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Demir, O. , Johnson, J. T. , Jezek, K. C. , Andrews, M. J. , Ayotte, K. , Spreen, G. , Hendricks, S. ORCID: https://orcid.org/0000-0002-1412-3146, Kaleschke, L. ORCID: https://orcid.org/0000-0001-7086-3299, Oggier, M. , Granskog, M. A. , Fong, A. , Hoppmann, M. , Matero, I. ORCID: https://orcid.org/0000-0002-2333-9010 and Scholz, D. (2021)
Measurements of 540-1740 MHz Brightness Temperatures of Sea Ice During the Winter of the MOSAiC Campaign ,
IEEE Transactions on Geoscience and Remote Sensing, pp. 1-11 .
doi:10.1109/TGRS.2021.3105360 , hdl:10013/epic.04d5c5ba-5aa5-42b4-bd9e-c2008d7b1d15

Article
Koo, Y. , Lei, R. , Cheng, Y. , Cheng, B. , Xie, H. , Hoppmann, M. ORCID: https://orcid.org/0000-0003-1294-9531, Kurtz, N. T. , Ackley, S. F. and Mestas-Nuñez, A. M. (2021)
Estimation of thermodynamic and dynamic contributions to sea ice growth in the Central Arctic using ICESat-2 and MOSAiC SIMBA buoy data ,
Remote Sensing of Environment, 267 , p. 112730 .
doi:10.1016/j.rse.2021.112730 , hdl:10013/epic.d29b41f5-bfd1-4271-8984-f1560e6d23bc
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Article
Campbell, K. , Matero, I. , Bellas, C. , Turpin-Jelfs, T. , Anhaus, P. ORCID: https://orcid.org/0000-0002-0671-8545, Graeve, M. ORCID: https://orcid.org/0000-0002-2294-1915, Fripiat, F. , Tranter, M. , Landy, J. C. , Sanchez-Baracaldo, P. , Leu, E. , Katlein, C. ORCID: https://orcid.org/0000-0003-2422-0414, Mundy, C. J. , Rysgaard, S. , Tedesco, L. , Haas, C. ORCID: https://orcid.org/0000-0002-7674-3500 and Nicolaus, M. ORCID: https://orcid.org/0000-0003-0903-1746 (2021)
Monitoring a changing Arctic: Recent advancements in the study of sea ice microbial communities ,
Ambio, 51 (2), pp. 318-332 .
doi:10.1007/s13280-021-01658-z , hdl:10013/epic.86d0de4e-91fc-4337-8e52-181c0edda371
[thumbnail of Campbell_etal_2021_Monitoring_changing_Arctic_recent_advancements_study_sea_ice_microbial_communities.pdf]
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Article
Cheng, B. , Vihma, T. , Palo, T. , Nicolaus, M. ORCID: https://orcid.org/0000-0003-0903-1746, Gerland, S. , Rontu, L. , Haapala, J. and Perovich, D. K. (2021)
Observation and modelling of snow and sea ice mass balance and its sensitivity to atmospheric forcing during spring and summer 2007 in the Central Arctic ,
Advances in Polar Science, 32 (4), pp. 312-326 .
doi:10.13679/j.advps.2021.0047 , hdl:10013/epic.bf27eaa6-56a4-465a-9b21-ba4f978b7f73
[thumbnail of A211202000001.pdf]
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Article
Johnson, J. T. , Jezek, K. C. , Macelloni, G. , Brogioni, M. , Tsang, L. , Dinnat, E. P. , Walker, J. P. , Ye, N. , Misra, S. , Piepmeier, J. R. , Bindlish, R. , LeVine, D. M. , O'Neill, P. E. , Kaleschke, L. ORCID: https://orcid.org/0000-0001-7086-3299, Andrews, M. J. , Yardim, C. , Aksoy, M. , Durand, M. , Chen, C. C. , Demir, O. , Bringer, A. , Miller, J. Z. , Brown, S. T. , Kwok, R. , Lee, T. , Kerr, Y. , Entekhabi, D. , Peng, J. , Colliander, A. , Chan, S. , MacGregor, J. A. , Medley, B. , DeRoo, R. and Drinkwater, M. (2021)
Microwave Radiometry at Frequencies From 500 to 1400 MHz: An Emerging Technology for Earth Observations ,
IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 14 , pp. 4894-4914 .
doi:10.1109/jstars.2021.3073286 , hdl:10013/epic.1bbdcec7-9532-4f5b-814c-4812322f5400
[thumbnail of Microwave Radiometry at Frequencies From 500 to 1400 MHz An Emerging Technology for Earth Observations.pdf]
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Article
Druckenmiller, M. L. , Moon, T. A. , Thoman, R. L. , Ballinger, T. J. , Berner, L. T. , Bernhard, G. H. , Bhatt, U. S. , Bjerke, J. W. , Box, J. E. , Brown, R. , Cappelen, J. , Christiansen, H. H. , Decharme, B. , Derksen, C. , Divine, D. , Drozdov, D. , Elias Chereque, A. , Epstein, H. E. , Farquharson, L. , Farrell, S. L. , Fausto, R. S. , Fettweis, X. , Fioletov, V. E. , Forbes, B. C. , Frost, G. V. , Gargulinski, E. , Gerland, S. , Goetz, S. J. , Grabinski, Z. , Grooß, J. U. , Haas, C. , Hanna, E. , Hanssen-Bauer, I. , Hendricks, S. , Holmes, R. M. , Ialongo, I. , Isaksen, K. , Jain, P. , Johnsen, B. , Kaleschke, L. ORCID: https://orcid.org/0000-0001-7086-3299, Kholodov, A. , Kim, S. J. , Korsgaard, N. J. , Labe, Z. , Lakkala, K. , Lara, M. J. , Loomis, B. , Luojus, K. , Macander, M. J. , Malkova, G. , Mankoff, K. D. , Manney, G. L. , McClelland, J. W. , Meier, W. N. , Mote, T. , Mudryk, L. , Müller, R. , Nyland, K. , Overland, J. E. , Park, T. , Pavlova, O. , Perovich, D. , Petty, A. , Phoenix, G. K. , Raynolds, M. K. , Reijmer, C. , Richter-Menge, J. , Ricker, R. , Romanovsky, V. E. , Scott, L. , Shapiro, H. , Shiklomanov, A. I. , Shiklomanov, N. I. , Smeets, C. , Smith, S. L. , Soja, A. , Spencer, R. G. , Starkweather, S. , Streletskiy, D. A. , Suslova, A. , Svendby, T. , Tank, S. E. , Tedesco, M. , Tian-Kunze, X. , Timmermans, M. L. , Tømmervik, H. , Tretiakov, M. , Tschudi, M. , Vakhutinsky, S. , van As, D. , van de Wal, R. , Veraverbeke, S. , Walker, D. A. , Walsh, J. E. , Wang, M. , Webster, M. , Winton, Ø. , Wood, K. , York, A. and Ziel, R. (2021)
The Arctic ,
Bulletin of the American Meteorological Society, 102 (8), s263-s316 .
doi:10.1175/bams-d-21-0086.1 , hdl:10013/epic.077e8c33-cb41-4645-b1ab-d6efdb869e51
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Article
Blunden, J. and Boyer, T. (2021)
State of the Climate in 2020 ,
Bulletin of the American Meteorological Society, 102 (8), s1-s475 .
doi:10.1175/2021bamsstateoftheclimate.1 , hdl:10013/epic.f48de1eb-decb-4cfb-9ba5-2e7a1233bf0c
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