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Работы, на которые ссылается эта работа

Работ: 298

Работа: Venusian Habitable Climate Scenarios: Modeling Venus Through Time and Applications to Slowly Rotating Venus‐Like Exoplanets

  1. Nitrogen-enhanced greenhouse warming on early Earth

    Colin Goldblatt, Mark W. Claire, Timothy M. Lenton +3

    Статья2009Цитирований: 2
    ABI
  2. Coupling the atmosphere with interior dynamics: Implications for the resurfacing of Venus

    Lena Noack, D. Breuer, Tilman Spohn

    Статья2011Цитирований: 2
    ABI
  3. Climate and atmospheric history of the past 420,000 years from the Vostok ice core, Antarctica

    Jean‐Robert Petit, J. Jouzel, Dominique Raynaud +16

    Статья1999Цитирований: 2
    ABI
  4. Nitrogen Isotopic Composition and Density of the Archean Atmosphere

    Bernard Marty, Laurent Zimmermann, Magali Pujol +2

    Статья2013Цитирований: 2
    ABI
  5. Effect of a single large impact on the coupled atmosphere-interior evolution of Venus

    Cédric Gillmann, Gregor Golabek, Paul Tackley

    Статья2015Цитирований: 2
    ABI
  6. How Hospitable Are Space Weather Affected Habitable Zones? The Role of Ion Escape

    Vladimir Airapetian, A. Glocer, G. V. Khazanov +5

    Статья2017Цитирований: 2
    ABI
  7. The habitability of a stagnant-lid Earth

    Nicola Tosi, M. Godolt, B. Stracke +7

    Статья2017Цитирований: 2
    ABI
  8. Experimental and observational evidence for plume-induced subduction on Venus

    Anne Davaille, S. E. Smrekar, S. M. Tomlinson

    Статья2017Цитирований: 2
    ABI
  9. Atmospheric Evolution on Inhabited and Lifeless Worlds

    David C. Catling, James F. Kasting

    Книга2017Цитирований: 2
    ABI
  10. Venus Surface Composition Constrained by Observation and Experiment

    M. S. Gilmore, A. H. Treiman, J. Helbert +1

    Статья2017Цитирований: 2
    ABI
  11. Venus' Spectral Signatures and the Potential for Life in the Clouds

    S. S. Limaye, Rakesh Mogul, David J. Smith +3

    Статья2018Цитирований: 2
    ABI
  12. Water Partitioning in Planetary Embryos and Protoplanets with Magma Oceans

    Masahiro Ikoma, L. T. Elkins‐Tanton, Keiko Hamano +1

    Статья2018Цитирований: 2
    ABI
  13. Inferences on the mantle viscosity structure and the post-overturn evolutionary state of Venus

    Tobias Rolf, Bernhard Steinberger, U. Sruthi +1

    Статья2018Цитирований: 2
    ABI
  14. Venus Interior Structure and Dynamics

    S. E. Smrekar, Anne Davaille, C. Sotin

    Статья2018Цитирований: 2
    ABI
  15. Effects of the solar wind and the solar EUV flux on O+ escape rates from Venus

    Kei Masunaga, Yoshifumi Futaana, Moa Persson +4

    Статья2018Цитирований: 2
    ABI
  16. The eruptive tempo of Deccan volcanism in relation to the Cretaceous-Paleogene boundary

    Courtney J. Sprain, Paul R. Renne, L. Vanderkluysen +3

    Статья2019Цитирований: 2
    ABI
  17. What Factors Affect the Duration and Outgassing of the Terrestrial Magma Ocean?

    Athanasia Nikolaou, Nisha Katyal, Nicola Tosi +3

    Статья2019Цитирований: 2
    ABI
  18. Carbon cycling and interior evolution of water-covered plate tectonics and stagnant-lid planets

    Dennis Höning, Nicola Tosi, Tilman Spohn

    Статья2019Цитирований: 2
    ABI
  19. Impact Degassing of H<sub>2</sub> on Early Mars and its Effect on the Climate System

    R. M. Haberle, Kevin Zahnle, N. G. Barlow +1

    Статья2019Цитирований: 2
    ABI
  20. On Asteroid Impacts, Crater Scaling Laws, and a Proposed Younger Surface Age for Venus

    W. F. Bottke, David Vokrouhlický, B. Ghent +3

    Статья2016Цитирований: 2
    ABI
  21. Без названия

    ДругоеЦитирований: 1
    ABI