Works about ARCTIC climate
Results: 970
LONG-TERM EFFECT OF WARMING-INDUCED PERMAFROST THAWING ON TUNDRA VEGETATION--THE EVIDENCE FROM THE CHUKCHI PENINSULA (RUSSIAN NORTHEAST).
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- Journal of the Geographical Institute 'Jovan Cvijić' SASA, 2024, v. 74, n. 3, p. 291, doi. 10.2298/IJGI2403291M
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The use of multiple evidence base methods to enrich climate change research and knowledge in the Arctic.
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- AMBIO - A Journal of the Human Environment, 2025, v. 54, n. 4, p. 603, doi. 10.1007/s13280-024-02093-6
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Dissipation Scaling with a Variable C ϵ Coefficient in the Stable Atmospheric Boundary Layer.
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- Atmosphere, 2025, v. 16, n. 2, p. 188, doi. 10.3390/atmos16020188
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Drivers of spatio-temporal variations in summer surface water temperatures of Arctic Fennoscandian lakes (2000-21).
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- Polar Research, 2024, v. 43, p. 1, doi. 10.33265/polar.v43.9580
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Widespread exposure to Francisella tularensis in Rangifer tarandus in Canada and Alaska.
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- Polar Research, 2024, v. 43, p. 1, doi. 10.33265/polar.v43.9288
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An agenda for the future of Arctic snow research: the view from Svalbard.
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- Polar Research, 2023, v. 42, p. 1, doi. 10.33265/polar.v42.8827
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Multidisciplinary perspectives on living marine resources in the Arctic.
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- Polar Research, 2022, v. 41, p. 1, doi. 10.33265/polar.v41.7766
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Revisiting the extended Svalbard Airport monthly temperature series, and the compiled corresponding daily series 1898–2018.
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- Polar Research, 2020, v. 39, p. 1, doi. 10.33265/polar.v39.3614
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The marine sedimentary environments of Kongsfjorden, Svalbard: an archive of polar environmental change.
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- Polar Research, 2019, v. 38, p. 1, doi. 10.33265/polar.v38.3380
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Elevation-based upscaling of organic carbon stocks in High-Arctic permafrost terrain: a storage and distribution assessment for Spitsbergen, Svalbard.
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- Polar Research, 2017, v. 36, n. 1, p. N.PAG, doi. 10.1080/17518369.2017.1400363
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In memory of Torgny Vinje—a genuine polar scientist.
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- Polar Research, 2016, v. 35, n. 1, p. 1, doi. 10.3402/polar.v35.32211
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Arctic climate change in an ensemble of regional CORDEX simulations.
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- Polar Research, 2015, v. 34, n. 1, p. 1, doi. 10.3402/polar.v34.24603
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Arctic climate feedback response to local sea-ice concentration and remote sea surface temperature changes in PAMIP simulations.
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- Climate Dynamics, 2024, v. 62, n. 12, p. 10599, doi. 10.1007/s00382-024-07465-y
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Ocean response to a century of observation-based freshwater forcing around Greenland in EC-Earth3.
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- Climate Dynamics, 2024, v. 62, n. 6, p. 4905, doi. 10.1007/s00382-024-07142-0
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Dominant role of early winter Barents–Kara sea ice extent anomalies in subsequent atmospheric circulation changes in CMIP6 models.
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- Climate Dynamics, 2024, v. 62, n. 4, p. 2755, doi. 10.1007/s00382-023-06904-6
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Relationships among Arctic warming, sea-ice loss, stability, lapse rate feedback, and Arctic amplification.
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- Climate Dynamics, 2023, v. 61, n. 11/12, p. 5217, doi. 10.1007/s00382-023-06848-x
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Seasonal and regional contrasts of future trends in interannual arctic climate variability.
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- Climate Dynamics, 2023, v. 61, n. 7/8, p. 3673, doi. 10.1007/s00382-023-06766-y
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High-resolution modelling of climatic hazards relevant for Canada's northern transportation sector.
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- Climate Dynamics, 2022, v. 59, n. 9/10, p. 3135, doi. 10.1007/s00382-022-06265-6
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Future trends of arctic surface wind speeds and their relationship with sea ice in CMIP5 climate model simulations.
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- Climate Dynamics, 2022, v. 59, n. 5/6, p. 1833, doi. 10.1007/s00382-021-06071-6
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The role of an interactive Greenland ice sheet in the coupled climate-ice sheet model EC-Earth-PISM.
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- Climate Dynamics, 2022, v. 59, n. 3/4, p. 1189, doi. 10.1007/s00382-022-06184-6
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Pacific circulation response to eastern Arctic sea ice reduction in seasonal forecast simulations.
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- Climate Dynamics, 2021, v. 57, n. 9/10, p. 2687, doi. 10.1007/s00382-021-05830-9
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The climate response to increased cloud liquid water over the Arctic in CESM1: a sensitivity study of Wegener–Bergeron–Findeisen process.
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- Climate Dynamics, 2021, v. 56, n. 9/10, p. 3373, doi. 10.1007/s00382-021-05648-5
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Long-term trends in Arctic surface temperature and potential causality over the last 100 years.
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- Climate Dynamics, 2020, v. 55, n. 5/6, p. 1443, doi. 10.1007/s00382-020-05330-2
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Changes in Arctic moisture transport over the North Pacific associated with sea ice loss.
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- Climate Dynamics, 2020, v. 54, n. 1/2, p. 491, doi. 10.1007/s00382-019-05011-9
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Oceanic heat transport into the Arctic under high and low CO2 forcing.
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- Climate Dynamics, 2019, v. 53, n. 7/8, p. 4763, doi. 10.1007/s00382-019-04824-y
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How well do current climate models simulate the linkage between Arctic warming and extratropical cold winters?
