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Effects of systematic errors on the mixing ratios of trace gases obtained from occultation spectra

Author: William Allen Shaffer; J H Shaw; Crofton B Farmer; Jet Propulsion Laboratory (U.S.),; United States. National Aeronautics and Space Administration,
Publisher: Pasadena, CA : Jet Propulsion Laboratory ; [Washington, DC : National Aeronautics and Space Administration], [1983]
Series: NASA contractor report, NASA CR-175371.
Edition/Format:   Book   Microform : National government publication : Microfiche : EnglishView all editions and formats
Summary:
"The influence of systematic errors in the parameters of the models describing the geometry and the atmosphere on the profiles of trace gases retrieved from simulated solar occultation spectra, collected at satellite altitudes, is investigated. Because of smearing effects and other uncertainties, it may be preferable to calibrate the spectra internally by measuring absorption lines of an atmospheric gas such as CO2  Read more...
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Additional Physical Format: Online version:
Shaffer, William Allen, 1956-
Effects of systematic errors on the mixing ratios of trace gases obtained from occultation spectra
(OCoLC)889251730
Material Type: Government publication, National government publication
Document Type: Book
All Authors / Contributors: William Allen Shaffer; J H Shaw; Crofton B Farmer; Jet Propulsion Laboratory (U.S.),; United States. National Aeronautics and Space Administration,
OCLC Number: 163978110
Description: 1 microfiche (24 [9] pages) : negative, illustrations ; 11 x 15 cm.
Series Title: NASA contractor report, NASA CR-175371.
Responsibility: W.A. Shaffer and J.H. Shaw and C.B. Farmer.

Abstract:

"The influence of systematic errors in the parameters of the models describing the geometry and the atmosphere on the profiles of trace gases retrieved from simulated solar occultation spectra, collected at satellite altitudes, is investigated. Because of smearing effects and other uncertainties, it may be preferable to calibrate the spectra internally by measuring absorption lines of an atmospheric gas such as CO2 whose vertical distribution is assumed rather than to rely on externally supplied information."--NTIS abstract.

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