Chaotic micromixers using two-layer crossing channels to exhibit fast mixing at low Reynolds numbers.
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Chip-NMR biosensor for detection and molecular analysis of cellsA "twisted" microfluidic mixer suitable for a wide range of flow rate applications.An effective splitting-and-recombination micromixer with self-rotated contact surface for wide Reynolds number range applications.Concentration and purification of human immunodeficiency virus type 1 virions by microfluidic separation of superparamagnetic nanoparticles.Characterization of microfluidic mixing and reaction in microchannels via analysis of cross-sectional patterns.Rapid prototyping of three-dimensional microfluidic mixers in glass by femtosecond laser direct writing.Microfluidic platform for combinatorial synthesis and optimization of targeted nanoparticles for cancer therapy.System Integration - A Major Step toward Lab on a Chip.Effect of the crossing-structure sequence on mixing performance within three-dimensional micromixers.Parametric investigation on mixing in a micromixer with two-layer crossing channelsMixing enhancement in microfluidic channel with a constriction under periodic electro-osmotic flow.A versatile microfluidic chip for millisecond time-scale kinetic studies by electrospray mass spectrometry.An easily fabricated three-dimensional threaded lemniscate-shaped micromixer for a wide range of flow rates.Thin, Soft, Skin-Mounted Microfluidic Networks with Capillary Bursting Valves for Chrono-Sampling of Sweat.Dynamic, high precision targeting of growth modulating agents is able to trigger pollen tube growth reorientation.Investigation of the mixing efficiency of a chaotic micromixer using thermal lens spectrometry.An optofluidic imaging system to measure the biophysical signature of single waterborne bacteria.A microfluidic linear node array for the study of protein-ligand interactions.Aeroelasticity-based fluid agitation for lab-on-chips.Converting steady laminar flow to oscillatory flow through a hydroelasticity approach at microscales.Mixing enhancement for high viscous fluids in a microfluidic chamber.Mixing enhancement of a passive microfluidic mixer containing triangle bafflesUncertainty Analysis of Mixing Efficiency Variation in Passive Micromixers due to Geometric Tolerances
P2860
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P2860
Chaotic micromixers using two-layer crossing channels to exhibit fast mixing at low Reynolds numbers.
description
2005 nî lūn-bûn
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2005年の論文
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2005年学术文章
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name
Chaotic micromixers using two- ...... ixing at low Reynolds numbers.
@en
Chaotic micromixers using two- ...... ixing at low Reynolds numbers.
@nl
type
label
Chaotic micromixers using two- ...... ixing at low Reynolds numbers.
@en
Chaotic micromixers using two- ...... ixing at low Reynolds numbers.
@nl
prefLabel
Chaotic micromixers using two- ...... ixing at low Reynolds numbers.
@en
Chaotic micromixers using two- ...... ixing at low Reynolds numbers.
@nl
P356
P1433
P1476
Chaotic micromixers using two- ...... mixing at low Reynolds numbers
@en
P304
P356
10.1039/B502031J
P577
2005-05-16T00:00:00Z