By Fiona Case, Paschalis Alexandridis
This e-book describes experimental and laptop modeling ideas to symbolize and layout mesoscale (nanometer to micron) phenomena, which make sure houses of many scientifically and industrially very important fluid materials.
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Extra resources for Mesoscale Phenomena in Fluid Systems
35). When combined with N M R diffusion data on the same systems, one can quantify ion binding and other details on aggregation processes in a much more complete and quantitative fashion than possible from standalone measurements. Aggregation of hydrophobically modified polymers - 'associative thickeners'. Studies of the diffusion behavior of associative thickeners in aqueous solution have proven to be highly rewarding. With increasing concentration, unimers form 3-dimensional networks that manifest themselves in the rheological behavior - Le.
Basically the same approach has been used for fluorescence depolarization studies of suitable molecules, but here it suffers from fundamental interpretation difficulties. g. micelles and also are likely to orient in respect to the micellar entity, locate the surface region and also to protrude into the aqueous phase. N M R data on trans-decalin in micelles made up by various surfactants nicely demonstrate that the micellar interior has closely the same 'micro-viscosity' as a bulk hydrocarbon liquid made up by alkanes of the same chain length as that of the surfactant part.
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Mesoscale Phenomena in Fluid Systems by Fiona Case, Paschalis Alexandridis