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Volumn 40, Issue 5, 2010, Pages 967-980
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Mathematical modeling of AC electroosmosis in microfluidic and nanofluidic chips using equilibrium and non-equilibrium approaches
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Author keywords
AC electroosmosis; Electrokinetics; Mathematical modeling; Microfluidics; Nanofluidics; Traveling wave
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Indexed keywords
AC ELECTROOSMOSIS;
CONTINUOUS WAVE;
ELECTRODE SURFACES;
ELECTROKINETICS;
ELECTROOSMOTIC;
EQUILIBRIUM MODELS;
EXPERIMENTAL DATA;
FREQUENCY CHARACTERISTIC;
MATHEMATICAL MODELING;
MICRO PUMP;
MODELING APPROACH;
NANO CHANNELS;
NANOFLUIDIC SYSTEMS;
NON EQUILIBRIUM;
NONEQUILIBRIUM MODEL;
PLANAR BOUNDARIES;
PLANAR ELECTRODE;
SLIP BOUNDARY CONDITIONS;
TRAVELING WAVE;
BOUNDARY CONDITIONS;
COMPUTER SIMULATION;
ELECTRIC POTENTIAL;
ELECTRODES;
ELECTRODYNAMICS;
ELECTROMAGNETIC FIELDS;
FORECASTING;
MATHEMATICAL MODELS;
MICROFLUIDICS;
NANOFLUIDICS;
POISSON EQUATION;
PUMPS;
ELECTROOSMOSIS;
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EID: 77955770835
PISSN: 0021891X
EISSN: None
Source Type: Journal
DOI: 10.1007/s10800-009-9966-3 Document Type: Conference Paper |
Times cited : (29)
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References (34)
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