Dispersed Systems |
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Page 86
... formation of solid and liquid crystal phases , as well as their mixtures due to the mutual nucleation of crystals ( usually very fast ) and the formation of smectic ( slower processes ) were characterized by reaction enthalpies . The ...
... formation of solid and liquid crystal phases , as well as their mixtures due to the mutual nucleation of crystals ( usually very fast ) and the formation of smectic ( slower processes ) were characterized by reaction enthalpies . The ...
Page 90
... formation SO It is possible to calculate free energy and enthalpy changes from precipitation examinations . The solubil- ity shift towards higher concentrations has been found by elevating the temperature . From the linear dependence of ...
... formation SO It is possible to calculate free energy and enthalpy changes from precipitation examinations . The solubil- ity shift towards higher concentrations has been found by elevating the temperature . From the linear dependence of ...
Page 120
... formation , 0.3 s for the formation of an excess phase in the biphasic region , and < 15 μs for transition between two disconnected isotropic phases , respectively . Key words : Fluorinated micro - emulsions , phase transitions ...
... formation , 0.3 s for the formation of an excess phase in the biphasic region , and < 15 μs for transition between two disconnected isotropic phases , respectively . Key words : Fluorinated micro - emulsions , phase transitions ...
Contents
General | 1 |
Surfactant Aggregation | 55 |
Phase equilibria and thermodynamics of liquid and solid crystal | 86 |
Copyright | |
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accepted June acid adsorbed adsorption aggregates amine anionic aqueous solutions behavior bentonite benzocaine birefringence calculated capillary waves cationic cell chain Chem coagulation Colloid concentration constant contact angle copolymer creams crystal growth crystalline curve decrease density dependence determined dielectric diffusion coefficient dispersion dodecyl effect electrolyte electron emulsions enthalpy equation equilibrium ESASS ethoxylated ethylene oxide experimental fibers formation Fowkes function graft copolymer hydrated hydrophilic hydrophobic increase Interf Sci interface interfacial tension ions isotropic kinetics Krafft point Kratky lamellae latex latices layer liquid measurements membrane method micelles micro-emulsion microparacrystals mixture mol/l molecules NaCl Neumann obtained parameters particle Phys Chem polarization Polym Sci polymer potential precipitation pressure ratio salt sample scattering sediment shear shear rate shown in Fig shows solid phase solubility solvent spectra structure surface tension surfactant Table temperature tion values viscosity x-ray Zeta zetapotential