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Kaeufl, H. U.; Rothermel, H.; Drapatz, S. |
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Title |
Indication for H2O in the upper atmosphere of Mars |
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Journal Article |
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1984 |
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Astron. Astrophys. |
Abbreviated Journal |
A&A |
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Volume |
141 |
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430-432 |
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atmospheric moisture, mars atmosphere, upper atmosphere, water vapor, carbon dioxide, emission spectra, nonequilibrium thermodynamics, polar regions |
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452 |
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Author |
Chen, P. S. |
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Title |
Infrared properties of barium stars |
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2001 |
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Astron. Astrophys. |
Abbreviated Journal |
A&A |
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372 |
Issue |
1 |
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245-248 |
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0004-6361 |
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RPLAB @ s @ |
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415 |
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Author |
Soifer, B. T.; Pipher, J. L. |
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Title |
Instrumentation for infrared astronomy |
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Journal Article |
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Year |
1978 |
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Annual Rev. Astron. Astrophys. |
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16 |
Issue |
1 |
Pages |
335-369 |
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infrared applications |
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0066-4146 |
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492 |
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Käufl, H. U.; Rothermal, H.; Drapatz, S. |
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Title |
Investigation of the Martian atmosphere by 10 micron heterodyne spectroscopy |
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Journal Article |
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Year |
1984 |
Publication |
Astron. Astrophys. |
Abbreviated Journal |
A&A |
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Volume |
136 |
Issue |
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Pages |
319-325 |
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Keywords |
astronomical spectroscopy, atmospheric composition, infrared astronomy, mars atmosphere, spectral line width, carbon dioxide concentration, nonequilibrium thermodynamics, optical heterodyning, planetary radiation, mars, atmosphere, spectroscopy, atmosphere, carbon dioxide, altitude, kinetics, rotation, thermal properties, temperature, emissions, intensity, models, data, spectra |
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449 |
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Author |
Hansen, Lene; Jørgensen, H.E.; Nørgaard-Nielsen, Hans Ulrik; Pedersen, Kenneth; Goudfrooij, P.; Linden-Vornle, M.J.D. |
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Title |
ISO far-infrared observations of rich galaxy clusters III. Abell 2029, Abell 2052, Abell 2142 |
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Journal Article |
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Year |
2000 |
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Astron. Astrophys. |
Abbreviated Journal |
A&A |
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Volume |
362 |
Issue |
1 |
Pages |
133-137 |
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Abstract |
A sample of five rich galaxy clusters has been mapped by ISO at 60 μm, 100 μm, 135 μm, and 200 μm using the PHT-C camera. In previous papers Abell 2670 and Sersic 159-03 were discussed. Here we present the results for Abell 2029, Abell 2052, and Abell 2142. The conclusion of the survey is that the relatively small fields (approximate to 60 square are minutes) are structured with filaments or superpositions of point sources. In some cases point sources (approximate to 0.1 Jy) can be identified with cluster galaxies. An attempt to demonstrate infrared emission from dust in the cooling flows (due to star formation) was inconclusive. |
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RPLAB @ s @ |
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456 |
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