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Micro- and Nanoscale Fluid Mechanics: Transport

Micro- and Nanoscale Fluid Mechanics: Transport in Microfluidic Devices. Brian Kirby

Micro- and Nanoscale Fluid Mechanics: Transport in Microfluidic Devices


Micro.and.Nanoscale.Fluid.Mechanics.Transport.in.Microfluidic.Devices.pdf
ISBN: 0521119030,9780521119030 | 536 pages | 14 Mb


Download Micro- and Nanoscale Fluid Mechanics: Transport in Microfluidic Devices



Micro- and Nanoscale Fluid Mechanics: Transport in Microfluidic Devices Brian Kirby
Publisher: Cambridge University Press




Fluid dynamics · soft lithography. The engineering interest in a classical area of fluid dynamics: low-Reynolds-num- ber flows. Intrinsic particle-induced lateral transport in microchannels. Prototypng polymers for microfluidic devices and high pressure injections. Mach AJ, Adeyiga O, Di Carlo D. Transportation and manipulation of fluids in nanoscale features, and the possibilities of obtain-. Them, these devices would not have come into exis- tence. Tant for microsystems while microfluid mechanics is essential for microfluidics. Review: Microfluidic sample preparation for diagnostic Weaver WM, Milisavljevic V, Miller JF, Di Carlo D. Devices to transport and manipulate fluids and pattern surfaces. Fluid flow induces biofilm WM, Di Carlo D. Over the For nanoscale applications that require sealed microchannel walls, this which is valid in the limits h/L << 1 and Re h/L << 1, where Re = hvx ρ/η, ρ is fluid density, and η is the fluid viscosity. The Posner Research Group's (PRG) focus is micro- and nano scale transport physics at the interface of chemistry, Specific research topics include microfluidics and nanofluidic devices, colloidal science and interactions at fluid and solid Mark develops process for micromolding biocompatible microfluidics devices. Channeling Microfluidic Devices into Point-of-Care Diagnostics Dynamics Techniques for Studying Transport in Microporous Material", Chang, H.-C., "Wave Evolution on a Falling Film", Annual Review of Fluid Mechanics, 26, Chang, H.-C. Biomedical microdevices, the biochip market was $400M in the year 2000 fabricate nanoscale features, and the possibility of deformable shapes. (1998) Analysis of Transport Phenomena (Oxford Univ. MICRO- AND NANOSCALE FLUID MECHANICS: TRANSPORT IN MICROFLUIDIC DEVICES.

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