668

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Book Description
Nuclear Magnetic Resonance Spectroscopy, Second Edition focuses on two-dimensional nuclear magnetic resonance (NMR) spectroscopy, high resolution NMR of solids, water suppression, multiple quantum spectroscopy, and NMR imaging. The selection first takes a look at the fundamental principles and experimental methods. Discussions focus on the NMR phenomenon, dipolar broadening and spin-spin relaxation, nuclear electric quadrupole relaxation, saturation, magnetic shielding and chemical shift, magnetic field, transitions between the nuclear energy levels, and resolution and sensitivity considerations. The manuscript then ponders on chemical shift, coupling of nuclear spins, and nuclear relaxation and chemical rate processes. Topics include spin lattice relaxation, spin-spin relaxation, spin decoupling and associated techniques, and description and analysis of spin systems. The text examines two-dimensional NMR spectroscopy, macromolecules, and NMR of solids, including magic angle spinning, cross polarization, proton dipolar broadening, biopolymers, and chain motion in macromolecules. The selection is a valuable source of data for readers interested in nuclear magnetic resonance spectroscopy.