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Buoyancy and capillary effects on floating liquid lenses
P. D. Ravazzoli
, A. G. González
, J. A. Diez
,
H. A. Stone
Mechanical & Aerospace Engineering
Chemical & Biological Engineering
High Meadows Environmental Institute
Lewis-Sigler Institute for Integrative Genomics
Molecular Biology
Princeton Materials Institute
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Scopus citations
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Keyphrases
Buoyancy Effect
100%
Capillary Effect
100%
Liquid Lens
100%
Liquid Surfaces
100%
Gravity Effect
50%
Most Probable
50%
Analytical Expression
50%
Physical Parameters
50%
Surface Tension Force
50%
Center of Mass
50%
Drop Shape
50%
Non-wetting
50%
Small Energy
50%
Liquid Drop
50%
Equilibrium Solution
50%
Equilibrium Shape
50%
Spreading Factor
50%
Families of Equilibria
50%
Engineering
Liquid Surface
100%
Energy Engineering
50%
Energetics
50%
Physical Parameter
50%
Surface Tension Force
50%
Liquid Drop
50%
Equilibrium Shape
50%
Equilibrium Solution
50%
Mathematics
Energetics
100%
Equilibrium Solution
100%
Physics
Liquid Surface
100%
Center of Mass
50%
Energetics
50%