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A Multiple-Scale Analysis of Evaporation Induced Marangoni Convection
Matthew G. Hennessy, Andreas Münch
Research output
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Contribution to journal
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Article
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peer-review
7
Scopus citations
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Dive into the research topics of 'A Multiple-Scale Analysis of Evaporation Induced Marangoni Convection'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Evaporation
100%
Solvent
100%
Species
50%
Stability
50%
Expansion
50%
Timescale
50%
Convection
25%
Polystyrene
25%
Depletion
25%
Liquid Surface
25%
Surface Tension
25%
Binary Mixture
25%
Toluene
25%
Loss
25%
Mixture
25%
Magnitude
25%
Gradient
25%
Order
25%
Correction
25%
Time
25%
Experiment
25%
Society
25%
Validity
25%
Marangoni Convection
25%
Engineering
Evaporation
100%
Multiple Scale
50%
Polymer
25%
Diffusive
25%
Marangoni Convection
25%
Binary Mixture
25%
Linear Operator
25%
Liquid Layer
25%
Linear Stability Analysis
25%
Liquid Surface
25%
Depletion
25%
Marangoni
25%
Basis State
25%
Dimensional Approximation
25%
Scale Analysis
25%
Linearized System
25%
Normal Mode
25%
Linearized Problem
25%
Mixture
25%
Experiments
25%
Losses
25%
Stability
25%
Physics
Evaporation
100%
Stability
50%
Expansion
50%
Polystyrene
25%
Marangoni Convection
25%
Liquid Surfaces
25%
Mixtures
25%
Magnitude
25%
Gradients
25%
Correction
25%
Approximation
25%
Society
25%
Validity
25%
Chemistry
Evaporation
100%
Solvent
100%
Expansion
50%
Toluene
25%
Liquid Film
25%
Normal Modes
25%
Mixture
25%
Time
25%
Polymer
25%
Concentration
25%
Interfacial Tension
25%
Mathematics
Timescale
50%
Linear Operator
25%
Linearized System
25%
Basis State
25%
Normal Mode
25%
Approximation
25%
Applied Mathematics
25%
Industrial Mathematics
25%
Order
25%
Stability
25%