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Träfflista för sökning "WFRF:(Frisk T) "

Search: WFRF:(Frisk T)

  • Result 1-10 of 93
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1.
  • Thomas, HS, et al. (author)
  • 2019
  • swepub:Mat__t
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  • Meech, K. J., et al. (author)
  • EPOXI: Comet 103P/Hartley 2 Observations from a Worldwide Campaign
  • 2011
  • In: Astrophysical Journal Letters. - London : IOP. - 2041-8213 .- 2041-8205. ; 734:L1, s. 1-9
  • Journal article (peer-reviewed)abstract
    • Earth- and space-based observations provide synergistic information for space mission encounters by providing data over longer timescales, at different wavelengths and using techniques that are impossible with an in situ flyby. We report here such observations in support of the EPOXI spacecraft flyby of comet 103P/Hartley 2. The nucleus is small and dark, and exhibited a very rapidly changing rotation period. Prior to the onset of activity, the period was ~16.4?hr. Starting in 2010 August the period changed from 16.6?hr to near 19?hr in December. With respect to dust composition, most volatiles and carbon and nitrogen isotope ratios, the comet is similar to other Jupiter-family comets. What is unusual is the dominance of CO 2 -driven activity near perihelion, which likely persists out to aphelion. Near perihelion the comet nucleus was surrounded by a large halo of water-ice grains that contributed significantly to the total water production.
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  • Highlights from the first year of Odin observations
  • 2003
  • In: Astronomy and Astrophysics. - : EDP Sciences. - 0004-6361 .- 1432-0746. ; 402, s. L39-L46
  • Journal article (peer-reviewed)abstract
    • Key Odin operational and instrumental features and highlights from our sub-millimetre and millimetre wave observations of H2O, H218O, NH3, 15NH3 and O2 are presented, with some insights into accompanying Odin Letters in this A&A issue. We focus on new results where Odin's high angular resolution, high frequency resolution, large spectrometer bandwidths, high sensitivity or/and frequency tuning capability are crucial: H2O mapping of the Orion KL, W3, DR21, S140 regions, and four comets; H2O observations of Galactic Centre sources, of shock enhanced H2O towards the SNR IC443, and of the candidate infall source IRAS 16293-2422; H218O detections in Orion KL and in comet Ikeya-Zhang; sub-mm detections of NH3 in Orion KL (outflow, ambient cloud and bar) and ρ Oph, and very recently, of 15NH3 in~Orion KL. Simultaneous sensitive searches for the 119 GHz line of O2 have resulted in very low abundance limits, which are difficult to accomodate in chemical models. We also demonstrate, by means of a quantitative comparison of Orion KL H2O results, that the Odin and SWAS observational data sets are very consistently calibrated. Odin is a Swedish-led satellite project funded jointly by the Swedish National Space Board (SNSB), the Canadian Space Agency (CSA), the National Technology Agency of Finland (Tekes), and the Centre National d'études Spatiales (CNES, France). The Swedish Space Corporation (SSC) has been the prime industrial contractor, and is also responsible for the satellite operation from its Odin Mission Control Centre at SSC in Solna and its Odin Control Centre at ESRANGE near Kiruna in northern Sweden. See also the SNSB Odin web page: http://www.snsb.se/eng_odin_intro.shtml
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10.
  • Kasai, Y., et al. (author)
  • Overview of the Martian atmospheric submillimetre sounder FIRE
  • 2012
  • In: Planetary and Space Science. - : Elsevier BV. - 0032-0633 .- 1873-5088. ; 63-64:SI, s. 62-82
  • Journal article (peer-reviewed)abstract
    • We propose a submillimetre-wave atmospheric emission sounding instrument, called Far-InfraRed Experiment (FIRE), for the Japanese Martian exploration programme "Mars Exploration with Lander-Orbiter Synergy" (MELOS). The scientific target of FIRE/MELOS is to understand the dust suspended meteorology of the Mars. FIRE will provide key meteorological parameters, such as atmospheric temperature profiles for outside and inside dust storms, the abundance profile of the atmospheric compositions and their isotopes, and wind velocity profiles. FIRE will also provide the local time dependency of these parameters. The observational sensitivity of FIRE/MELOS is discussed in this paper. FIRE will explore the meteorological system of the Martian atmosphere including the interaction between its surface and atmosphere.
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  • Result 1-10 of 93
Type of publication
journal article (77)
conference paper (13)
other publication (1)
research review (1)
Type of content
peer-reviewed (79)
other academic/artistic (12)
pop. science, debate, etc. (1)
Author/Editor
Frisk, T (34)
Frisk, U. (22)
Sandqvist, Aa. (15)
Lecacheux, A. (14)
Larsson, C (13)
Olberg, Michael, 195 ... (12)
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Kwok, S (12)
Hjalmarson, Åke, 193 ... (12)
Hasegawa, T. (10)
Larsson, B (10)
Zedenius, J (8)
Wallin, G (8)
Ristorcelli, I. (8)
Olofsson, G. (8)
Frisk Kockum, Anton, ... (7)
Bergman, P. (7)
Falgarone, E. (7)
Florén, H.-G. (7)
Ranta, S (7)
Hoog, A (7)
Pagani, L (7)
Serra, G (7)
Gerin, M. (7)
Buat, V. (7)
Biver, N. (7)
Fich, M. (7)
Olberg, M. (7)
Frisk, G (6)
Olofsson, Henrik, 19 ... (6)
Hjalmarson, Å (6)
Sandqvist, Aage (6)
Plume, R. (6)
Nordgren, A (5)
Harper, David A.T. (5)
Bergman, Per, 1960 (5)
Frisk, Åsa M. (5)
Feldman, P. (5)
Black, J H (5)
Black, John H, 1949 (4)
Andersson, A (4)
Olofsson, H. (4)
Laurell, T. (4)
Taylan, F (4)
Tesi, B (4)
Hartogh, P. (4)
Ray, S (4)
Encrenaz, P. (4)
Crovisier, J. (4)
Bernath, P. (4)
Frisk, F (4)
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University
Karolinska Institutet (43)
Chalmers University of Technology (23)
Stockholm University (16)
Uppsala University (15)
University of Gothenburg (7)
Lund University (4)
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Royal Institute of Technology (2)
Linköping University (2)
Umeå University (1)
Luleå University of Technology (1)
Örebro University (1)
Malmö University (1)
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Language
English (92)
Swedish (1)
Research subject (UKÄ/SCB)
Natural sciences (29)
Medical and Health Sciences (11)
Engineering and Technology (2)
Social Sciences (1)

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