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MARC Record from Library of Congress

Record ID marc_loc_2016/BooksAll.2016.part40.utf8:184541333:4613
Source Library of Congress
Download Link /show-records/marc_loc_2016/BooksAll.2016.part40.utf8:184541333:4613?format=raw

LEADER: 04613cam a22004097a 4500
001 2012943382
003 DLC
005 20140806080448.0
008 120702s2012 nyu 000 0 eng d
010 $a 2012943382
016 7 $a016179059$2Uk
020 $a9781461439967 (alk. paper)
020 $a1461439965 (alk. paper)
020 $a9781461439974 (ebk.)
035 $a(OCoLC)ocn785073277
040 $aBTCTA$beng$cBTCTA$dYDXCP$dBWX$dYOU$dCPE$dUKMGB$dGZM$dDLC
042 $alccopycat
050 00 $aQP301$b.W72 2010
111 2 $aWorkshop on Natural Locomotion in Fluids and on Surfaces: Swimming, Flying, and Sliding$d(2010 :$cUniversity of Minnesota)
245 10 $aNatural locomotion in fluids and on surfaces :$bswimming, flying, and sliding /$cStephen Childress ... [et al.], editors.
260 $aNew York :$bSpringer,$cc2012.
300 $axv, 313 p. :$bill. ;$c24 cm.
490 1 $aThe IMA volumes in mathematics and its applications ;$vv.155
500 $a"Based on a Workshop on Natural Locomotion in Fluids and on Surfaces: Swimming, Flying, and Sliding held at the Institute for Mathematics and its Applications (IMA) at the University of Minnesota, from June 1-5, 2010"--p. v.
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.
504 $aIncludes bibliographical references.
650 0 $aAnimal locomotion$xMathematical models$vCongresses.
650 0 $aAnimal swimming$xMathematical models$vCongresses.
650 0 $aCrawling and creeping$xMathematical models$vCongresses.
650 0 $aGliding and soaring$xMathematical models$vCongresses.
650 0 $aFluid mechanics$vCongresses.
700 1 $aChildress, Stephen.
720 $aHosoi, Anette$4edt
720 $aSchultz, William W.$4edt
720 $aWang, Z. Jane$4edt
830 0 $aIMA volumes in mathematics and its applications ;$vv.155.