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Interaction of Microparticles in a Miniaturized Vacuum-Cleaner
Ignaas S. M. Jimidar
, Yoachim Vanderheyden
,
H. Gardeniers
, Gert Desmet
Mesoscale Chemical Systems
Research output
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Dive into the research topics of 'Interaction of Microparticles in a Miniaturized Vacuum-Cleaner'. Together they form a unique fingerprint.
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Engineering
Microparticles
100%
Laminar Flows
60%
Liquid Chromatography
40%
Columns (Structural)
40%
Determines
40%
Flow Field
40%
Fluid-Structure Interaction
40%
Solid Object
20%
High Pressure
20%
Packed Bed
20%
Models
20%
Velocity
20%
Bottom Surface
20%
Modules
20%
Complexity
20%
Bottom Plate
20%
Chemical Composition
20%
Research
20%
Environment
20%
Nanometre
20%
Manufacturing Strategy
20%
Spherical Particle
20%
Miniaturization
20%
Micron
20%
Sized Particle
20%
Efficiency
20%
Inlet Velocity
20%
High Efficiency
20%
Micro Machining
20%
Rectangular Channel
20%
Simulation
20%
Particle Trajectory
20%
Operating Pressure
20%
Biochemicals
20%
Liquid Chromatography Mass Spectrometry
20%
Chemistry
Vacuum
100%
Liquid Chromatography
40%
Solid
40%
Velocity
40%
Force
40%
Sample
40%
Structure
40%
Pressure
40%
Trajectory
20%
Phase Composition
20%
Micromachining
20%
Volume
20%
Monolayer
20%
Engineering Process
20%
Shape
20%
Food
20%
Surface
20%
Chromatography Column
20%
Environment
20%
Particle Size
20%
Liquid Chromatography Mass Spectrometry (LCMS)
20%
Physics
Microparticles
100%
Vacuum
100%
Particle
100%
Jet Flow
21%
Liquids
21%
Boundaries
21%
Speed
14%
Flow Distribution
14%
Distance
14%
Solid State
14%
Suction
14%
Parameter
7%
Shapes
7%
Independent Variables
7%
Micromachining
7%
Mass Spectroscopy
7%
Knowledge
7%
Environment
7%
Arrays
7%
Deposition
7%
Miniaturization
7%
Increasing
7%
Volume
7%
Technology
7%
Particle Trajectories
7%
Chemical Composition
7%
High Pressure
7%
Air Flow
7%
Measuring Instruments
7%
Model
7%
Simulation
7%
Pressure
7%
Material Science
Particle
100%
Fluid-Structure Interaction
13%
Solid
13%
Analytical Method
13%
Monolayers
6%
Surface
6%
Micromachining Material
6%
Pharmacology, Toxicology and Pharmaceutical Science
Microparticle
100%
Hyperbarism
20%