Physical Principles and Techniques of Protein ChemistryPhysical Principles and Techniques of Protein Chemistry Part C ... |
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Page 375
The mobility of the sphere is then given by Dyo H = han ( 6 ) Equations ( 5 ) and (
6 ) are developed for charged particles ... As a consequence of the electrostatic
force between the charge on the particle and the ions of the electrolyte , there are
...
The mobility of the sphere is then given by Dyo H = han ( 6 ) Equations ( 5 ) and (
6 ) are developed for charged particles ... As a consequence of the electrostatic
force between the charge on the particle and the ions of the electrolyte , there are
...
Page 376
This charge is not necessarily identical with the net charge of the particle , since
some of the ions of the ionic atmosphere may be present within the surface of
shear , thereby reducing the electrophoretic charge below that which ...
This charge is not necessarily identical with the net charge of the particle , since
some of the ions of the ionic atmosphere may be present within the surface of
shear , thereby reducing the electrophoretic charge below that which ...
Page 378
In essence , the electrophoretic charge of DNA agrees well with its net charge as
derived from a thermodynamic measurement . Similarly , when the
electrophoretic charge calculated for ovalbumin assuming a spherical shape (
Eqs . ( 8 ) and ...
In essence , the electrophoretic charge of DNA agrees well with its net charge as
derived from a thermodynamic measurement . Similarly , when the
electrophoretic charge calculated for ovalbumin assuming a spherical shape (
Eqs . ( 8 ) and ...
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Contents
The Enhancement of Contrast | 21 |
The Preservation of Specimens | 35 |
Examples of the Application of Electron Microscopy to the Study | 48 |
Copyright | |
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absorbance absorption acid appears applied atoms axis binding birefringence boundary buffer calculated cell charge Chem chromophores complex concentration constant containing contrast corrected corresponding curve decrease dependence determined dielectric difference diffusion dipole direction discussed distribution effect electric electric field electron electrophoresis emission energy equation equilibrium example excitation experimental experiments factor fluorescence fraction frequency function given groups Herskovits important increase indicates intensity interactions ionic ions length light limited macromolecules measured method mobility molecular molecules observed obtained occurs optical orientation particles patterns peaks perturbation phase phenolic polarization position possible preparation present produced protein quantum range ratio reaction reference relative relaxation respectively rotation sample separation serum albumin shift shown single solution solvent specimen spectra spectrum strength structure studies technique temperature theory tion transfer transition tryptophan unit usually volume wavelength yield zone