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12 (10), 3229, S. 3229 - 3242 (2018)
Grounding-line flux formula applied as a flux condition in numerical simulations fails for buttressed Antarctic ice streams. The Cryosphere 422.
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115 (33), 1810141115, S. 8252 - 8259 (2018)
Trajectories of the Earth System in the Anthropocene. Proceedings of the National Academy of Sciences of the United States of America 423.
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12 (6), 1969, S. 1969 - 1985 (2018)
Antarctic sub-shelf melt rates via PICO. The Cryosphere 424.
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8 (1), s41558-017-0020-x, S. 53 - 57 (2018)
The far reach of ice-shelf thinning in Antarctica. Nature Climate Change 425.
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4 (2), 2053019617725537, S. 151 - 157 (2017)
Closing the loop: Reconnecting human dynamics to Earth System science. The Anthropocene Review 426.
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38 (1), s10712-016-9374-2, S. 385 - 406 (2017)
A review of recent updates of sea-level projections at global and regional scales. Surveys in Geophysics 427.
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10 (4), 1799, S. 1799 - 1807 (2016)
A simple equation for the melt elevation feedback of ice sheets. The Cryosphere 428.
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6 (4), 2923, S. 360 - 369 (2016)
Consequences of twenty-first-century policy for multi-millennial climate and sea-level change. Nature Climate Change 429.
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113 (10), 1500515113, S. 2597 - 2602 (2016)
Future sea level rise constrained by observations and long-term commitment. Proceedings of the National Academy of Sciences of the United States of America 430.
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1 (8), e1500589 (2015)
Combustion of available fossil fuel resources sufficient to eliminate the Antarctic Ice Sheet. Science Advances 431.
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5 (4), 2574, S. 348 - 352 (2015)
Consistent evidence of increasing Antarctic accumulation with warming. Nature Climate Change 432.
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5 (2), 5-271-2014, S. 271 - 293 (2014)
Projecting Antarctic ice discharge using response functions from SeaRISE ice-sheet models. Earth System Dynamics 433.
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119 (1), 009240, S. 87 - 97 (2014)
Modeling Antarctic tides in response to ice shelf thinning and retreat. Journal of Geophysical Research: Oceans 434.
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40 (11), s00382-012-1471-4, S. 2579 - 2588 (2013)
Linear response functions to project contributions to future sea level. Climate Dynamics 435.
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6 (2), 6-273-2012, S. 273 - 286 (2012)
Kinematic first-order calving law implies potential for abrupt ice-shelf retreat. The Cryosphere 436.
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5 (3), 5-727-2011, S. 727 - 740 (2011)
The Potsdam Parallel Ice Sheet Model (PISM-PIK) – Part 2: dynamic equilibrium simulation of the Antarctic ice sheet. The Cryosphere 437.
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5 (3), 5-715-2011, S. 715 - 726 (2011)
The Potsdam Parallel Ice Sheet Model (PISM-PIK) – Part 1: model description. The Cryosphere 438.
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5 (1), 5-35-2011, S. 35 - 44 (2011)
Parameterization for subgrid-scale motion of ice-shelf calving fronts. The Cryosphere Buch (9)
439.
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Geologie der Gegenwart. Spector Books, Leipzig (2025), 90 Seiten S.
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Geology of the present. Spector Books, Leipzig (2025), 90 Seiten S.