Ingo Grevemeyer
- ORCiD
- https://orcid.org/0000-0002-6807-604X
- OpenAlex ID
- https://openalex.org/A5042459857 (API record)
Associated Concepts [?]
- Geology
- Seismology
- Biology
- Paleontology
- Physics
- Tectonics
- Engineering
- Oceanography
- Geophysics
- Geography
- Geochemistry
- Subduction
- Mantle (geology)
- Geomorphology
- Lithosphere
- Crust
- Civil engineering
- Materials science
- Cartography
- Structural basin
- Composite material
Authored Works
sorted by decreasing year, and then by display-name
- Towards Realistic Modeling of Seamount Densities in Isostatic Studies
- The Bigger They Are, The Harder They Fall: The Collapse of the Hawaiian-Emperor Seamount Chain
- Phase Picking on OBS Data with Deep Learning: Bringing SeisBench to the Ocean Bottom
- Intraplate Lithospheric Deformation and the Formation of a Large Volcanic Regions
- Broad Fault Zones Enable Deep Fluid Transport and Limit Earthquake Magnitude: Evidence from the Chain Transform
- The growth and collapse of the Hawaiian-Emperor seamount chain from marine seismic data
- Internal Structure across the Emperor Seamounts from Seismic Wide-Angle Reflection-Refraction Tomography
Linked Co-Authors
- A. B. Watts
- B. Boston
- C. G. Barcheck
- C. Rychert
- César R. Ranero
- D. J. Shillington
- Frederik Tilmann
- J.‐M. Kendall
- Konstantinos Leptokaropoulos
- L. Gómez de la Peña
- Nicholas Harmon
- Patricia Cadenas
- Paul Wessel
- R. A. Dunn
- S. C. Singh
- Uri S. ten Brink
Linked Collaborating Institutions
- Cornell University, New York
- Helmholtz Center for Geosciences, Potsdam
- Karlsruhe Institute of Technology, Germany
- Lamont-Doherty Earth Observatory
- Memorial University of Newfoundland, Canada
- Northern Arizona University
- University of Hawaii, Manoa
- University of Lisbon, Portugal
- University of Oxford, UK
- University of Southampton, UK
- Woods Hole Oceanographic Institute, Massachusetts
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