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Improved retrieval of tropospheric temperatures from remote measurements of thermal radiation using the adiabatic lapse rate as a constraint
G. E. Peckham, M. Grippa
School of Engineering & Physical Sciences
Research output
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Article
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peer-review
3
Citations (Scopus)
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Dive into the research topics of 'Improved retrieval of tropospheric temperatures from remote measurements of thermal radiation using the adiabatic lapse rate as a constraint'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Adiabatic Lapse Rate
100%
Thermal Radiation
100%
Air Temperature
50%
Temperature Profile
50%
Climate Change
50%
Inverse Problem
50%
Atmospherics
50%
Image Enhancement
50%
Weather Forecasting
50%
Radiometer
50%
Troposphere
50%
Noise Measurement
50%
INIS
constraints
100%
thermal radiation
100%
solutions
75%
data
25%
images
25%
concentration
25%
engineering
25%
noise
25%
space
25%
climatic change
25%
water vapor
25%
resolution
25%
accuracy
25%
radiometers
25%
atmospherics
25%
forecasting
25%
weather
25%
troposphere
25%
atmospheric temperature
25%