Foundations of Colloid Science, Volume 2Clarendon Press, 1987 - Colloids |
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Page 711
... present descriptions of the electrical state of many important colloid chemical surfaces cannot be regarded as entirely satisfactory . In what follows therefore , we can only describe the present state of development , in the knowledge ...
... present descriptions of the electrical state of many important colloid chemical surfaces cannot be regarded as entirely satisfactory . In what follows therefore , we can only describe the present state of development , in the knowledge ...
Page 753
... present simultaneously and the procedure is then a good deal more complicated though it can , in principle , be performed . Whether one could , in fact , acquire all the necessary data on the amounts of each solid state species present ...
... present simultaneously and the procedure is then a good deal more complicated though it can , in principle , be performed . Whether one could , in fact , acquire all the necessary data on the amounts of each solid state species present ...
Page 956
... present or not ( Curves B and C compared to A ) and whether the alcohol is initially injected into the oil ( C ) or the water ( B ) phase . Very large fluctuations in y ; are therefore to be expected in the microemulsion mixing process ...
... present or not ( Curves B and C compared to A ) and whether the alcohol is initially injected into the oil ( C ) or the water ( B ) phase . Very large fluctuations in y ; are therefore to be expected in the microemulsion mixing process ...
Contents
Contents of Volume I ix | 675 |
ADSORPTION FROM SOLUTION | 709 |
CHARACTERIZATION OF COLLOIDAL DISPERSIONS 1 | 710 |
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Foundations of Colloid Science. Vol. 1-2. Collab. Lee R. White, Leonard R ... No preview available - 1992 |
Common terms and phrases
adsorbed adsorption approximation assumed behaviour bulk C-potential calculated Chapter Chem coagulation coalescence Colloid interface Sci colloidal dispersions compare with eqn component constant correlation function corresponding counterions diameter dilute double layer droplets effect electrical electrokinetic electrokinetic equations electrolyte electrolyte concentration electrostatic emulsion equilibrium Establish eqn estimate Exercise experimental Faraday ferrofluid field flow fluid force free energy given hard sphere head group Hunter hydrophilic interaction ion density ionic K₁ Kint latex magnetic measured micelles microemulsion molecules neutron non-ionic surfactant obtained occur Ottewill Overbeek oxide parameters phase Phys plane Poisson-Boltzmann equation polymer potential potential determining ions pressure procedure radius region repulsion result scattering shear rate shear stress shown in Fig solution specific adsorption spherical stability structure surface charge surfactant suspension tangential temperature thermodynamic thin thixotropic values velocity viscometer viscosity volume fraction Waals zero