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Fingerprint Dive into the research topics where Vitaly Anatolievich Vlasov is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

Chemical Compounds

Lithium
Powders
Ferrite
Ferrites
Zinc
Heat radiation
Heating
Phase composition
Electron beams
Titanium
Iron powder
Thermoanalysis
Temperature
Microstructure
Ball mills
Annealing
Ball milling
Thermogravimetric analysis
Pigments
Saturation magnetization
Particle size
X ray diffraction
Coatings
Dielectric properties
Oxidation
Magnetization
Radiation
Sintering
Kinetics
X rays
X ray diffraction analysis
Nanoparticles
Electrons
Chemical analysis
Scanning electron microscopy
Electron irradiation
Furnaces
Magnetic fields
Cations
Compaction
Durapatite
Detonation
Spraying
Hydrocarbons
Cobalt
Dielectric losses
Feedstocks
Minerals
Chemical activation
X ray powder diffraction

Engineering & Materials Science

Ferrites
Lithium
Ferrite
Powders
Heating
Heat radiation
Zinc
Electron beams
Titanium
Dielectric properties
Saturation magnetization
Phase composition
X ray diffraction
Pigments
Nanoparticles
Chemical analysis
Temperature
Magnetization
Coatings
Microstructure
Radiation
Curie temperature
Optical properties
Sintering
Chemical activation
X ray diffraction analysis
Scanning electron microscopy
Positive ions
Iron powder
Titanium dioxide
Particle size
Irradiation
Compaction
X rays
Detonation
Spraying
Zinc oxide
Hydroxyapatite
Dielectric losses
Feedstocks
Molybdenum
Polarization
Processing
Permittivity
Absorption spectra
Cobalt
Minerals
High resolution electron microscopy
Diffraction

Physics & Astronomy

Chemistry and Materials

ferrites
lithium
zinc
ceramics
solid phases
titanium
iron
oxidation
iron oxides
titanium oxides
zinc oxides

General

synthesis
reagents
balls
thermal radiation
thermal analysis
solid state
homogeneity
microstructure
kinetics
magnetization
radio waves
activation
detonation
blue shift
energy
saturation
microwaves
sintering

Engineering

heating
coatings
x rays
annealing
grinding
furnaces
irradiation
spraying

Physics

electron beams
diffraction
electromagnetic properties
nanoparticles
temperature
reactivity
frequency ranges
dielectric polarization
optical properties
high energy electrons
electrons

Mathematical and Computer Sciences

radiation tolerance