INIS
brillouin scattering
9%
comparative evaluations
18%
computer simulation
9%
data
9%
epitaxy
36%
hardness
45%
increasing
9%
interfaces
9%
layers
27%
magnesium oxides
9%
metals
36%
microhardness
9%
mixtures
18%
modulation
9%
niobium nitrides
100%
pressure range giga pa
36%
sputtering
9%
substrates
9%
superlattices
54%
transmission electron microscopy
9%
values
18%
volume
9%
wavelengths
9%
width
9%
x radiation
9%
x-ray diffraction
9%
Physics
Brillouin Scattering
9%
Computerized Simulation
9%
Diffraction
9%
Hardness
45%
Increasing
9%
Magnetron Sputtering
9%
Metal
36%
Microhardness
9%
Mixtures
18%
Modulation
9%
Rules
9%
Substrates
9%
Transmission Electron Microscopy
9%
Value
18%
Width
9%
Biochemistry, Genetics and Molecular Biology
Computer Model
9%
Hardness
45%
Modulation
9%
Superlattices
54%
Transmission Electron Microscopy
9%
Volume
9%
X Ray Diffraction
9%
Material Science
Hardness
45%
Magnesium Oxide
9%
Microhardness
9%
Mixture
18%
Multilayers
9%
Volume Fraction
9%