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A new law of thinning in foam dynamics
L. N. Brush
*
, S. H. Davis
*
Corresponding author for this work
Research output
:
Contribution to journal
›
Article
›
peer-review
20
Scopus citations
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Keyphrases
New Law
100%
Semi-arid
100%
Foam Dynamics
100%
Lamellae
66%
Capillary number
50%
Lamellar Thickness
33%
Liquid Area
33%
Order of Magnitude
16%
Gas-liquid
16%
Capillary
16%
Quasi-static
16%
Metallic Foam
16%
Interfacial Region
16%
Area Fraction
16%
Power-law Behavior
16%
Rupture Time
16%
Surfactant-free
16%
Liquid Fraction
16%
Liquid Foam
16%
Plateau Border
16%
Ceramic Foam
16%
Mobile Interfaces
16%
Thinning Rate
16%
Matched Asymptotic Analysis
16%
Engineering
Capillary Number
100%
Limiting Case
33%
Liquid Gas
33%
Earliest Time
33%
Surfactant
33%
Interfacial Region
33%
Liquid Fraction
33%
Law Behavior
33%
Cross Section
33%
Material Science
Surface Active Agent
100%
Film
100%
Ceramic Foams
100%
Earth and Planetary Sciences
Thinning
100%
Power Law
50%
Surfactant
50%
Chemical Engineering
Surfactant
100%
Film
100%