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Natural locomotion in fluids and on surfaces : swimming, flying, and sliding /

Stephen Childress [and others], editors.

Book Cover
Names: Childress, Stephen.
Published: New York, NY : Springer, ©2012.
Series: IMA volumes in mathematics and its applications ; v. 155.
Topics: Locomotion - Mathematical models - Congresses. | Fluid mechanics - Congresses. | Biological Phenomena. | Biomechanical Phenomena. | Locomotion. | Motor Activity. | Models, Theoretical. | SOCIAL SCIENCE - Anthropology - Physical.
Genres: Electronic books. | Congress. | Conference papers and proceedings.
Online Access: SpringerLink - Full text online
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245 00|aNatural locomotion in fluids and on surfaces :|bswimming, flying, and sliding /|cStephen Childress [and others], editors.
264 1|aNew York, NY :|bSpringer,|c©2012.
300 |a1 online resource.
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
347 |atext file|bPDF|2rda
490 1 |aThe IMA volumes in mathematics and its applications,|x0940-6573 ;|vv. 155
504 |aIncludes bibliographical references.
505 00|gPart. 1.|tINVITED PAPERS --|tModel Problems for Fish Schooling /|rSilas Alben --|tThe Challenge of Understanding and Quantifying Fish Responses to Turbulence-Dominated Physical Environments /|rAline J. Cotel and Paul W. Webb --|tThe Fluid Dynamics of Feeding In the Upside-Down Jellyfish /|rChristina Hamlet, Laura A. Miller, Terry Rodriguez and Arvind Santhanakrishnan --|tKinetic Models for Biologically Active Suspensions /|rDavid Saintillan --|tIndividual to Collective Dynamics of Swimming Bacteria /|rLuis H. Cisneros, Sujoy Ganguly, Raymond E. Goldstein and John O. Kessler --|tDynamics, Control, and Stabilization of Turning Flight in Fruit Flies /|rLeif Ristroph, Attila J. Bergou, Gordon J. Berman, John Guckenheimer and Z. Jane Wang, et al. --|tGeometric Mechanics, Dynamics, and Control of Fishlike Swimming in a Planar Ideal Fluid /|rScott David Kelly, Parthesh Pujari and Hailong Xiong --|tSlithering Locomotion /|rDavid L. Hu and Michael Shelley.
505 80|gPart 2.|tCONTRIBUTED PAPERS --|tShark Skin Boundary Layer Control /|rAmy Lang, Philip Motta, Maria Laura Habegger and Robert Hueter --|tNumerical Modeling of the Performance of Ray Fins in Fish Locomotion /|rQiang Zhu and Kourosh Shoele --|tFormation of Ocean Surface Patterns by Cetacean Fluke Oscillations /|rRachel Levy and David Uminsky --|tUnsolved Problems in the Locomotion of Mammalian Sperm /|rSusan S. Suarez --|tComputing optimal Strokes for Low Reynolds Number Swimmers /|rAntonio Desimone, Luca Heltai, FranÇois Alouges and Aline Lefebvre-Lepot --|tModels of Low Reynolds Number Swimmers Inspired by Cell Blebbing /|rQixuan Wang, Jifeng Hu and Hans Othmer --|tA Low-Reynolds-Number Treadmilling Swimmer Near a Semi-infinite Wall /|rKiori Obuse and Jean-Luc Thiffeault --|tCilia Induced Bending of Paramecium in Microchannels /|rSaikat Jana, Junil Kim, Sung Yang and Sunghwan Jung --|tRheology of Sheared Bacterial Suspensions /|rZhenlu Cui and Xiao-Ming Zeng --|tA User-Friendly Formulation of the Newtonian Dynamics for the Coupled Wing-Body System in Insect Flight /|rSheng Xu --|tEfficient Flapping Flight Using Flexible Wings Oscillating at Resonance /|rHassan Masoud and Alexander Alexeev --|tStability of Passive Locomotion in Periodically-Generated Vortex Wakes /|rBabak G. Oskouei and Eva Kanso --|tSimulating Vortex Wakes of Flapping Plates /|rJ.X. Sheng, A. Ysasi, D. Kolomenskiy, E. Kanso and M. Nitsche, et al. --|tA Velocity Decomposition Approach for Solving the Immersed Interface Problem with Dirichlet Boundary Conditions /|rAnita T. Layton --|tElliptic Regularization and the Solvability of Self-Propelled Locomotion Problems /|rAdam Boucher --|tComparative Studies Reveal Principles of Movement on and Within Granular Media /|rYang Ding, Nick Gravish, Chen Li, Ryan D. Maladen and Nicole Mazouchova, et al.
520 |aThis volume developed from a Workshop on Natural Locomotion in Fluids and on Surfaces: Swimming, Flying, and Sliding which was held at the Institute for Mathematics and its Applications (IMA) at the University of Minnesota, from June 1-5, 2010.¡ The subject matter ranged widely from observational data to theoretical mechanics, and reflected the broad scope of the workshop.¡ In both the prepared presentations and in the informal discussions, the workshop engaged exchanges across disciplines and invited a lively interaction between modelers and observers. ¡ The articles in this volume were invited and fully refereed. They provide a representative if necessarily incomplete account of the field of natural locomotion during a period of rapid growth and expansion.¡ The papers presented at the workshop, and the contributions to the present volume, can be roughly divided into those pertaining to swimming on the scale of marine organisms, swimming of microorganisms at low Reynolds numbers, animal flight, and sliding and other related examples of locomotion.
650 0|aLocomotion|xMathematical models|vCongresses.
650 0|aFluid mechanics|vCongresses.
650 12|aBiological Phenomena.|0(DNLM)D001686
650 12|aBiomechanical Phenomena.|0(DNLM)D001696
650 12|aLocomotion.|0(DNLM)D008124
650 12|aMotor Activity.|0(DNLM)D009043
650 22|aModels, Theoretical.|0(DNLM)D008962
650 7|aSOCIAL SCIENCE|xAnthropology|xPhysical.|2bisacsh
650 7|aFluid mechanics.|2fast|0(OCoLC)fst00927999
650 7|aLocomotion|xMathematical models.|2fast|0(OCoLC)fst01001724
655 4|aElectronic books.
655 2|aCongress.|0(DNLM)D016423
655 7|aConference papers and proceedings.|2fast|0(OCoLC)fst01423772
700 1 |aChildress, Stephen.
776 08|iPrint version:|z9781461439967
830 0|aIMA volumes in mathematics and its applications ;|vv. 155.
852 8 |beresour-nc|hOnline Resource|t1|zAccessible anywhere on campus or with UIUC NetID
856 40|3SpringerLink - Full text online|uhttp://www.library.illinois.edu/proxy/go.php?url=https://doi.org/10.1007/978-1-4614-3997-4
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994 |aC0|bUIU

Staff View for: Natural locomotion in fluids and on surf