Polyelectrolytes |
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Page 13
... total volume of which is equal to Nu , where N is the total number of macroions and v is the apparent ( effective ) ... total volume of the solution . In the absence of simple electrolytes the total number of counter ions of charge eo in ...
... total volume of which is equal to Nu , where N is the total number of macroions and v is the apparent ( effective ) ... total volume of the solution . In the absence of simple electrolytes the total number of counter ions of charge eo in ...
Page 24
... number or the density of gas molecules . Above this critical point the increase of the number of molecules does not ... total number of counter ions , or the total number of molecules . ( — ) : The number of free counter ions or the ...
... number or the density of gas molecules . Above this critical point the increase of the number of molecules does not ... total number of counter ions , or the total number of molecules . ( — ) : The number of free counter ions or the ...
Page 96
... total number of polyvalent counter ions is smaller than that corresponding to the total charge of the macroion , it is conven- ient to define solution 1 to contain macroions , all of the polyvalent counter ions , and sufficient ...
... total number of polyvalent counter ions is smaller than that corresponding to the total charge of the macroion , it is conven- ient to define solution 1 to contain macroions , all of the polyvalent counter ions , and sufficient ...
Contents
Preface | 1 |
theoretically understandable Idealized treatment based on the simplest | 5 |
Electrical Potential Around the Macroion | 9 |
Copyright | |
17 other sections not shown
Common terms and phrases
absence of salt activity coefficient activity of counter addition of salt additivity law alkali apparent charge average bound counter ions chain Chapter charge density charged groups chemical potential coefficient of counter concentration of counter concentration of free concentration of macroions copolymer counter ion condensation critical value cylindrical macroion decreases degree of dissociation degree of neutralization density Q derived dielectric constant dielectric increment electric free energy electric potential entropy equilibrium experimental extensive force fluctuation free counter ions free energy free volume hydrogen ions increase interaction ionized groups kinds of counter macromolecules monomers monovalent number of charged number of counter number of free osmotic coefficient osmotic pressure Poisson-Boltzmann equation polyacids polyacrylic acid polyelectrolytes polyvalent counter ions proportional radius random coil ratio refractive index region relation result rodlike macroions rods salt concentration salt solution shown in Fig simple salt small ions sodium ions spherical macroion total number valence