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Displaying results 1751 to 1760 of 5271.
  • Publications
    Daylight space debris laser ranging

    Steindorfer, M., Kirchner, G., Koidl, F., Wang, P., Jilete, B., & Flohrer, T. (2020). Daylight space debris laser ranging. Nature Communications, 11, 3735. https://doi.org/10.1038/s41467-020-17332-z

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  • Publications
    Maximum-variance gradiometer technique for removal of spacecraft-generated disturbances from magnetic field data

    Constantinescu, O., Auster, H., Delva, M., Hillenmaier, O., Magnes, W., & Plaschke, F. (2020). Maximum-variance gradiometer technique for removal of spacecraft-generated disturbances from magnetic field data. Geoscientific Instrumentation, Methods and Data Systems, 9, 451–469. https://doi.org/10.5194/gi-9-451-2020

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  • Publications
    Observability of ultraviolet NI lines in the atmosphere of transiting Earth-like planets

    Young, M., Fossati, L., Johnstone, C., Salz, M., Lichtenegger, H., France, K., Lammer, H., & Cubillos, P. (2020). Observability of ultraviolet NI lines in the atmosphere of transiting Earth-like planets. Astronomische Nachrichten, 341, 879-886. https://doi.org/10.1002/asna.202013842

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  • Publications
    Prediction of the in situ coronal mass ejection rate for solar cycle 25: Implications for Parker Solar Probe in situ observations

    Möstl, C., Weiss, A., Bailey, R., Reiss, M., Amerstorfer, T., Hinterreiter, J., Bauer, M., McIntosh, S., Lugaz, N., & Stansby, D. (2020). Prediction of the in situ coronal mass ejection rate for solar cycle 25: Implications for Parker Solar Probe in situ observations. Astrophysical Journal, 903, 92. https://doi.org/10.3847/1538-4357/abb9a1

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  • Publications
    Observations of solar type III radio bursts by Cassini/RPWS experiment

    Boudjada, M., el-Fadl, A., Galopeau, P., Al-Haddad, E., & Lammer, H. (2020). Observations of solar type III radio bursts by Cassini/RPWS experiment. Advances in Radio Science, 18, 83-87. https://doi.org/10.5194/ars-18-83-2020

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  • Publications
    Radio signature of a distant behind-the-limb CME on 2017 September 6

    Melnik, V., Rucker, H., Brazhenko, A., Panchenko, M., Konovalenko, A., Frantsuzenko, A., Dorovskyy, V., & Shevchuk, M. (2020). Radio signature of a distant behind-the-limb CME on 2017 September 6. Astrophysical Journal, 905, 10. https://doi.org/10.3847/1538-4357/abbfb3

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  • Publications
    The Chinese Mars ROVER fluxgate magnetometers

    Du, A., Zhang, Y., Li, H., Qiao, D., Yi, Z., Zhang, T., Meng, L., Ge, Y., Luo, H., Zhao, L., Sun, S., Ou, J., Li, Z., Feng, X., & Dai, J. (2020). The Chinese Mars ROVER fluxgate magnetometers. Space Science Reviews, 216, 135. https://doi.org/10.1007/s11214-020-00766-8

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    • RIS
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  • Publications
    Atmospheric nitrogen when life evolved on Earth

    Gebauer, S., Grenfell, J., Lammer, H., Vera, J., Sproß, L., Airapetian, V., Sinnhuber, M., & Rauer, H. (2020). Atmospheric nitrogen when life evolved on Earth. Astrobiology, 20, 1413-1426. https://doi.org/10.1089/ast.2019.2212

    • DOI
    • RIS
    • ENW
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  • Publications
    Extended view on the dust shells around two carbon stars

    Mecina, M., Aringer, B., Nowotny, W., Groenewegen, M., Kerschbaum, F., Brunner, M., & Gail, H. (2020). Extended view on the dust shells around two carbon stars. Astronomy and Astrophysics, 644, A66. https://doi.org/10.1051/0004-6361/202039178

    • DOI
    • RIS
    • ENW
    • BIB
  • Publications
    Olbertian partition function in scalar field theory

    Treumann, R., & Baumjohann, W. (2020). Olbertian partition function in scalar field theory. Frontiers in Physics, 8, 610625. https://doi.org/10.3389/fphy.2020.610625

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