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On evaporation of sessile drops with moving contact lines
N. Murisic,
L. Kondic
Mathematical Sciences
Research output
:
Contribution to journal
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Article
›
peer-review
106
Scopus citations
Overview
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Dive into the research topics of 'On evaporation of sessile drops with moving contact lines'. Together they form a unique fingerprint.
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Keyphrases
Physical Experiment
100%
Moving Contact Line
100%
Sessile Drop
100%
Evaporative Flux
100%
Time-dependent Simulation
50%
Heat Conduction
50%
Liquid Phase
50%
Thermal Gradient
50%
Diffusion Limit
50%
Solid Surface
50%
Fully Nonlinear
50%
Non-linear Time
50%
Silicon Wafer
50%
Liquid Drop
50%
Vapor Diffusion
50%
Solid Phase
50%
Conduction Effect
50%
One-based
50%
Pure Liquid
50%
Water Evaporation
50%
Droplet Evolution
50%
Contact Line pinning
50%
Spontaneous Evaporation
50%
Marangoni Force
50%
Isopropanol
50%
Engineering
Contact Line
100%
Simulation Result
50%
Thermal Gradient
50%
Silicon Wafer
50%
Liquid Drop
50%
Marangoni Force
50%
Chemical Engineering
Heat Conduction
100%
Thermal Gradient
100%
Physics
Theoretical Model
100%
Conductive Heat Transfer
33%
Solid Surface
33%
Liquid Phase
33%