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1by Maclennan, Michelle L., Lenaerts, Jan T. M., Shields, Christine A., Hoffman, Andrew O., Wever, Nander, Thompson-Munson, Megan, Winters, Andrew C., Pettit, Erin C., Scambos, Theodore A., Wille, Jonathan D.“.... In this study, we characterize the climatology and surface impacts of ARs on West Antarctica, focusing...”
Published in The Cryosphere (2023)
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2by Maclennan, Michelle L., Lenaerts, Jan T. M., Shields, Christine A., Hoffman, Andrew O., Wever, Nander, Thompson-Munson, Megan, Winters, Andrew C., Pettit, Erin C., Scambos, Theodore A., Wille, Jonathan D.“... characterize the climatology and surface impacts of ARs on West Antarctica, focusing on the Amundsen Sea...”
Published 2022
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3by Minganti, Daniele, Chabrillat, Simon, Christophe, Yves, Errera, Quentin, Abalos, Marta, Prignon, Maxime, Kinnison, Douglas E., Mahieu, Emmanuel“..., the climatological impact of the stratospheric BDC on the long-lived tracer N 2 O is evaluated through a comparison...”
Published in Atmospheric Chemistry and Physics (2020)
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4by Minganti, Daniele, Chabrillat, Simon, Christophe, Yves, Errera, Quentin, Abalos, Marta, Prignon, Maxime, Kinnison, Douglas E., Mahieu, Emmanuel“... the climatological impact of the stratospheric BDC on the long-lived tracer N 2 O is evaluated through a comparison...”
Published 2020
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5“... and water vapor and compile climatologies of both trace gases describing the annual variation of ozone...”
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6by Shi, Guochun, Krochin, Witali, Sauvageat, Eric, Stober, Gunter“... and water vapor and compile climatologies of both trace gases describing the annual variation of ozone...”
Published in Atmospheric Chemistry and Physics (2023)
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7“... and long-lasting increase, which only gradually decays to climatology before the final warming. In contrast...”
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8“... increase of up to ∼ 50 DU, which only gradually decays to climatology before the final warming. In contrast...”
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9by Tao, Jing, Koster, Randal D., Reichle, Rolf H., Forman, Barton A., Xue, Yuan, Chen, Richard H., Moghaddam, Mahta“... except in Mongolia. The RMSE (bias) of climatological ALT is 1.22 m ( −0.48 m) across all sites and 0.33...”
Published in The Cryosphere (2019)
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10“... structure of polar ozone anomalies relative to the climatologies derived from GROMOS-C, MERRA-2, and MLS...”
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