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Titlebook: Computational Modeling in Biological Fluid Dynamics; Lisa J. Fauci,Shay Gueron Conference proceedings 2001 Springer Science+Business Media

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书目名称Computational Modeling in Biological Fluid Dynamics
编辑Lisa J. Fauci,Shay Gueron
视频video
丛书名称The IMA Volumes in Mathematics and its Applications
图书封面Titlebook: Computational Modeling in Biological Fluid Dynamics;  Lisa J. Fauci,Shay Gueron Conference proceedings 2001 Springer Science+Business Media
描述This IMA Volume in Mathematics and its Applications COMPUTATIONAL MODELING IN BIOLOGICAL FLUID DYNAMICS is based on the proceedings of a very successful workshop with the same title. The workshop was an integral part of the September 1998 to June 1999 IMA program on "MATHEMATICS IN BIOLOGY." I would like to thank the organizing committee: Lisa J. Fauci of Tulane University and Shay Gueron of Technion - Israel Institute of Technology for their excellent work as organizers of the meeting and for editing the proceedings. I also take this opportunity to thank the National Science Founda­ tion (NSF), whose financial support of the IMA made the Mathematics in Biology program possible. Willard Miller, Jr., Professor and Director Institute for Mathematics and its Applications University of Minnesota 400 Lind Hall, 207 Church St. SE Minneapolis, MN 55455-0436 612-624-6066, FAX 612-626-7370 miller@ima.umn.edu World Wide Web: http://www.ima.umn.edu v PREFACE A unifying theme in biological fluid dynamics is the interaction of moving, elastic boundaries with a surrounding fluid. A complex dynami­ cal system describes the motion of red blood cells through the circulatory system, the movement of
出版日期Conference proceedings 2001
关键词Biological Fluid Dynamics; biological fluid; biology; fluid dynamics; fluid mechanics; mechanics; fluid- a
版次1
doihttps://doi.org/10.1007/978-1-4613-0151-6
isbn_softcover978-1-4612-6539-9
isbn_ebook978-1-4613-0151-6Series ISSN 0940-6573 Series E-ISSN 2198-3224
issn_series 0940-6573
copyrightSpringer Science+Business Media New York 2001
The information of publication is updating

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Energetic Considerations of Ciliary Beating,eat cycles consist of two phases: the effective stroke, where the cilium moves approximately as a straight rod, and the recovery stroke, where it bends and rolls close to the surface in a mostly tangential motion..It is commonly agreed that for efficient functioning, the effective stroke is designed
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Fluid Dynamics of Animal Appendages that Capture Molecules: Arthropod Olfactory Antennae,gills take up oxygen, hairy olfactory antennae capture odorant molecules, filamentous suspension-feeding structures catch single-celled algae, setulose appendages create ventilatory or feeding currents, and bristly legs or wings propel little animals through the surrounding water or air. To perform
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Hydrodynamics of Liquid Capsules Enclosed by Elastic Membranes,logical cells. The deformation of a membrane from a reference configuration causes the development of non-isotropic in-plane elastic tensions, transverse shear tensions, and bending moments according to constitutive laws that reflect the membrane constitution. The type and degree of capsule deformat
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