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An introduction to dynamics of colloids

Author: Jan K G Dhont
Publisher: Amsterdam, Netherlands ; New York : Elsevier, 1996.
Series: Studies in interface science, v. 2.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
One of the few textbooks in the field, this volume deals with several aspects of the dynamics of colloids. A self-contained treatise, it fills the gap between research literature and existing books for graduate students and researchers. For readers with a background in chemistry, the first chapter contains a section on frequently used mathematical techniques, as well as statistical mechanics. Some of the topics  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Dhont, Jan K. G.
Introduction to dynamics of colloids.
Amsterdam, Netherlands ; New York : Elsevier, 1996
(DLC) 96012846
(OCoLC)34471290
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Jan K G Dhont
ISBN: 9780444820099 0444820094
OCLC Number: 162588374
Description: 1 online resource (xvii, 642 p.) : ill.
Contents: Brownian motion of non-interacting particles --
Light scattering --
Fundamental equations of motion --
Hydrodynamics --
Diffusion --
Sedimentation --
Critical phenomena --
Phase separation kinetics.
Series Title: Studies in interface science, v. 2.
Responsibility: Jan K.G. Dhont.
More information:

Abstract:

One of the few textbooks in the field, this volume deals with several aspects of the dynamics of colloids. A self-contained treatise, it fills the gap between research literature and existing books for graduate students and researchers. For readers with a background in chemistry, the first chapter contains a section on frequently used mathematical techniques, as well as statistical mechanics. Some of the topics covered include: & bull; diffusion of free particles on the basis of the Langevin equation & bull;the separation of time, length and angular scales; & bull; the fundamental Fokker-Planck and Smoluchowski equations derived for interacting particles & bull; friction of spheres and rods, and hydrodynamic interaction of spheres (including three body interactions) & bull; diffusion, sedimentation, critical phenomena and phase separation kinetics & bull; experimental light scattering results. For universities and research departments in industry this textbook makes vital reading.

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