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Titlebook: Electrokinetics and Electrohydrodynamics in Microsystems; Antonio Ramos Book 2011 CISM Udine 2011 dielectrophoresis.electrohydrodynamics.e

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Fundamentals of Electrowetting and Applications in Microsystems,ts of wetting and we discuss in detail the fundamental physics behind the electrowetting phenomenon. We compare the different theoretical approaches to the electrowetting equation, i.e. the thermodynamic derivation and the electromechanical interpretation. The effects of using AC signals are discuss
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Electrohydrodynamic Pumping in Microsystems,ohydrodynamic actuation in microdevices. First, we describe the basic equations of Electrohydrodynamics in the microscale, providing some basic concepts of electrical conduction in liquids. We also deal with some basic fluid-mechanical aspects that are common for micropumps. Then, five different ele
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Electrohydrodynamic Stability,is series of lecture notes, a few basic concepts of electrohydrodynamic stability are illustrated using two model problems, electrokinetic mixing flow and electrohydrodynamic cone-jet, respectively wall-bounded and free surface flow. After a review of the governing equations, spatiotemporal analysis
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Induced-Charge Electrokinetic Phenomena,ed-charge in an electrolytic solution near a polarizable surface. Many applications are discussed, such as colloidal particle dynamics (induced-charge electrophoresis) and microfluidic mixing and pumping (induced-charge electro-osmosis), while emphasizing the basic physics of each phenomenon. A Stan
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Electrohydrodynamic Stability, and electrohydrodynamic cone-jet, respectively wall-bounded and free surface flow. After a review of the governing equations, spatiotemporal analysis of the two example problems is presented using linearized bulk- or surface-coupled models. The operating regimes for these flows are discussed within the framework of electrohydrodynamic stability.
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Frühe Technikskepsis und -kritikessions will be derived for the different forces and torques and describe the resulting movement of the particles. The frequency dependent behaviour will be discussed and presented as a mechanism of determining the dielectric properties of a particle, as well as manipulating and separating different types of particle.
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