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Spectroscopic measurement of air temperature
T. Hieta, M. Merimaa
Aalto University
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
12
Citations (Scopus)
Overview
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Earth and Planetary Sciences
Air Temperature
100%
Temperature Measurement
100%
Distance
100%
Oxygen
75%
Temperature
75%
Refractivity
50%
Environment
50%
Condition
50%
Air
50%
Cause
50%
Jet Flow
25%
Spatial Resolution
25%
Spectroscopy
25%
Temperature Gradient
25%
Molecular Spectroscopy
25%
Ambient Air
25%
Absorption Spectra
25%
Distributed Feedback Laser
25%
Dimensional Measurement
25%
Knowledge
25%
Laboratory
25%
High Temperature
25%
Ratio
25%
Dimension
25%
Parameter
25%
Rapid
25%
Selection
25%
Stable
25%
Variation
25%
Dating
25%
Error
25%
Convention
25%
Temporal Resolution
25%
Physics
Air Temperature
100%
Distance
100%
Temperature Measurement
100%
Oxygen
75%
Temperature
75%
Refractivity
50%
Environment
50%
Air
50%
Spectroscopy
25%
Molecular Spectroscopy
25%
Absorption Spectra
25%
Distributed Feedback Lasers
25%
Time Measurement
25%
Ambient Air
25%
Dimensional Measurement
25%
Line Intensity
25%
Knowledge
25%
High Temperature
25%
Independent Variables
25%
Ratios
25%
Dimensions
25%
Variations
25%
Temperature Gradients
25%
Flames
25%
Computer Science
Spatial Resolution
100%
Industrial Environment
100%
Longer Distance
100%
Ratio Measurement
100%
High Temperature
100%
Temporal Resolution
100%
Laboratory Environment
100%
Modified Version
100%
Short Distance
100%
Chemistry
Reaction Temperature
100%
Spectroscopy
100%
Dioxygen
30%
Refractive Index
20%
Distance Measurement
20%
Environment
20%
Spectroscopy
10%
Thermometry
10%
Molecular Spectroscopy
10%
Procedure
10%
Concentration
10%
Time
10%
Strength
10%
Error
10%
Noise
10%
Dimension
10%
Flame
10%
Material Science
Air
100%
Temperature
100%
Refractive Index
20%
Mechanical Strength
10%
Laser
10%