T. Neumann
- ORCiD
- https://orcid.org/0000-0002-6926-937X
- OpenAlex ID
- https://openalex.org/A5085389172 (API record)
Associated Concepts [?]
- Geology
- Geography
- Physics
- Meteorology
- Remote sensing
- Engineering
- Biology
- Environmental science
- Oceanography
- Computer science
- Mathematics
- Astronomy
- Geomorphology
- Aerospace engineering
- Climatology
- Geodesy
- Physical geography
- Ecology
- Paleontology
- Geometry
- Quantum mechanics
- Operating system
- Satellite
- Glacier
- Structural engineering
Authored Works
sorted by decreasing year, and then by display-name
- Transformation of the Sea-Ice "Cover" in the New Arctic - Insights Into Melt Progression From ICESat-2 High-Resolution Data Analysis With the DDA-bifurcate-seaice
- SlideRule: Enabling Rapid, Scalable, Open Science for the NASA ICESat-2 mission and beyond
- Reflecting on a decade-plus of NASA ICESat-2 mission applications
- On-Orbit Radiometric Performance of ICESat-2
- Ice-sheet subannual volume variations from ICESat-2 laser altimetry
- ICESat-2/ATLAS at 4 years: Instrument Performance, Calibration Updates, and Predicted Lifetime
- ICESat-2 at 4 Years: Status, Outlook, and Contributions to Polar Science
- Assessment of ICESat-2 Surface Heights Over Grand Mesa, CO and Fairbanks, AK in Support of the SnowEx Mission
- Validation of absolute measurement bias and measurement repeatability of the NASA ICESat-2 mission
- Surface Topography Observations Needed to Advance Cryosphere Science in the Coming Decades
- Quantifying volumetric scattering bias in ICESat-2 and Operation IceBridge altimetry over snow-covered surfaces
- On-Orbit Radiometric Performance of ICESat-2
- On the brink of change: Observations reveal coastal oceanographic impacts and inland glacier response associated with the ongoing collapse of West Ice Shelf, East Antarctica
- Lessons Learned from NASA's ICESat-2 Applications Program
- ICESat-2/ATLAS at 3 Years: Instrument Performance and Projected Life
- ICESat-2 at 3 Years: Status, Outlook, and Contributions to Polar Science
- Evaluating and improving seasonal snow depth retrievals with satellite laser altimetry
- Collaborative Sea-Level Science on NASAs Science Managed Cloud Environment: Toward an Earth Information System
- Antarctic ocean biological activity response to sea ice changes and its impact on cloud microphysics
- An introduction to ICESat-2s gridded land-ice products
Linked Co-Authors
- A. Gibbons
- Alek Petty
- Alex Gardner
- Ali Omar
- B. D. Loomis
- B. E. Smith
- Brooke Medley
- C. C. Walker
- Chad A. Greene
- Christa D. Peters‐Lidard
- David Shean
- Denis Felikson
- Ellen Buckley
- Justin Quinn
- Kelly M. Brunt
- Lauren C. Andrews
- Laurie Padman
- M. E. Brown
- M. Flanner
- M. J. Croteau
- M. L. Rilee
- Marco Bagnardi
- Mark Vaughan
- Mathieu Morlighem
- Matthew Lawson
- Matthew R. Siegfried
- Nicholas Holschuh
- Richard I. Cullather
- S. L. Farrell
- S. T. Henderson
- Sahra Kacimi
- Susheel Adusumilli
- T. C. Sutterley
- U. C. Herzfeld
- Xiaomei Lu
- Yuekui Yang
- Zachary Fair
Linked Collaborating Institutions
- Brown University, Rhode Island
- Colorado School of Mines
- Cornell University, New York
- Jet Propulsion Laboratory
- Middlebury College, Vermont
- NASA Goddard Space Flight Center, Maryland
- NASA Langley Research Center
- SUNY Buffalo, New York
- Science Systems and Applications Inc., Maryland
- University of California, Irvine
- University of California, San Diego
- University of California, San Diego, Scripps Institution of Oceanography
- University of Colorado, Boulder
- University of Maryland, Baltimore County
- University of Maryland, College Park
- University of Michigan
- University of Texas, Austin
- University of Texas, Austin, Department of Geological Sciences
- University of Washington, Seattle
- Woods Hole Oceanographic Institute, Massachusetts
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