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Describes advanced experimental details of NMR
Includes details of application to life and material sciences
Provides useful information not only for beginning researchers but also for skilled researchers
Describes advanced experimental details of NMR Includes details of application to life and material sciences Provides useful information not only for beginning researchers but also for skilled researchers Includes supplementary material: sn.pub/extras
Auteur
The Nuclear Magnetic Resonance Society of Japan was officially constituted on April 1st , 2002. The society promotes the basic and applied studies on nuclear magnetic resonance as well as enlightenment and instructional activity. The society also performs annually a necessary academic meeting and publication of the bulletin, and other service for the achievement. As a part of the activity of the society, it design publication of experimental approaches of NMR spectroscopy including application to life and material sciences.
Contenu
Protein studies by high pressure NMR.- Isotope-Aided Methods for Biological NMR Spectroscopy: Past, Present and Future.- Advances in NMR data acquisition and processing for protein structure determination.- Advances in high field DNP methods.- Photoirradiation and Microwave irradiation NMR Spectroscopy.- Solid-state NMR under ultrafast MAS rate of 40 - 120 kHz.- Elucidating Functional Dynamics by R1 and R2 Relaxation Dispersion NMR Spectroscopy.- Structural Study of Proteins by Paramagnetic Lanthanide Probe Methods.- Structure determination of membrane peptides and proteins by solid-state NMR.- NMR studies on silk materials.- NMR studies on polymer materials.- Solid-State 2H NMR studies of molecular motion in functional materials.- NMR Spectral Observations of the Gases in Polymer Materials.- NMR studies on natural product: Stereochemical determination and conformational analysis in solution and in membrane.- Technical basis for nuclear magnetic resonance approach for glycoproteins.-NMR studies on RNA.- NMR analysis of molecular complexity.- NMR of paramagnetic compounds.- NMR of quadrupole nuclei in organic compounds.- NMR of quadrupole nuclei, inorganic materials.- Protein ligand interactions as studied by NMR.- Protein structure and dynamics determination by residual anisotropic spin interactions.