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Titlebook: Magnetoviscous Effects in Ferrofluids; Stefan Odenbach Book 2002 Springer-Verlag Berlin Heidelberg 2002 Ferrofluid.Ferrofluids.Ferrohydrod

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书目名称Magnetoviscous Effects in Ferrofluids
编辑Stefan Odenbach
视频video
概述So far no book on this subject is available.Much of the material reviews the author‘s own research.Ferrofluid behaviour is of utmost importance in engineering of smart materials and also in basic flui
丛书名称Lecture Notes in Physics Monographs
图书封面Titlebook: Magnetoviscous Effects in Ferrofluids;  Stefan Odenbach Book 2002 Springer-Verlag Berlin Heidelberg 2002 Ferrofluid.Ferrofluids.Ferrohydrod
描述Suspensions of magnetic nanoparticles or ferrofluids can be effectively controlled by magnetic fields, which opens up a fascinating field for basic research into fluid dynamics as well as a host of applications in engineering and medicine. The introductory chapter provides the reader with basic information on the structure, and magnetic and viscous properties of ferrofluids. The bulk of this monograph is based on the author‘s own research activity and deals with ferrohydrodynamics, especially with the magnetoviscous effects. In particular, the author studies in detail the interparticle interactions so far often neglected but of great importance in concentrated ferrofluids. The basic theory and the most recent experimental findings are presented, making the book interesting reading for physicists or engineers interested in smart materials.
出版日期Book 2002
关键词Ferrofluid; Ferrofluids; Ferrohydrodynamics; Magnetic Fluids; Magnetic Nanoparticles; Magnetoviscosity; Rh
版次1
doihttps://doi.org/10.1007/3-540-45544-2
isbn_softcover978-3-642-07709-8
isbn_ebook978-3-540-45544-8Series ISSN 0940-7677
issn_series 0940-7677
copyrightSpringer-Verlag Berlin Heidelberg 2002
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Inroduction,f fluid mechanics as well as for application engineers. For the basic research the introduction of a controllable force into the fundamental hydrodynamic equations opens a fascinating field of new phenomena.
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The magnetoviscous effect in highly diluted ferrofluids,roperties by means of moderate magnetic fields. Focusing on the change of physical properties in presence of magnetic fields, the change of the fluid’s viscous behavior due to the action of an appropriate magnetic field seems to be the most prominent effect and still one of the most challenging topics of ferrofluid research.
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Magnetoviscosity in concentrated ferrofluids,In Sect. 3.1 it has been discussed, that a magnetic field exerts a torque to the magnetic particles in the fluid, influencing their free rotation in a shear flow. The theory used to describe the related phenomena explicitly excludes any interaction of the magnetic particles to allow a treatment in form of a single particle model.
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ical rewards. There is a tremendousinvestment in existing sequential programs, and scientists andengineers continue to write their application programs in sequentiallanguages (primarily in Fortran),but the demand for increasing speedis constant. The job of a restructuring compiler is to discover the
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