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As climate changes, how do Earth's frozen areas affect our planet and impact society?
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2023
Druckenmiller M; Thoman R; Moon T (2023) The 2022 Arctic Report Card January
Long DG; Brodzik MJ; Hardman M (2023) Evaluating the effective resolution of enhanced resolution SMAP brightness temperature image products 4 doi: 10.3389/frsen.2023.1073765
Jozef GC; Cassano JJ; Dahlke S; Dice M; Cox CJ; de Boer G (2023) Supplementary material to "Thermodynamic and Kinematic Drivers of Atmospheric Boundary Layer Stability in the Central Arctic during MOSAiC" doi: 10.5194/egusphere-2023-824-supplement
Nandan V; Willatt R; Mallett R; Stroeve J; Geldsetzer T; Scharien R; Tonboe R; Yackel J; Landy J; Clemens-Sewall D (2023) Wind redistribution of snow impacts the Ka-and Ku-band radar signatures of Arctic sea ice The Cryosphere 17 2211-2229, doi: 10.5194/tc-17-2211-2023
Valkonen E; Cassano J; Cassano E; Seefeldt M (2023) Declining Sea Ice and Its Relationship with Arctic Cyclones in Current and Future Climate Part I: Current Climatology in CMIP6 Models doi: 10.5194/wcd-2023-2
Moon TA; Thoman R; Druckenmiller ML (2023) THE ARCTIC Bulletin of the American Meteorological Society 104 (9) S271-S321, doi: 10.1175/10.1175/BAMS-D-23-0079.1
Jozef GC; Cassano JJ; Dahlke S; Dice M; Cox CJ; de Boer G (2023) An Overview of the Vertical Structure of the Atmospheric Boundary Layer in the Central Arctic during MOSAiC doi: 10.5194/egusphere-2023-780
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