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Microhydrodynamics, Brownian Motion, And Complex Fluids

Microhydrodynamics, Brownian Motion, And Complex Fluids - Graham, Michael D. (university Of Wisconsin, Madison) - ISBN: 9781107024649
Prijs: € 89,25
Levertijd: 8 tot 12 werkdagen
Bindwijze: Boek, Gebonden
Genre: Toepassingsgerichte wiskunde
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Beschrijving

Provides a foundation for understanding complex fluids by integrating fluid dynamics, statistical physics, and polymer and colloid science.

Details

Titel: Microhydrodynamics, Brownian Motion, And Complex Fluids
auteur: Graham, Michael D. (university Of Wisconsin, Madison)
Mediatype: Boek
Bindwijze: Gebonden
Taal: Engels
Aantal pagina's: 278
Uitgever: Cambridge University Press
Plaats van publicatie: 03
NUR: Toepassingsgerichte wiskunde
Afmetingen: 253 x 178 x 20
Gewicht: 650 gr
ISBN/ISBN13: 9781107024649
Intern nummer: 41826593
Volume: 1

Biografie (woord)

Michael D. Graham is the Vilas Distinguished Achievement Professor and Harvey D. Spangler Professor of Chemical and Biological Engineering at the University ofWisconsin, Madison. His research focuses on theoretical and computational studies of the fluid dynamics of complex fluids. Among his recognitions are a CAREER Award from the National Science Foundation (NSF), the François Frenkiel and Stanley Corrsin Awards from the American Physical Society Division of Fluid Dynamics, and the Kellett Mid-Career Award at the University of Wisconsin, Madison. He has served as associate editor of the Journal of Fluid Mechanics and editor-in-chief of the Journal of Non-Newtonian Fluid Mechanics. He is coauthor of the textbook Modeling and Analysis Principles for Chemical and Biological Engineers (2013).

Inhoudsopgave

1. Kinematics, balance equations and principles of stokes flow; 2. Fundamental solutions of the stokes equation and the point-particle approximation; 3. Beyond point particles; 4. Fundamental solutions for bounded geometries; 5. First effects of inertia; 6. Thermal fluctuations and Brownian Motion; 7. Stochastic differential equations; 8. Coarse-grained models of polymers in dilute solution; 9. Rheology and viscoelastic flow phenomena; Appendix. Mathematical background; References; Index.

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