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Jensen, T. C., Zawiska, I., Oksman, M., Słowiński, M., Woszczyk, M., Luoto, T. P., Tylmann, W., Nevalainen, L., Obremska, M., Schartau, A. K. & Walseng, B. (2020). Historical human impact on productivity and biodiversity in a subalpine oligotrophic lake in Scandinavia. Journal of Paleolimnology, 63(1), 1-20. https://doi.org/10.1007/s10933-019-00100-5
Søndergaard, A. S. (2020). Holocene Glacial History of Northwest and North Greenland. [Ph.d.-afhandling, Aarhus Universitet]. Aarhus Universitet.
Ni, S., Quintana Krupinski, N. B., Groeneveld, J., Fanget, A. S., Böttcher, M. E., Liu, B., Lipka, M., Knudsen, K. L., Naeraa, T., Seidenkrantz, M. S. & Filipsson, H. L. (2020). Holocene Hydrographic Variations From the Baltic-North Sea Transitional Area (IODP Site M0059). Paleoceanography and Paleoclimatology, 35(2), Artikel e2019PA003722. https://doi.org/10.1029/2019PA003722
Lesher, C., Dannberg, J., Barfod, G. H., R. Bennett, N., Glessner, J., Lacks, D. J. & M. Brenan, J. (2020). Iron isotope fractionation at the core–mantle boundary by thermodiffusion. Nature Geoscience, 13(5), 382-386. https://doi.org/10.1038/s41561-020-0560-y
Pedersen, V. K. (2020). Kampen om fjeldet. Weekendavisen, (Sektion 4 (Ideer)), 10.
Abu-Jaber, N., Al Khasawneh, S., Alqudah, M., Hamarneh, C., Al-Rawabdeh, A. & Murray, A. (2020). Lake Elji and a geological perspective on the evolution of Petra, Jordan. Palaeogeography, Palaeoclimatology, Palaeoecology, 557, Artikel 109904. https://doi.org/10.1016/j.palaeo.2020.109904
Pérez, L. F., Jakobsson, M., Funck, T., Andresen, K. J., Nielsen, T., O'Regan, M. & Mørk, F. (2020). Late Quaternary sedimentary processes in the central Arctic Ocean inferred from geophysical mapping. Geomorphology, 369, Artikel 107309. https://doi.org/10.1016/j.geomorph.2020.107309
Limoges, A., Weckström, K., Ribeiro, S., Georgiadis, E., Hansen, K. E., Martinez, P., Seidenkrantz, M.-S., Giraudeau, J., Crosta, X. & Massé, G. (2020). Learning from the past: Impact of the Arctic Oscillation on sea ice and marine productivity off northwest Greenland over the last 9000 years. Global Change Biology, 26(12), 6767–6786. https://doi.org/10.1111/gcb.15334
Deng, L., Bölsterli, D., Kristensen, E., Meile, C., Su, C.-C., Bernasconi, S. M., Seidenkrantz, M.-S., Glombitza, C., Lagostina, L., Han, X., Jørgensen, B. B., Røy, H. & Lever, M. A. (2020). Macrofaunal control of microbial community structure in continental margin sediments. Proceedings of the National Academy of Sciences (PNAS), 117(27), 15911-15922. https://doi.org/10.1073/pnas.1917494117
Kristiansen, S. M. & Stott, D. (2020). Mapping Jerash by remote sensing. I A. Lichtenberger & R. Raja (red.), Environmental Studies, Remote Sensing, and Modelling: Final Publications from the Danish-German Jerash Northwest Quarter Project I (s. 157-172). Brepols Publishers. https://doi.org/10.1484/M.JP-EB.5.120490
Lewis, J. P., Ryves, D. B., Rasmussen, P., Olsen, J., van der Sluis, L. G., Reimer, P. J., Knudsen, K. L., McGowan, S., Anderson, N. J. & Juggins, S. (2020). Marine resource abundance drove pre-agricultural population increase in Stone Age Scandinavia. Nature Communications, 11, Artikel 2006. https://doi.org/10.1038/s41467-020-15621-1
Weckwerth, P., Piotrowski, J. A., Wysota, W., Krawiec, A., Adamczyk, A., Kalinska, E. & Chabowski, M. (2020). Mature and immature megadunes: insights from morphology and sedimentary successions of mega-scale bedforms south of Wigry Lake (NW Poland). I P. Weckwerth, E. Kalinska & W. Wysota (red.), Glacial Megaflood Landforms and Sediments in North-Eastern Poland (s. 99-107). Wydawnictwo Naukowe Uniwersytetu Mikołaja Kopernika. https://wydawnictwo.umk.pl/pl/products/5273/glacial-megaflood-landforms-and-sediments-in-north-eastern-poland
Weckwerth, P., Wysota, W., Krawiec, A., Piotrowski, J. A., Adamczyk, A. & Chabowski, M. (2020). Megaflood track morphology and sediments: a case study from the proximal part of the Eastern Spillway, north of Suwałki (NE Poland). I P. Weckwerth, E. Kalinska & W. Wysota (red.), Glacial Megaflood Landforms and Sediments in North-Eastern Poland (s. 81-88). Wydawnictwo Naukowe Uniwersytetu Mikołaja Kopernika. https://wydawnictwo.umk.pl/pl/products/5273/glacial-megaflood-landforms-and-sediments-in-north-eastern-poland
Ardakani, O. H., Hlohowskyj, S. R., Chappaz, A., Sanei, H., Liseroudi, M. H. & Wood, J. M. (2020). Molybdenum speciation tracking hydrocarbon migration in fine-grained sedimentary rocks. Geochimica et Cosmochimica Acta, 283, 136-148. https://doi.org/10.1016/j.gca.2020.06.006
Wysota, W., Weckwerth, P., Adamczyk, A., Piotrowski, J. A. & Sokolska, A. (2020). Morphology and origin of glacial curvilineations (GCLs) east of Hańcza Lake, Suwałki Lake-land. I P. Weckwerth, E. Kalinska & W. Wysota (red.), Glacial Megaflood Landforms and Sediments in North-Eastern Poland (s. 61-69). Wydawnictwo Naukowe Uniwersytetu Mikołaja Kopernika. https://wydawnictwo.umk.pl/pl/products/5273/glacial-megaflood-landforms-and-sediments-in-north-eastern-poland
Levy, L. B., Larsen, N. K., Knudsen, M. F., Egholm, D. L., Bjørk, A. A., Kjeldsen, K. K., Kelly, M. A., Howley, J. A., Olsen, J., Tikhomirov, D., Zimmerman, S. R. H. & Kjær, K. H. (2020). Multi-phased deglaciation of south and southeast Greenland controlled by climate and topographic setting. Quaternary Science Reviews, 242, Artikel 106454. https://doi.org/10.1016/j.quascirev.2020.106454
Kurbanov, R. N., Semikolennykh, D. V., Yanina, T. A., Tyunin, N. A. & Murray, A. S. (2020). New data on the age of the Karangatian transgression of the black sea. Vestnik Moskovskogo Universiteta, Seriya 5: Geografiya, 2020(6), 139-145.