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Volumn 399, Issue 4, 2011, Pages 1481-1491
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Relaxation of microparticles exposed to hydrodynamic forces in microfluidic conduits
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Author keywords
Focusing mechanism; Microfluidic separations; Micrometer sized particles; Microthermal field flow fractionation; Relaxation; Theoretical model and experiments at low Reynolds numbers
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Indexed keywords
ACTIVE FORCES;
CARRIER LIQUID;
DIFFERENT SIZES;
EQUILIBRIUM POSITIONS;
EXPERIMENTAL CONDITIONS;
EXPERIMENTAL DATA;
FIELD FLOW FRACTIONATION;
HYDRODYNAMIC FLOWS;
HYDRODYNAMIC FORCES;
LIFT FORCE;
LINEAR VELOCITY;
MICRO-PARTICLES;
MICROFLUIDIC CHANNEL;
MICROMETER-SIZED PARTICLES;
MICROTHERMAL FIELD-FLOW FRACTIONATION;
NUMERICAL CALCULUS;
RELAXATION;
SEPARATION UNITS;
THEORETICAL MODELS;
THERMODYNAMIC FORCES;
VELOCITY GRADIENTS;
VELOCITY PROFILES;
EXPERIMENTS;
FLUID DYNAMICS;
HYDRODYNAMICS;
ISOMERS;
LIQUID CHROMATOGRAPHY;
MICROFLUIDICS;
MICROMETERS;
REYNOLDS NUMBER;
FRACTIONATION;
ARTICLE;
HYDRODYNAMICS;
MICROFLUIDIC ANALYSIS;
PARTICLE SIZE;
HYDRODYNAMICS;
MICROFLUIDIC ANALYTICAL TECHNIQUES;
PARTICLE SIZE;
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EID: 79451471188
PISSN: 16182642
EISSN: 16182650
Source Type: Journal
DOI: 10.1007/s00216-010-4163-0 Document Type: Article |
Times cited : (3)
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References (34)
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