INIS
electrochemistry
100%
zinc
100%
glycogen
100%
corrosion
100%
inhibition
66%
efficiency
66%
energy
50%
adsorption
50%
surfaces
33%
concentration
33%
spectroscopy
33%
metals
33%
x radiation
33%
correlations
16%
charges
16%
scanning electron microscopy
16%
hardness
16%
atomic force microscopy
16%
electrons
16%
density functional method
16%
energy gap
16%
thermodynamics
16%
carbon
16%
polarization
16%
dipole moments
16%
impedance
16%
temperature range
16%
adsorption isotherms
16%
electronegativity
16%
anticorrosion
16%
sulfamic acid
16%
Chemistry
Adsorption
100%
Acid Corrosion
100%
Glycogen
100%
Inhibitor
66%
% Inhibition
66%
Concentration
33%
Reaction Temperature
33%
Metal
33%
Surface
33%
Corrosion
33%
Scanning Electron Microscopy-Energy Dispersive X-Ray
33%
Zinc
33%
Structure
16%
Density Functional Theory
16%
Electron Particle
16%
X-Ray
16%
Polarization
16%
Spectroscopy
16%
Biopolymer
16%
Band Gap
16%
Chemical Activation
16%
Carbon
16%
Atomic Force Microscopy
16%
Thermodynamics
16%
Hardness
16%
Dipole Moment
16%
Quantum Chemical Calculations
16%
Lowest Unoccupied Molecular Orbital
16%
Material Science
Glycogen
100%
Temperature
33%
Correlation
33%
Corrosion
33%
Dielectric Spectroscopy
33%
Spectroscopy Technique
33%
Adsorption Isotherm
33%
Metal
16%
Surface
16%
Hardness
16%
Biopolymer
16%
Density
16%
Electrochemical Reaction
16%
Atomic Force Microscopy
16%
Metal Surface
16%