Aarhus Universitets segl

Publikationsoversigt for Institut for Geoscience

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Herckenrath, D., Odlum, N., Nenna, V., Knight, R., Auken, E. & Bauer-Gottwein, P. (2013). Calibrating a Salt Water Intrusion Model with Time-Domain Electromagnetic Data. Groundwater, 51(3), 385-397. https://doi.org/10.1111/j.1745-6584.2012.00974.x
Herckenrath, D., Auken, E. & Bauer-Gottwein, P. (2011). Monitoring of aquifer pump tests with Magnetic Resonance Sounding (MRS): A synthetic case study. I A H S Proceedings and Reports, 341, 267-271.
Herendeen, P. S., Friis, E. M., Pedersen, K. R. & Crane, P. R. (2017). Palaeobotanical redux: Revisiting the age of the angiosperms. Nature Plants, 3, Artikel 17015 (2017). https://doi.org/10.1038/nplants.2017.15
Hermanowski, P., Piechota, A. & Piotrowski, J. (2006). Groundwater flow re-organization under the last Scandinavian Ice Sheet in northern Poland. I GSA Abstracts with Programs (Bind 38(7), s. no number)
Hermanowski, P., Pisarska-Jamrozy, M. & Piotrowski, J. (2007). Subglacial drainage through the Banie tunnel channel during the Weichselian glaciation, NW Poland. Abstract fra 5th International Postgraduate Symposium, Edinburgh, Quaternary Research Association, Storbritannien.
Hermanowski, P., Piechota, A. & Piotrowski, J. (2007). Drenaz subglacjalny i jego wpływ na procesy glacjalne w czasie zlodowacenia Vistulianu na Niżu Polskim. Abstract fra III Ogolnopolskie Sympozjum Czlowiek i Srodowisko Przyrodnicze Pomorza Zachodniego, Szczecin, Polen.
Hermanowski, P., Piechota, A., Piotrowski, J. & Jania, J. (2007). Hydrogeological aspects of the Weichselian glaciation in the Polish lowland area. Abstract fra 27th Nordic Geological Winter Meeting, Oulu, Finland.
Hermanowski, P., Piotrowski, J. A. & Piotrowski, A. (2008). Groundwater flow under a land-based palaeo-ice stream of the Scandinavian ice sheet and its geomorphological implications. Abstract fra 33rd International Geological Congress, Oslo, Norge.
Hermanowski, P., Piotrowski, J. A. & Szuman, I. (2019). An erosional origin for drumlins of NW Poland. Earth Surface Processes and Landforms, 44(10), 2030-2050. https://doi.org/10.1002/esp.4630
Hermanowski, P. & Piotrowski, J. A. (2022). Spatial and temporal changes in the mode of till deformation under a palaeo-ice stream derived from micromorphological data. Afhandling præsenteret på International Field Symposium Quaternary of the Eastern Baltic Region, INQUA Peribaltic Group, Riga, Letland.
Hermanowski, P. & Piotrowski, J. A. (2024). Kręte formy glacjalne - budowa wewnętrzna i geneza (glacial curvilineations – internal com-position and origin). Abstract fra 1st Congress of Polish Quaternary Union POLQUA, Cracow, Polen.
Hermanowski, P. & Piotrowski, J. A. (2023). Transient conditions at the ice/bed interface and enhanced meltwater erosion under a palaeo-ice stream, NW Poland. Abstract fra The INQUA Peribaltic Group symposium, Seinäjoki, Finland.
Hertz, E. & Kristiansen, S. M. (2021). Large-scale post-battle treatment of dead Iron Age warriors in Denmark: legacy to land-use and settlement structure. 1. Abstract fra 27th European Archology Association Annual Meeting, Kiel, Slesvig-Holsten, Tyskland.
