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Fundamentals of Protein NMR Spectroscopy by Gordon S. Rule and T. Kevin Hitchens.

By: Contributor(s): Series: Focus on structural biology ; v. 5Publication details: Dordrecht : Springer, c2006.Description: xxvi, 530 p. : ill. ; 25 cmISBN:
  • 1402034997 (Hbk)
  • 9781402034992
Subject(s): DDC classification:
  • 23 572.636 R861F
LOC classification:
  • QD381 .R85 2006
Online resources:
Contents:
NMR spectroscopy. -- Practical aspects of acquiring NMR spectra. -- Introduction to signal processing. -- Quantum mechanical description of NMR. -- Quantum mechanical description of a one pulse experiment. -- The density matrix & product operators. -- Scalar coupling. -- Coupled spins: density matrix and product operator formalism. -- Two dimensional homonuclear J-correlated spectroscopy. -- Two dimensional heteronuclear J-correlated spectroscopy. -- Coherence editing: pulsed-field gradients and phase cycling. -- Quadrature detection in multi-dimensional NMR spectroscopy. -- Resonance assignments: homonuclear methods. -- Resonance assignments: heteronuclear methods. -- Practical aspects of N-dimensional data acquisition and processing. -- Dipolar coupling. -- Protein structure determination. -- Exchange processes. -- Nuclear spin relaxation and molecular dynamics. -- Appendices: A. Fourier transforms ; B. Complex variables, scalars, vectors, and tensors ; C. Solving simultaneous differential equations: Laplace transforms ; D. Building blocks of pulse sequences.
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Item type Current library Collection Call number Status Date due Barcode
Books Books Central Library, IISER Bhopal Reference Section Reference 572.636 R861F (Browse shelf(Opens below)) Not For Loan 7477

Includes bibliographical references and index.

NMR spectroscopy. -- Practical aspects of acquiring NMR spectra. -- Introduction to signal processing. -- Quantum mechanical description of NMR. -- Quantum mechanical description of a one pulse experiment. -- The density matrix & product operators. -- Scalar coupling. -- Coupled spins: density matrix and product operator formalism. -- Two dimensional homonuclear J-correlated spectroscopy. -- Two dimensional heteronuclear J-correlated spectroscopy. -- Coherence editing: pulsed-field gradients and phase cycling. -- Quadrature detection in multi-dimensional NMR spectroscopy. -- Resonance assignments: homonuclear methods. -- Resonance assignments: heteronuclear methods. -- Practical aspects of N-dimensional data acquisition and processing. -- Dipolar coupling. -- Protein structure determination. -- Exchange processes. -- Nuclear spin relaxation and molecular dynamics. -- Appendices: A. Fourier transforms ; B. Complex variables, scalars, vectors, and tensors ; C. Solving simultaneous differential equations: Laplace transforms ; D. Building blocks of pulse sequences.

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