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- Climate Dynamics, 2019, v. 53, n. 7/8, p. 4005, doi. 10.1007/s00382-019-04765-6
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Biogeophysical feedback of phytoplankton on Arctic climate. Part II: Arctic warming amplified by interactive chlorophyll under greenhouse warming.
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- Climate Dynamics, 2019, v. 53, n. 5/6, p. 3167, doi. 10.1007/s00382-019-04693-5
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Biogeophysical feedback of phytoplankton on the Arctic climate. Part I: Impact of nonlinear rectification of interactive chlorophyll variability in the present-day climate.
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- Climate Dynamics, 2019, v. 52, n. 9/10, p. 5383, doi. 10.1007/s00382-018-4450-6
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Seasonal and latitudinal variations of surface fluxes at two Arctic terrestrial sites.
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- Climate Dynamics, 2018, v. 51, n. 5/6, p. 1793, doi. 10.1007/s00382-017-3983-4
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Dependence of Arctic climate on the latitudinal position of stationary waves and to high-latitudes surface warming.
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- Climate Dynamics, 2017, v. 49, n. 11/12, p. 3753, doi. 10.1007/s00382-017-3543-y
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Arctic climate and its interaction with lower latitudes under different levels of anthropogenic warming in a global coupled climate model.
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- Climate Dynamics, 2017, v. 49, n. 1/2, p. 471, doi. 10.1007/s00382-016-3354-6
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Tropospheric circulation during the early twentieth century Arctic warming.
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- Climate Dynamics, 2017, v. 48, n. 7/8, p. 2405, doi. 10.1007/s00382-016-3212-6
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Boreal winter Arctic Oscillation as an indicator of summer SST anomalies over the western tropical Indian Ocean.
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- Climate Dynamics, 2017, v. 48, n. 7/8, p. 2471, doi. 10.1007/s00382-016-3216-2
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Atmospheric winter response to a projected future Antarctic sea-ice reduction: a dynamical analysis.
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- Climate Dynamics, 2013, v. 40, n. 11/12, p. 2707, doi. 10.1007/s00382-012-1507-9
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Arctic communities perceive climate impacts on access as a critical challenge to availability of subsistence resources.
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- Climatic Change, 2016, v. 139, n. 3/4, p. 413, doi. 10.1007/s10584-016-1819-6
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The transformation of Arctic clouds with warming.
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- Climatic Change, 2016, v. 139, n. 2, p. 325, doi. 10.1007/s10584-016-1772-4
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Macrophyte performance in a low arctic lake: effects of temperature, light and nutrients on growth and depth distribution.
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- Aquatic Sciences, 2020, v. 82, n. 1, p. 1, doi. 10.1007/s00027-019-0692-6
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Contrasting molecular diversity and demography patterns in two intertidal amphipod crustaceans reflect Atlantification of High Arctic.
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- Marine Biology, 2019, v. 166, n. 12, p. 1, doi. 10.1007/s00227-019-3603-4
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Assessment of periglacial response to increased runoff: An Arctic hydrosystem bears witness.
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- Land Degradation & Development, 2018, v. 29, n. 10, p. 3709, doi. 10.1002/ldr.3099
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Origins and diversity of the Bering Sea Island fauna: shifting linkages across the northern continents.
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- Biodiversity & Conservation, 2021, v. 30, n. 5, p. 1205, doi. 10.1007/s10531-021-02153-3
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Spring haul-out behavior of seals in the Bering and Chukchi Seas: implications for abundance estimation.
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- PeerJ, 2024, p. 1, doi. 10.7717/peerj.18160
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Microbial metagenome-assembled genomes of the Fram Strait from short and long read sequencing platforms.
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- PeerJ, 2021, p. 1, doi. 10.7717/peerj.11721
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Considering ecological security from the perspective of Arctic ecosystemic politics.
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- New Perspectives: Interdisciplinary Journal of Central & East European Politics & International Relations, 2023, v. 31, n. 1, p. 18, doi. 10.1177/2336825X221143621
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Metagenome-assembled-genomes recovered from the Arctic drift expedition MOSAiC.
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- Scientific Data, 2025, v. 12, n. 1, p. 1, doi. 10.1038/s41597-025-04525-8
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In-ice light measurements during the MOSAiC expedition.
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- Scientific Data, 2024, v. 11, n. 1, p. 1, doi. 10.1038/s41597-024-03472-0
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Cloud micro- and macrophysical properties from ground-based remote sensing during the MOSAiC drift experiment.
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- Scientific Data, 2024, v. 11, n. 1, p. 1, doi. 10.1038/s41597-024-03325-w
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Sea water temperature and light intensity at high-Arctic subtidal shallows – 16 years perspective.
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- Scientific Data, 2024, v. 11, n. 1, p. 1, doi. 10.1038/s41597-024-03054-0
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Mechanistic movement models identify continuously updated autumn migration cues in Arctic caribou.
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- Movement Ecology, 2021, v. 9, n. 1, p. 1, doi. 10.1186/s40462-021-00288-0
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Chromosomal-level reference genome assembly of muskox (Ovibos moschatus) from Banks Island in the Canadian Arctic, a resource for conservation genomics.
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- Scientific Reports, 2024, v. 14, n. 1, p. 1, doi. 10.1038/s41598-024-67270-9
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RATIONALE FOR SELECTION OF AN OIL FIELD OPTIMAL DEVELOPMENT SYSTEM IN THE EASTERN PART OF THE PECHORA SEA AND ITS CALCULATION.
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- Periódico Tchê Química, 2020, v. 17, n. 34, p. 634, doi. 10.52571/ptq.v17.n34.2020.658_p34_pgs_634_655.pdf
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