Physical Principles and Techniques of Protein Chemistry, Part 3Sydney J. Leach |
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Page 79
... osmotic pressure with the molecular weight M. The quest for unambiguous values of M has not abated and will not be resolved in the near future by the perfunctory use of a single , universally accepted technique ... OSMOTIC PRESSURE 79.
... osmotic pressure with the molecular weight M. The quest for unambiguous values of M has not abated and will not be resolved in the near future by the perfunctory use of a single , universally accepted technique ... OSMOTIC PRESSURE 79.
Page 117
... osmotic pressure method . The measurement of a pressure difference per se is not even necessary . Hill ( 1959 ) has discussed the possibility of measuring very small osmotic pressures in terms of an electric or magnetic field . Ogston ...
... osmotic pressure method . The measurement of a pressure difference per se is not even necessary . Hill ( 1959 ) has discussed the possibility of measuring very small osmotic pressures in terms of an electric or magnetic field . Ogston ...
Page 120
... osmotic pressure method to the question of molec- ular conformation of proteins has received only moderate attention . The work of Lapanje and Tanford ( 1967 ) and of Castellino and Barker ( 1968 ) on protein subunits denatured in ...
... osmotic pressure method to the question of molec- ular conformation of proteins has received only moderate attention . The work of Lapanje and Tanford ( 1967 ) and of Castellino and Barker ( 1968 ) on protein subunits denatured in ...
Contents
F Density and Composition | 16 |
Direct Volume Change | 22 |
Density | 32 |
Copyright | |
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a-helix absorption acid Amer angle B-structure band Biochem Biochemistry Biol c₂ calculated CD spectra Chem chemical potential chromophore coefficient conformation constant Cotton effects cross-section denaturation determined dialyzate difference diffusible components dilute Donnan electron density enzyme equation equilibrated equilibrium exciton experimental function gm/ml grams helical helix hemocyanin hemoglobin intensity interaction Kratky Kupke Linderstrøm-Lang macromolecules magnetic measurements membrane method mixture molal molecular weight molecule monomer myoglobin negative nondiffusible components nonideality number of moles obtained optical activity osmometers osmotic pressure parameter partial specific volume particles peptide Phys Pilz plot polymer polypeptides positive potential procedure protein component protein concentration protein solution radius of gyration random coil residues rotational strength salt sample Scatchard Schellman Section shape small-angle scattering solvent solvent medium spectrum sphere structure subunits temperature Tinoco tion transition v₂ volume change wavelength zero