Electrokinetically driven microfluidics and nanofluidics / Hsueh-Chia Chang, University of Notre Dame, Leslie Y. Yeo, Monash University Chang, H.-C. ELECTROKINETICALLY DRIVEN MICROFLUIDICS. AND NANOFLUIDICS. Electrokinetics is currently the mechanism of choice for fluid actuation and. Electrokinetically Driven Microfluidics and Nanofluidics. Hsueh-Chia Chang. University of Notre Dame. Leslie Y. Yeo. Monash University
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Interfacial electrokinetic phenomena such as electrospraying, electrospinning, and electrowetting are also discussed. There’s a problem loading this menu right now. Book Description While most electrokinetics to date has focused on the use of DC electric fields, the use of AC fields is growing popular.
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Would you like to tell us about a lower price? Amazon Music Stream millions of songs. Electrokinetically-Driven Microfluidics and Nanofluidics. Electrokinetics is currently the mechanism of choice for fluid actuation and bioparticle manipulation at microscale and nanoscale dimensions.
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Electrokinetically driven microfluidics and nanofluidics
He received his Ph. Nevertheless, a fundamental understanding of the governing mechanisms underlying the complex and nonlinear physicochemical hydrodynamics associated with these systems is required before practical microfluidic and nanofluidic devices can be engineered.
While most electrokinetics to date has focused on the use of DC electric fields, the use of AC fields is growing popular. AmazonGlobal Ship Orders Internationally. In particular, Leslie Yeo and Hsueh-Chia Chang discuss the linear and nonlinear theories underlying electroosmosis, electrophoresis, and dielectrophoresis pertaining to electrolytes as well as dielectric systems.
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Electrokinetically driven microfluidics and nanofluidics – RMIT Research Repository
Explore the Home Gift Guide. In this book, Leslie Yeo and Hsueh-Chia Chang aim to elucidate the fundamental mechanisms governing both DC and AC electrokinetic phenomena with a particular emphasis on the practical design of microfluidic and nanofluidic devices for a variety of biological applications.
microfluidicd There has recently been widespread interest in the use of AC electric fields, given the many advantages it offers over DC electrokinetics. Dr Chang has delivered more than 10 keynote lectures and seminars.
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Dr Chang’s research has culminated in more than journal electrokinefically and 12 patents.
Wonderful book on a subject that the authors have done exhaustive research in. Get fast, free shipping with Amazon Prime. This text aims to provide a comprehensive treatise on both classical equilibrium electrokinetic phenomena as well as the more recent non-equilibrium phenomena associated with both DC and AC electrokinetics in the context of their application to the design of microfluidic and nanofluidic technology.
Inhe was elected as a Fellow of the American Physical Society. Cambridge University Press; 1 edition November 9, Language: