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Derek Y C Chan
HIndex: 25
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Contact angle
Mean field theory
Double layer
Charged particle
Monte Carlo method
Fluid dynamics
Aqueous solution
Mathematical model
Distribution function
Porous medium
Length scale
van der Waals force
Dielectric
Interface
Thermodynamics
Statistical mechanics
Work content
Coalescence
Atomic force microscopy
Surface tension
Particle size
Surface energy
Boundary value problem
Poisson–Boltzmann equation
Charge density
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Contact angle
Mean field theory
Double layer
Charged particle
Monte Carlo method
Fluid dynamics
Aqueous solution
Mathematical model
Distribution function
Porous medium
Length scale
van der Waals force
Dielectric
Interface
Thermodynamics
Statistical mechanics
Work content
Coalescence
Atomic force microscopy
Surface tension
Particle size
Surface energy
Boundary value problem
Poisson–Boltzmann equation
Charge density
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Match this author profile with one of the following researchers:
Author Name
Affiliation
Papers
Derek Y C Chan
Institute For Advanced Study
174
Derek Y C Chan
Institute For Advanced Study
19
Derek Y C Chan
Institute For Advanced Study
11
Derek Y C Chan
Institute For Advanced Study
7
Derek Y C Chan
Purdue University
3
Derek Y C Chan
Institute For Advanced Study
1
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