Foundations of Colloid Science, Volume 2While Volume I stands as an essentially complete advanced textbook of colloidal science, Volume II extends the material to include important new areas, and develops some of the topics in much greater depth. An introductory chapter on the theory of liquids describes the concept of correlation functions and the use of Fourier transforms to analyse the scattering of light and neutrons by colloidal systems. Absorption is given detailed coverage and a chapter on electrokinetics introduces a new approach to time-dependent processes in the double layer. The principles of double layer theory are also used to review the behavior of thin films and emulsions. A final chapter on the rheology of colloidal suspensions calls on many of the concepts developed earlier to bring some cohesion to this important and rapidly developing field. |
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Page 827
2 ) is the fraction of the total volume occupied by particles ( usually referred to
simply as the volume fraction of the suspension ) . ... 1 ) is unity at infinite dilution ,
and has only fallen to half of its infinite dilution value at a volume fraction of 8 .
2 ) is the fraction of the total volume occupied by particles ( usually referred to
simply as the volume fraction of the suspension ) . ... 1 ) is unity at infinite dilution ,
and has only fallen to half of its infinite dilution value at a volume fraction of 8 .
Page 839
Numerical calculations show that this breakdown of the MSA may occur at
volume fractions as high as 20 % in many ... we may trivially calculate the
structure of a fluid of hard spheres of diameter 8 , at the same volume fraction by
simply ...
Numerical calculations show that this breakdown of the MSA may occur at
volume fractions as high as 20 % in many ... we may trivially calculate the
structure of a fluid of hard spheres of diameter 8 , at the same volume fraction by
simply ...
Page 916
5 % ) surfactant ( 5 % ) , near ( a ) Oil Volume fraction Water 1 ( °C ) ( c ) _ Yo - w (
D ) 2014 Yow ( mN m - ' ) ! ... phase diagram ( Roman numerals refer to number
of separate co - existing phases ) ; ( b ) volume fractions of phases for 0 .
5 % ) surfactant ( 5 % ) , near ( a ) Oil Volume fraction Water 1 ( °C ) ( c ) _ Yo - w (
D ) 2014 Yow ( mN m - ' ) ! ... phase diagram ( Roman numerals refer to number
of separate co - existing phases ) ; ( b ) volume fractions of phases for 0 .
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Contents
Contents of Volume I | 675 |
ADSORPTION FROM SOLUTION | 709 |
THE ELECTROKINETIC EFFECTS 786 13 THE ELECTROKINETIC EFFECTS | 786 |
Copyright | |
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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 present 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 theory thin usually values viscosity volume zero