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  1. 15 mai 2018 · Precisely quantifying polar feedbacks is required for a process-oriented evaluation of climate models, a clear understanding of the processes responsible for polar climate changes, and a...

    • Hugues Goosse, Jennifer E. Kay, Kyle C. Armour, Alejandro Bodas-Salcedo, Helene Chepfer, David Docqu...
    • 2018
  2. Climate change feedbacks are natural processes which impact how much global temperatures will increase for a given amount of greenhouse gas emissions. Positive feedbacks amplify global warming while negative feedbacks diminish it.

  3. 19 nov. 2018 · The degree of polar amplification depends strongly on the location of CO 2 forcing. In particular, polar amplification is found to be dominated by forcing in the polar regions, specifically...

    • Malte F. Stuecker, Cecilia M. Bitz, Kyle C. Armour, Cristian Proistosescu, Sarah M. Kang, Shang Ping...
    • 2018
  4. Il y a 13 heures · C’est ce premier tome de leurs enquêtes écrites par Stieg Larsson, Millenium 1 - Les Hommes qui n’aimaient pas les femmes, qui remporte la palme du meilleur polar paru depuis 2005 selon les lecteurs de Babelio, devant La Vérité sur l’affaire Harry Québert de Joël Dicker, 1991 de Franck Thilliez ou encore Nymphéas noirs de Michel Bussi.

  5. 12 mai 2021 · Here we demonstrate that the climate response to sea-ice loss can vary widely depending on the pattern of sea-ice change, and show that this is due to the presence of an atmospheric feedback...

  6. 13 mai 2024 · The uncertainty in Arctic climate projections is greater than that of any other region on Earth (D. M. Smith et al., 2019) and is largely due to difficulties in quantifying the cloud response to surface temperature warming, known as the cloud feedback (Hahn et al., 2021; Previdi et al., 2021 ).

  7. Il y a 2 jours · There are a number of feedback processes important to Earth’s climate system and, in particular, its response to external radiative forcing. The most fundamental of these feedback mechanisms involves the loss of longwave radiation to space from the surface.