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State of the climate 2018 - Chapter 6 Antarctic - 2018 Antarctic Ozone Hole
N. Kramarova, P. A. Newman,E. R. Nash, S. E. Strahan, C. S. Long, B. Johnson, M. Pitt...
ATJ de Laat | Status: published | Journal: BAMS | Volume: 9 | Year: 2019 | First page: S185 | Last page: S187 | doi: 10.1175/2019BAMSStateoftheClimate.1.
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Oceanic heat transport into the Arctic under high and low CO2 forcing
Enhanced ocean heat transport into the Arctic is linked to stronger future Arctic warming and pol...
Eveline C van der Linden, Dewi Le Bars, Richard Bintanja, Wilco Hazeleger | Journal: Climate Dynamics | Volume: 53 | Year: 2019 | First page: 4763 | Last page: 4780 | doi: 10.1007/s00382-019-04824-y
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THESEO-Euro, Solve, Final Report, Improved understanding of stratospheric ozone loss by measurements and modelling
GO Braathen, F Goutail, H Flentje, F Stroh, M Chipperfield, P von der Gathen, G Vaughan, K Kuenzi, E Kyroe, B Knudsen, C Brogniez, KH Fricke, G Hochschild, A Goede, K Pfeilsticker | Year: 2006
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The effect of increased freshwater from Antarctic ice shelves on future trends in Antarctic sea ice
Observations show that, in contrast to the Arctic, the area of Antarctic sea ice has increased si...
R Bintanja, GJ van Oldenborgh, CA Katsman | Status: published | Journal: Annals of Glaciology | Volume: 56 | Year: 2015 | First page: 120 | Last page: 126 | doi: 10.3189/2015AoG69A001
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Determining weather radar antenna pointing using signals detected from the sun at low antenna elevations
A method to determine the elevation and azimuth biases of the radar antenna using solar signals ...
A Huuskonen, I Holleman | Status: published | Journal: J. Atm. Oceanic Technol. | Volume: 24 | Year: 2007 | First page: 476 | Last page: 483
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