Eric Kendrick
Earth and Planetary Sciences · The Ohio State University
Publications
94
Citations
3,758
Est. group size
~6
Recurring co-author estimate
Active years
47
Publishing since 1980
Eric Kendrick studies how the Earth's crust moves and deforms, using GPS/GNSS satellite positioning, gravity measurements, and other geophysical techniques. His work spans earthquake cycles in the Andes, ice loss and its effects on the crust in Antarctica, Patagonia, and Greenland, and methods for building more accurate geodetic (Earth-measurement) reference networks. This research helps explain how tectonic plates, glaciers, and the solid Earth interact over time.
Output has been variable but relatively steady over the last decade, with a busier stretch from 2023-2025 following a quieter period around 2020-2022.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Three-plate Dynamics of the Andean Earthquake Cycle
2026
- Advancing geodynamic research in Antarctica: reprocessing GNSS data to infer consistent coordinate time series (GIANT-REGAIN)
Earth system science data · 2025
- Inferring consistent coordinate time series from reprocessed GNSS data (GIANT-REGAIN) to probe the solid Earth and its interactions in Antarctica
2025
- Building a large-scale surface gravity network in Colombia using highly redundant measurements
Journal of Geodetic Science · 2025
- A robust approach to terrestrial relative gravity measurements and adjustment of gravity networks
Journal of Geodesy · 2024
- Creep on the Argentine Precordillera Décollement Following the 2015 Illapel, Chile, Earthquake: Implications for Andean Seismotectonics
Geophysical Research Letters · 2024
- Advancing geodynamic research in Antarctica: Reprocessing GNSS data to infer consistent coordinate time series (GIANT-REGAIN)
2024
- Microplate behaviour of the Andes during co- and early postseismic phases of the seismic cycle
2024
- Supplementary material to "Advancing geodynamic research in Antarctica: Reprocessing GNSS data to infer consistent coordinate time series (GIANT-REGAIN)"
2024
- On the determination of coseismic deformation models to improve access to geodetic reference frame conventional epochs in low-density GNSS networks
Journal of Geodesy · 2023
- New GNSS Observations of Crustal Deformation due to Ice Mass Loss in the Amundsen Sea Region, Antarctica
2023
- Transient ice loss in the Patagonia Icefields during the 2015–2016 El Niño event
Scientific Reports · 2022
- Accelerating changes in ice mass within Greenland, and the ice sheet’s sensitivity to atmospheric forcing
Proceedings of the National Academy of Sciences · 2019
- Illuminating subduction zone rheological properties in the wake of a giant earthquake
Science Advances · 2019
- The Chilean GNSS Network: Current Status and Progress toward Early Warning Applications
Seismological Research Letters · 2018
- AGU Fall Meeting Abstracts×6
- AGUFM×3
- Journal of Geodesy×2
- Science×1
- Proceedings of the National Academy of Sciences×1
- Dana J. Caccamise
Earth and Planetary Sciences · The Ohio State University
- Michael Bevis
Earth and Planetary Sciences · The Ohio State University
- Franco S. Sobrero
Earth and Planetary Sciences · The Ohio State University
- Jun Wang
Earth and Planetary Sciences · Indiana University
- L. M. Flesch
Earth and Planetary Sciences · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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