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CHAPTER 9: Dynamics of membrane-bound particles: Capsules and vesicles
Petia M. Vlahovska
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Corresponding author for this work
Engineering Sciences and Applied Mathematics
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Chapter in Book/Report/Conference proceeding
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Chapter
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Scopus citations
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capsules
100%
particles
75%
membranes
75%
shape
50%
dynamics
50%
motion
50%
asymmetry
50%
deformation
50%
electric fields
50%
polymers
25%
surfaces
25%
modeling
25%
solutions
25%
shear
25%
microorganisms
25%
blood flow
25%
nonlinear problems
25%
tanks
25%
swimming
25%
spherical harmonics
25%
poiseuille flow
25%
Earth and Planetary Sciences
Vesicle
100%
Membrane
75%
Particle
75%
Deformation
50%
Electric Field
50%
Shape
50%
Shear Flow
25%
Formalism
25%
Jet Flow
25%
Nonlinearity
25%
Micro-Organism
25%
Traction
25%
Harmonics
25%
Blood Flow
25%
Asphericity
25%
Response
25%
State
25%
Show
25%
Stem
25%
Subject
25%
Swimming
25%
Chemistry
Capsule
100%
Shape
50%
Electric Field
50%
Asymmetry
50%
Analytical Method
50%
Flow
50%
Nonequilibrium
25%
Aqueous Solution
25%
Surface
25%
Force
25%
Polymer
25%
Biochemistry, Genetics and Molecular Biology
Membrane
75%
Flow
75%
Electric Field
50%
Dynamics
50%
Motion
50%
Blood Flow
25%
Surface Property
25%
Shear Flow
25%
Microcirculation
25%
Swimming
25%
Solution and Solubility
25%
Force
25%
Material Science
Membrane
75%
Polymer
25%
Solution
25%
Surface
25%
Analytical Modeling
25%
Chemical Engineering
Polymer
25%