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Record ID harvard_bibliographic_metadata/ab.bib.13.20150123.full.mrc:939033981:3066
Source harvard_bibliographic_metadata
Download Link /show-records/harvard_bibliographic_metadata/ab.bib.13.20150123.full.mrc:939033981:3066?format=raw

LEADER: 03066nam a22005415a 4500
001 013830982-5
005 20131206193713.0
008 121227s2002 gw | s ||0| 0|eng d
020 $a9783540457916
020 $a9783540457916
020 $a9783540432319
024 7 $a10.1007/3-540-45791-7$2doi
035 $a(Springer)9783540457916
040 $aSpringer
050 4 $aQC138-168.86
050 4 $aQA930
072 7 $aPHDF$2bicssc
072 7 $aSCI085000$2bisacsh
072 7 $aSCI084000$2bisacsh
082 04 $a532$223
082 04 $a533.62$223
100 1 $aKöhler, Werner,$eeditor.
245 10 $aThermal Nonequilibrium Phenomena in Fluid Mixtures /$cedited by Werner Köhler, Simone Wiegand.
264 1 $aBerlin, Heidelberg :$bSpringer Berlin Heidelberg,$c2002.
300 $aXVII, 470 p.$bonline resource.
336 $atext$btxt$2rdacontent
337 $acomputer$bc$2rdamedia
338 $aonline resource$bcr$2rdacarrier
347 $atext file$bPDF$2rda
490 1 $aLecture Notes in Physics,$x0075-8450 ;$v584
505 0 $aFrom the contents: Computer Simulations of Thermal Diffusion in Binary Liquid Mixtures -- Nonequilibrium Concentration Fluctuations in Binary Liquid Systems Induced by the Soret Effect -- Thermodiffusion in the Critical Region -- On the Theory of the Soret Effect in Colloids -- Principle of Entropy Maximization for Nonequilibrium Steady States -- A Comprehensive Theory of the Soret Effect in a Multicomplex Mixture -- Thermodiffusion and Nonlinear Heat Equation -- Determination of Thermodiffusion Parameters from Thermal Field-Flow Fractionation Retention Data -- Thermodiffusion of Polymer Solutions in Convectionless Cells -- Measurement of Transport Coefficients by an Optical Grating Technique -- A Survey of the Thomaes Flow Cell Method for the Soret Coefficient -- Validity Limits of the Thermogravitaional Column Theory by Numerical Simulation of the Separation Process -- Thermodiffusion in Ionic Solids- Model experiments.
520 $aThermodiffusion describes the coupling between a temperature gradient and a resulting mass flux. Traditionally, the focus has been on simple fluids, and it is now extending to more complex systems such as electrolytes, polymers, colloidal dispersions and magnetic fluids. This book widens the scope even further by including applications in ionic solids. Written as a set of tutorial reviews, it will be useful to experts, nonspecialist researchers and postgraduate students alike.
650 20 $aChemistry, Physical and theoretical.
650 20 $aThermodynamics.
650 20 $aFluids.
650 10 $aPhysics.
650 0 $aPhysical organic chemistry.
650 0 $aPhysics.
650 0 $aFluids.
650 0 $aThermodynamics.
650 0 $aHydraulic engineering.
650 24 $aEngineering Fluid Dynamics.
650 24 $aEngineering Thermodynamics, Transport Phenomena.
700 1 $aWiegand, Simone,$eeditor.
776 08 $iPrinted edition:$z9783540432319
830 0 $aLecture Notes in Physics ;$v584.
988 $a20131114
906 $0VEN