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Radiative transfer studies and Next-Generation NIR probe prototype
Lauri Kurki, Ralf Marbach
VTT Technical Research Centre of Finland
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Dive into the research topics of 'Radiative transfer studies and Next-Generation NIR probe prototype'. Together they form a unique fingerprint.
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Keyphrases
Optical Properties
100%
Powder Mixture
100%
Spectrometer
100%
Chemical Concentration
100%
Radiative Transfer
100%
NIR Probe
100%
Transfer Research
100%
Physical Properties
50%
Particle Size
50%
Particle Size Distribution
50%
Simulation Software
50%
Wavelength Range
50%
Spectroscopic Measurement
50%
Wireless
50%
Reference Measurements
50%
Absorption Properties
50%
Scattering Properties
50%
Laboratory Research
50%
Absorption Coefficient
50%
Inverse Problem
50%
Blend Homogeneity
50%
Scattering Anisotropy
50%
Diffuse Reflectance Spectroscopy
50%
Scattering Coefficient
50%
Pharmaceutical Powders
50%
Spatially Resolved Diffuse Reflectance
50%
Anisotropy Factor
50%
Design Task
50%
INIS
probes
100%
radiative transfer
100%
laboratories
66%
powders
66%
design
50%
concentration
33%
particle size
33%
optical properties
33%
absorption
33%
scattering
33%
spectrometers
33%
simulation
16%
comparative evaluations
16%
illumination
16%
physical properties
16%
computer codes
16%
growth
16%
distribution
16%
range
16%
wavelengths
16%
spectroscopy
16%
pharmaceuticals
16%
anisotropy
16%
Engineering
Main Result
100%
Work Package
66%
Size of Particle
33%
Scattering Coefficient
33%
Design Task
33%
Diffuse Reflectance
33%
Simulation Software
33%
Research Laboratories
33%
Particle Size Analysis
33%
Absorptivity
33%
Absorption Coefficient
33%
Material Science
Optical Property
100%
Anisotropy
50%
Physical Property
50%
Particle Size Analysis
50%
Diffuse Reflectance Spectroscopy
50%