Physical Principles and Techniques of Protein Chemistry, Part 1 |
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Page xiii
... Magnetic Resonance Spectroscopy J. C. Metcalfe Ion Binding (Including
Proton Binding) Frank R. N. Gurd Differential Thermal Analysis Hirokazu Morita
Hydrogen Exchange S. O. Nielsen and S. W. Englander 1 [] Electron Microscopy
III. IV.
... Magnetic Resonance Spectroscopy J. C. Metcalfe Ion Binding (Including
Proton Binding) Frank R. N. Gurd Differential Thermal Analysis Hirokazu Morita
Hydrogen Exchange S. O. Nielsen and S. W. Englander 1 [] Electron Microscopy
III. IV.
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Contents
Electron Microscopy | 2 |
Dielectric Properties of Proteins | 7 |
Operational Requirements for HighResolution Electron | 15 |
Copyright | |
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absorbance absorption acid albumin appears applied atoms axis binding birefringence boundary buffer calculated cell charge Chem chromophores concentration constant containing contrast corrected corresponding curve dependence determined dielectric difference diffusion dipole direction effect electric electric field electron electrophoresis emission energy equation equilibrium example excitation experimental experiments factor field flow fluorescence fraction frequency function given groups important increase indicates intensity interactions ionic ions length light limited macromolecules measured method microscope mobility molecular molecules observed obtained occurs optical particles patterns peaks perturbation phase polarization position possible preparation present produced protein range ratio reaction reference relative relaxation resolution respectively rotation sample separation serum shift shown single solution solvent specimen spectra spectrum strength structure studies technique temperature theory tion tryptophan unit usually values volume wavelength weight yield zone