Physical Principles and Techniques of Protein Chemistry, Part 2Sydney J. Leach, Sidney J. Leach Physical Principles and Techniques of Protein Chemistry, Part B deals with the theories and application of selected physical methods in protein chemistry evaluation. This book is divided into seven chapters that cover the ultracentrifugal analysis, light scattering, infrared (IR) methods, nuclear magnetic resonance (NMR) spectroscopy, and differential thermal analysis of protein properties. This text first describes the fundamental ideas and methodology of sedimentation analysis of ideal noninteracting solutes and the problems of nonideality and solute-solute interaction. This book then deals ... |
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Page 119
... bond angles or rotation about bonds , and it can be shown that ( r2 ) av = l2n ( 36 ) where n is the number of bonds each of length . However , real polymer chains are restricted to finite bond angles and there is limited rotation about ...
... bond angles or rotation about bonds , and it can be shown that ( r2 ) av = l2n ( 36 ) where n is the number of bonds each of length . However , real polymer chains are restricted to finite bond angles and there is limited rotation about ...
Page 251
... bond - bending and CO and NH bond - stretching vibrations , respectively ( Darmon and Sutherland , 1947 ) . The frequency of the NH stretching mode is considerably lower and the half - bandwidth considerably greater than is observed in ...
... bond - bending and CO and NH bond - stretching vibrations , respectively ( Darmon and Sutherland , 1947 ) . The frequency of the NH stretching mode is considerably lower and the half - bandwidth considerably greater than is observed in ...
Page 369
... bond lengths and by bond angles that are fairly regular . More than one ligand atom may coordinate to the metal atom with displacement of water . The exact num- ber of coordinating ligands and the coordination geometry is generally ...
... bond lengths and by bond angles that are fairly regular . More than one ligand atom may coordinate to the metal atom with displacement of water . The exact num- ber of coordinating ligands and the coordination geometry is generally ...
Contents
Ultracentrifugal Analysis J H Coates | 1 |
Glossary of Symbols | 2 |
Introduction | 3 |
Copyright | |
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absorption acid amino anions atoms axial ratio band beam binding Biol bond Bradbury calculated capillary cell centrifugal chain changes Chem chemical shifts complex component concentration constant copper(II denaturation density gradient dependence determined dilution Doty effect electron ellipsoid enzyme equation extrapolation field Fraser frequency fringe Gurd histidine hydrogen ion imidazole imidazole groups instrument interaction intrinsic viscosity Jardetzky length light scattering light-scattering line width lysozyme macromolecule magnetic measured meniscus metal ion method molecular weight molecule myoglobin nuclei observed obtained optical density optical system partial specific volume particle PBLG peak peptide Phys plot Polymer Sci Proc protein solution protons random coil Rayleigh reference refractive index relaxation residues resonance RNase rotation rotor sample schlieren Section sedimentation coefficient sedimentation equilibrium shearing stress slit solvent spectra spectrum speed structure studies Tanford technique temperature Timasheff tion transition ultracentrifuge values velocity Vinograd viscometer zero zone