Foundations of Colloid Science, Volume 2 |
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Page 722
In the models discussed below we will find that y is sometimes taken as the same
for all adsorbed ions , ( 40 = ; = wd ) and sometimes equal to the electrokinetic
potential , ( ) and sometimes given different values for the potential determining ...
In the models discussed below we will find that y is sometimes taken as the same
for all adsorbed ions , ( 40 = ; = wd ) and sometimes equal to the electrokinetic
potential , ( ) and sometimes given different values for the potential determining ...
Page 730
3 Detection of specific adsorption From the discussion in Section 12 . 2 . 1 it is
clear that the mere presence of a common intersection point in the potentiometric
titration curves at different salt concentrations cannot be used to infer that specific
...
3 Detection of specific adsorption From the discussion in Section 12 . 2 . 1 it is
clear that the mere presence of a common intersection point in the potentiometric
titration curves at different salt concentrations cannot be used to infer that specific
...
Page 909
In this chapter we will examine the phenomenology of emulsionstheir
macroscopic behaviour patterns and then discuss the concepts used to describe
that behaviour , concentrating on those aspects in which emulsions differ from the
ordinary ...
In this chapter we will examine the phenomenology of emulsionstheir
macroscopic behaviour patterns and then discuss the concepts used to describe
that behaviour , concentrating on those aspects in which emulsions differ from the
ordinary ...
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Contents
Contents of Volume I | 675 |
ADSORPTION FROM SOLUTION | 709 |
THE STRUCTURE OF CONCENTRATED | 827 |
Copyright | |
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Other editions - View all
Foundations of Colloid Science, Volume 1 Robert J. Hunter,Lee R. White,Derek Y. C. Chan Snippet view - 1987 |
Foundations of Colloid Science, Volume 1 Robert J. Hunter,Lee R. White,Derek Y. C. Chan Snippet view - 1987 |
Common terms and phrases
adsorbed adsorption applied approach approximation assumed average becomes behaviour bulk calculated Chapter charge Chem Colloid interface Sci colloidal component concentration constant correlation corresponding density depends described determined developed direction discussed dispersion distance double layer droplets effect electrical electrokinetic electrolyte emulsion energy equation equilibrium estimate et al example Exercise experimental expression factor field film flow fluid force fraction function given gives groups important increases interaction interface involved ions limit liquid material measured microemulsion molecules Note observed obtained occur pair parameters particles phase positive possible potential pressure problem procedure radius range reduces referred region result scattering Section separation shear rate shown solution specific spheres stability stress structure surface surface charge surface tension suspension temperature theory thin usually values viscosity volume zero