Found: 18
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Mapping geodetically inferred Antarctic ice surface height changes into thickness changes: a sensitivity study.
- Published in:
- Cryosphere, 2024, v. 18, n. 6, p. 2969, doi. 10.5194/tc-18-2969-2024
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- Article
Mapping geodetically inferred Antarctic ice height changes into thickness variations: a sensitivity study.
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- Cryosphere Discussions, 2023, p. 1, doi. 10.5194/egusphere-2023-2451
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- Article
Resolving glacial isostatic adjustment (GIA) in response to modern and future ice loss at marine grounding lines in West Antarctica.
- Published in:
- Cryosphere, 2022, v. 16, n. 6, p. 2203, doi. 10.5194/tc-16-2203-2022
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- Article
Resolving GIA in response to modern and future ice loss at marine grounding lines in West Antarctica.
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- Cryosphere Discussions, 2021, p. 1, doi. 10.5194/tc-2021-232
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- Article
Modelling sea-level fingerprints of glaciated regions with low mantle viscosity.
- Published in:
- Earth System Dynamics, 2021, v. 12, n. 3, p. 783, doi. 10.5194/esd-12-783-2021
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- Article
Akimiski Island, Nunavut, Canada: The Use of Cree Oral History and Sea-Level Retrodiction to Resolve Aboriginal Title.
- Published in:
- Arctic Journal, 2020, v. 73, n. 4, p. 421, doi. 10.14430/arctic71481
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- Article
Modelling sea-level fingerprints of glaciated regions with low mantle viscosity.
- Published in:
- Earth System Dynamics Discussions, 2020, p. 1, doi. 10.5194/esd-2020-72
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- Article
What do GPS-derived 1-D viscosity models represent given Antarctica's complex 3-D structure?
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- Geophysical Research Abstracts, 2019, v. 21, p. 1
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- Article
A Coupled Ice Sheet--Sea Level Model Incorporating 3D Earth Structure: Variations in Antarctica during the Last Deglacial Retreat.
- Published in:
- Journal of Climate, 2018, v. 31, n. 10, p. 4041, doi. 10.1175/JCLI-D-17-0352.1
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- Article
Quantifying the Sensitivity of Sea Level Change in Coastal Localities to the Geometry of Polar Ice Mass Flux.
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- Journal of Climate, 2018, v. 31, n. 9, p. 3701, doi. 10.1175/JCLI-D-17-0465.1
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- Article
Sea Level Fingerprints in a Region of Complex Earth Structure: The Case of WAIS.
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- Journal of Climate, 2017, v. 30, n. 6, p. 1881, doi. 10.1175/JCLI-D-16-0388.1
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- Article
The contribution of glacial isostatic adjustment to projections of sea-level change along the Atlantic and Gulf coasts of North America.
- Published in:
- Earth's Future, 2016, v. 4, n. 10, p. 440, doi. 10.1002/2016EF000363
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- Article
Inferences of mantle viscosity based on ice age data sets: Radial structure.
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- Journal of Geophysical Research. Solid Earth, 2016, v. 121, n. 10, p. 6991, doi. 10.1002/2016JB013043
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- Article
Barbados-based estimate of ice volume at Last Glacial Maximum affected by subducted plate.
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- Nature Geoscience, 2013, v. 6, n. 7, p. 553, doi. 10.1038/ngeo1859
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- Article
Decontaminating tide gauge records for the influence of glacial isostatic adjustment: The potential impact of 3-D Earth structure.
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- Geophysical Research Letters, 2006, v. 33, n. 24, p. n/a, doi. 10.1029/2006GL028448
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- Article
Impact of 3-D Earth structure on Fennoscandian glacial isostatic adjustment: Implications for space-geodetic estimates of present-day crustal deformations.
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- Geophysical Research Letters, 2006, v. 33, n. 13, p. n/a, doi. 10.1029/2006GL026568
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- Article
Influence of lithospheric thickness variations on 3-D crustal velocities due to glacial isostatic adjustment.
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- Geophysical Research Letters, 2005, v. 32, n. 1, p. n/a, doi. 10.1029/2004GL021454
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- Article
Resource Evaluation of Marine Gas Hydrate Deposits Using Seafloor Compliance Methods.
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- Annals of the New York Academy of Sciences, 2000, v. 912, n. 1, p. 146, doi. 10.1111/j.1749-6632.2000.tb06768.x
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- Article