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A mathematical model for the hard sphere repulsion in ionic solutions
Yunkyong Hyont
, Bob Eisenberg
, Chun Liu
Mathematics
Institute for Computational and Data Sciences (ICDS)
Center for Computational Mathematics and Applications (CCMA)
Center for Interdisciplinary Mathematics
Research output
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Contribution to journal
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Article
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peer-review
132
Scopus citations
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Keyphrases
Mathematical Model
100%
Hard Spheres
100%
Total Energy
100%
Repulsion
100%
Finite Size
100%
Ionic Solution
100%
Active Sites
50%
Finite Element Method
50%
Potential Energy
50%
Semiconductors
50%
Charge Density
50%
Energy Terms
50%
Variational Approach
50%
Numerical Experiments
50%
Partial Differential Equation Systems
50%
Boundary Value Problem
50%
Energetic Variational Approach
50%
Poisson-Nernst-Planck Equations
50%
Selectivity Filter
50%
Concentrated Solution
50%
Ions in Solution
50%
Modified System
50%
Drift-diffusion
50%
Charge Conservation
50%
Mathematics
Variational Approach
100%
Mathematical Modeling
100%
Planck Equation
100%
Hard Spheres
100%
Finite Element Method
50%
Numerical Experiment
50%
Energetics
50%
Boundary Value Problems
50%
Charge Density
50%
Electrostatic Potential
50%
Systems Of Partial Differential Equations
50%
Boundary Condition
50%
Chemistry
Potential Energy
100%
Energetics
50%
Electrostatic Potential
50%
Charge Density
50%
electrode
50%
Material Science
Density
100%
Finite Element Method
100%