Herwartz, D., Pack, A. & Nagel, T. J. (2021). A CO2 greenhouse efficiently warmed the early Earth and decreased seawater 18O/16O before the onset of plate tectonics. Proceedings of the National Academy of Sciences (PNAS), 118(23), Artikel e2023617118. https://doi.org/10.1073/pnas.2023617118
Hippe, K., Gordijn, T., Hajdas, I., Jansen, J., Christl, M., Vockenhuber, C., Maden, C., Akcar, N. & Ivy-Ochs, S. (2019). Fluvial dynamics and 14C‐10Be disequilibrium on the Bolivian Altiplano. Earth Surface Processes and Landforms, 44(3), 766-780. https://doi.org/10.1002/esp.4529
Hippe, K., Jansen, J. D., Skov, D. S., Lupker, M., Ivy-Ochs, S., Kober, F., Zeilinger, G., Capriles, J. M., Christl, M., Maden, C., Vockenhuber, C. & Egholm, D. L. (2021). Cosmogenic in situ 14C-10Be reveals abrupt Late Holocene soil loss in the Andean Altiplano. Nature Communications, 12(1), Artikel 2546. https://doi.org/10.1038/s41467-021-22825-6
Hoem, F. S., López-Quirós, A., Van De Lagemaat, S., Etourneau, J., Sicre, M. A., Escutia, C., Brinkhuis, H., Peterse, F., Sangiorgi, F. & Bijl, P. K. (2023). Late Cenozoic sea-surface-temperature evolution of the South Atlantic Ocean. Climate of the Past, 19(10), 1931-1949. https://doi.org/10.5194/cp-19-1931-2023
Hoffmann, J. E., Zhang, C., Moyen, J.-F. & Nagel, T. (2018). The formation of tonalites–Trondjhemite–Granodiorites in early continental crust. I M. van Kranendonck, V. Bennet & E. Hoffmann (red.), Earth's oldest rocks (2. udg., s. 133-168). Elsevier.
Hogan, K. A., Jakobsson, M., Mayer, L., Reilly, B. T., Jennings, A. E., Stoner, J. S., Nielsen, T., Andresen, K. J., Nørmark, E., Heirman, K. A., Kamla, E., Jerram, K., Stranne, C. & Mix, A. (2020). Glacial sedimentation, fluxes and erosion rates associated with ice retreat in Petermann Fjord and Nares Strait, north-west Greenland. Cryosphere, 14(1), 261-286. https://doi.org/10.5194/tc-14-261-2020
Holdridge, G., Kristiansen, S. M., Raja, R., Lichtenberger, A. & Simpson, I. (2017). Landscape stability and water management around the ancient city Jerash, Jordan. Geophysical Research Abstracts, 19, Artikel EGU2017-19394.
Holdridge, G. S., Kristiansen, S. M., Lichtenberger, A., Raja, R. & Simpson, I. A. (2020). Soils, Sediments, and Urban History of the Ancient City Jerash. I R. Raja & A. Lichtenberger (red.), Environmental Studies, Remote Sensing, and Modelling: Final Publications from the Danish-German Jerash Northwest Quarter Project I (s. 65-78). Brepols Publishers. https://doi.org/10.1484/M.JP-EB.5.121014
Holdridge, G. S., Simpson, I. A., Lichtenberger, A., Raja, R., C. Kinnaird, T., C. W. Sanderson, D. & Kristiansen, S. M. (2022). Urban gardens in Antiquity: The case of Gerasa/Jerash in Jordan. Journal of Archaeological Science: Reports, 46, Artikel 103633. https://doi.org/10.1016/j.jasrep.2022.103633
Holm, P. M., Wilson, J. R., Christensen, B. P., Hein, K. M., Hansen, L., Hansen, S. L., Mortensen, A., Pedersen, R., Plesner, S. & Runge, M. K. (2001). Some implications for the inhomogeneity of the Cape Verde mantle plume from the geochemistry of the volcanics of Santo Antao, Cape Verde Islands. (s. 11-12).