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LIQUIDGAS AND LIQUIDLIQUID INTERFACES
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acid addition adsorbed adsorption agents amount applied approximately aqueous attraction average become behaviour calculated capillary charged colloidal concentration constant contact angle containing counter-ions curve decreases depends detergent determined diffusion dispersion distance double layer droplets effect electrical electrode electrolyte emulsion energy equation equilibrium example expression Figure film flocculation flow forces formation give given greater groups heat hydrocarbon increase interaction interface involved ions isotherms light limit liquid lower material measured medium membrane method micelles molecular weight molecules monolayer motion nature observed obtained orientated osmotic particles phase physical plate polymer positions potential pressure properties protein ratio reduced relative sample scattered sedimentation separation shape shear solid solution solvent spherical spread stability stress structure studying sufficient surface tension take place technique temperature tend theory usually vapour various viscosity volume wetting zero