Foundations of Colloid Science, Volume 2Clarendon Press, 1987 - Colloids |
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Page 752
Robert J. Hunter. 12.5 Thermodynamic approach to adsorption 12.5.1 Site - dissociation and site - binding models In their summary of the various models for describing adsorption of inorganic salts onto ... Thermodynamic approach to ...
Robert J. Hunter. 12.5 Thermodynamic approach to adsorption 12.5.1 Site - dissociation and site - binding models In their summary of the various models for describing adsorption of inorganic salts onto ... Thermodynamic approach to ...
Page 753
... thermodynamic constant , K , independent of any model of the interfacial region . One can measure the activities of the ions H + and Na * in the bulk solution ( where the electrical potential can be taken as zero as part of the ...
... thermodynamic constant , K , independent of any model of the interfacial region . One can measure the activities of the ions H + and Na * in the bulk solution ( where the electrical potential can be taken as zero as part of the ...
Page 1069
... thermodynamic conditions for 642 unstable , of particle size 9 , 262 , 283 in heterogeneous nucleation 299 equipartition of energy 834 equipotential surfaces 632 error function 129 , 799 errors , treatment of 54 in viscometry 1014 ...
... thermodynamic conditions for 642 unstable , of particle size 9 , 262 , 283 in heterogeneous nucleation 299 equipartition of energy 834 equipotential surfaces 632 error function 129 , 799 errors , treatment of 54 in viscometry 1014 ...
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 co-surfactant coagulation coalescence Colloid interface Sci colloidal dispersions compare with eqn component constant corresponding counterions diffuse dilute double layer droplets effect electrical electrokinetic electrolyte electrolyte concentration electrostatic emulsion equilibrium Establish eqn estimate Exercise experimental Faraday ferrofluid field film flow fluid force free energy given hard sphere head group Hunter hydrophilic increases interaction K₁ latex liquid measured micelles microemulsion molecules neutron neutron scattering Newtonian fluid non-ionic surfactant Note obtained occur Ottewill Overbeek parameters particles phase Phys Poisson-Boltzmann equation polymer potential potential determining ions pressure procedure pseudoplastic radius region repulsion result scattering shear rate shear stress shown in Fig solution specific adsorption spherical stability structure surface charge surfactant suspension temperature thermodynamic thin thixotropic values velocity visco-elastic viscometer viscosity volume fraction Waals zero