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Dielectric Properties of Water in Charged Nanopores
Thomas R. Underwood,
Ian C. Bourg
Civil & Environmental Engineering
Research output
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Contribution to journal
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Article
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peer-review
1
Scopus citations
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Engineering & Materials Science
Clay
13%
Clay minerals
18%
Computer simulation
7%
Dielectric properties
81%
Dielectric properties of liquids
27%
Liquids
18%
Molecular dynamics
15%
Nanopores
100%
Permittivity
27%
Pore size
15%
Relaxation
25%
Soils
21%
Swelling
14%
Water
36%
Water content
14%
Physics & Astronomy
attenuation
20%
clays
29%
dielectric properties
56%
liquids
21%
minerals
13%
moisture content
14%
molecular dynamics
9%
montmorillonite
17%
permittivity
18%
porosity
29%
saturation
9%
simulation
5%
soils
28%
swelling
13%
water
38%
Chemical Compounds
Clay Mineral
26%
Dielectric Constant
20%
Dielectric Property
67%
Molecular Dynamics
16%
Permittivity
24%
Pore
29%
Pore Size Distribution
22%
Simulation
14%
Soil
38%
Solvent
10%
Time
8%