Physical Principles and Techniques of Protein ChemistrySydney J. Leach Physical Principles and Techniques of Protein Chemistry Part C ... |
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Page 151
... molar absorption coefficients at 288 mu ( viz . 75 ) and at 280 mu ( viz . 120 ) , before calculations are carried out using Eqs . ( 17 ) . ( Correction for cystine absorption is less important at alkaline pH . In the method of Goodwin ...
... molar absorption coefficients at 288 mu ( viz . 75 ) and at 280 mu ( viz . 120 ) , before calculations are carried out using Eqs . ( 17 ) . ( Correction for cystine absorption is less important at alkaline pH . In the method of Goodwin ...
Page 370
... molar concn . of ith ion thickness of the ionic atmosphere ( molar ) concentration of macromolecules cross - sectional area of electrophoresis channel refractive index ( molar ) concentration of macromolecular ions in dialyzed solution ...
... molar concn . of ith ion thickness of the ionic atmosphere ( molar ) concentration of macromolecules cross - sectional area of electrophoresis channel refractive index ( molar ) concentration of macromolecular ions in dialyzed solution ...
Page 452
... molar concentrations of A and B , respectively constituent molar concentrations of A and B , respectively binding functions describing complex formation between solutes A and B constituent concentration ( weight scale ) of solute B I ...
... molar concentrations of A and B , respectively constituent molar concentrations of A and B , respectively binding functions describing complex formation between solutes A and B constituent concentration ( weight scale ) of solute B I ...
Contents
Electron Microscopy | 2 |
Ultraviolet Absorption | 3 |
Dielectric Properties of Proteins | 7 |
Copyright | |
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absorption absorption spectrum amino acids applied atoms axis Biochem Biol Biophys birefringence boundary bovine serum albumin buffer calculated Cann cell Chem chromophores coefficient components concentration curve Debye denaturation density determined dielectric constant dielectric increment dielectric relaxation difference spectrum dipole moment Edelhoch effects electric birefringence electric field electron microscope electrophoresis elution volume emission enzyme equation equilibrium excitation experimental film fluorescence fraction frequency gel filtration gradient groups instrument intensity interactions ionic strength ions lens light linear macromolecules magnification measured method micrographs migration mobility molar molecular weight molecules moving-boundary observed obtained optical ovalbumin parameter particles peaks permanent dipole perturbation phase phenolic photomultiplier Phys plot polarization polymer produced protein quantum yield ratio reaction relaxation residues resolution resolving power ribonuclease scattering shadow shown in Fig solution solvent specimen spectra structure studies technique temperature theoretical theory tion tryptophan tyrosine values wavelength Weber Winzor zone