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ELECTRODYNAMICS OF THE METAL/ELECTROLYTE BOUNDARY ALLOWING FOR MICROSCOPIC EFFECTS.
A. M. Brodskii
*
,
M. I. Urbakh
*
Corresponding author for this work
School of Chemistry
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Dive into the research topics of 'ELECTRODYNAMICS OF THE METAL/ELECTROLYTE BOUNDARY ALLOWING FOR MICROSCOPIC EFFECTS.'. Together they form a unique fingerprint.
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Keyphrases
Electrodynamics
100%
Metal/Electrolyte
100%
Microscopic Effect
100%
Surface Properties
50%
Ultraviolet Range
50%
Spectral Characteristics
50%
Surface Plasmon
50%
Mathematical Description
50%
Surface Characteristics
50%
Near Ultraviolet
50%
Dispersion Law
50%
Light Reflection Coefficient
50%
Integral Surface
50%
Double-layer Structure
50%
Double-layer Adsorption
50%
Engineering
Observables
100%
Spectral Characteristic
100%
Mathematical Description
100%
Layer Structure
100%
Double Layer
100%
Reflectance
100%
Surface Plasmon
100%
Physics
Electrodynamics
100%
Surface Plasmon
50%
Surface Properties
50%
Reflectance
50%