Bibliography
Found 232 results
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“Burning trees in frozen soil: Simulating fire, vegetation, soil, and hydrology in the boreal forests of Alaska”, Ecological Modelling, vol. 481, p. 110367, 2023.
, “Highly restricted near‐surface permafrost extent during the mid-Pliocene warm period”, Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences, vol. 120, no. 36, p. e2301954120, 2023.
, “Highly restricted near‐surface permafrost extent during the mid-Pliocene warm period”, Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences, vol. 120, no. 36, p. e2301954120, 2023.
, “Highly restricted near‐surface permafrost extent during the mid-Pliocene warm period”, Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences, vol. 120, no. 36, p. e2301954120, 2023.
, “The changing thermal state of permafrost”, vol. 3, no. 1, pp. 10 - 23, 2022.
, “Cumulative impacts of a gravel road and climate change in an ice-wedge-polygon landscape, Prudhoe Bay, Alaska”, Arctic ScienceArctic Science, vol. 8, no. 4, pp. 1040 - 1066, 2022.
, “Cumulative impacts of a gravel road and climate change in an ice-wedge-polygon landscape, Prudhoe Bay, Alaska”, Arctic ScienceArctic Science, vol. 8, no. 4, pp. 1040 - 1066, 2022.
, “Near-Surface Hydrology and Soil Properties Drive Heterogeneity in Permafrost Distribution, Vegetation Dynamics, and Carbon Cycling in a Sub-Arctic Watershed”, Journal of Geophysical Research: BiogeosciencesJournal of Geophysical Research: BiogeosciencesJ Geophys Res Biogeosci, vol. 127, no. 9, p. e2022JG006864, 2022.
, “The shifting mosaic of ice-wedge degradation and stabilization in response to infrastructure and climate change, Prudhoe Bay Oilfield, Alaska, USA”, Arctic ScienceArctic Science, vol. 8, no. 2, pp. 498 - 530, 2022.
, , , , , “Projecting Permafrost Thaw of Sub-Arctic Tundra With a Thermodynamic Model Calibrated to Site Measurements”, Journal of Geophysical Research: Biogeosciences, vol. 126, p. e2020JG006218, 2021.
, “Projecting Permafrost Thaw of Sub-Arctic Tundra With a Thermodynamic Model Calibrated to Site Measurements”, Journal of Geophysical Research: Biogeosciences, vol. 126, p. e2020JG006218, 2021.
, “Tundra Underlain By Thawing Permafrost Persistently Emits Carbon to the Atmosphere Over 15 Years of Measurements”, Journal of Geophysical Research: BiogeosciencesJournal of Geophysical Research: BiogeosciencesJ Geophys Res Biogeosci, vol. 126, no. 6, p. e2020JG006044, 2021.
, “Tundra Underlain By Thawing Permafrost Persistently Emits Carbon to the Atmosphere Over 15 Years of Measurements”, Journal of Geophysical Research: BiogeosciencesJournal of Geophysical Research: BiogeosciencesJ Geophys Res Biogeosci, vol. 126, no. 6, p. e2020JG006044, 2021.
, “Tundra Underlain By Thawing Permafrost Persistently Emits Carbon to the Atmosphere Over 15 Years of Measurements”, Journal of Geophysical Research: BiogeosciencesJournal of Geophysical Research: BiogeosciencesJ Geophys Res Biogeosci, vol. 126, no. 6, p. e2020JG006044, 2021.
, , , , “Water balance response of permafrost-affected watersheds to changes in air temperatures”, Environmental Research Letters, vol. 16, no. 8, p. 084054, 2021.
, “Water balance response of permafrost-affected watersheds to changes in air temperatures”, Environmental Research Letters, vol. 16, no. 8, p. 084054, 2021.
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