B. D. Loomis
flowchart A[B. D. Loomis] AC["Associated Concepts (21)"] AW["Authored Works (10)"] CA["Linked Co-Authors (23)"] CI["Linked Collaborating Institutions (12)"] A== dcterms:relation ==>AC AW== author ==>A AW== author ==>CA AW== affil ==>CI click AC "#associated-concepts" click AW "#authored-works" click CA "#co-authors" click CI "#collaborating-institutions" NI["add incoming edge"] NO["add outgoing edge"] NI-- ? -->A A-- ? -->NO click NI "#add-incoming-edge" click NO "#add-outgoing-edge" style NI stroke-width:2px,stroke-dasharray: 5 5 style NO stroke-width:2px,stroke-dasharray: 5 5
- ORCiD
- https://orcid.org/0000-0002-9370-9160
- OpenAlex ID
- https://openalex.org/A5007988172 (API record)
Associated Concepts [?]
- Geology
- Geography
- Physics
- Engineering
- Environmental science
- Computer science
- Geodesy
- Biology
- Astronomy
- Quantum mechanics
- Remote sensing
- Meteorology
- Oceanography
- Mathematics
- Climatology
- Aerospace engineering
- Satellite
- Ecology
- Optics
- Geomorphology
- Telecommunications
Authored Works
sorted by decreasing year, and then by display-name
- Two decades of global water cycle variability - non-stationarity assessed by land data assimilation
- Science returns from a spaceborne quantum gravity gradiometer in either hybrid or standalone configuration - Results from a joint NASA/DLR study.
- SLR Simulations to Improve Time-Variable Gravity: Evaluating the Impact of Combination Solutions and a Future Satellite
- Optimizing the recovery of short-term mass trends with GRACE and GRACE-FO
- Advancements in GRACE(-FO) and SLR time variable gravity products at GSFC
- Potential Improvements to Low Degree Gravity Fields from Satellite Laser Ranging through Additions to the Tracking Network and Satellite Constellation
- Fast mascons from spherical harmonics: development, applications, and co-estimation with SLR
- Estimates of Remotely Sensed Total Water Storage Trends and Amplitudes for the GRACE and GRACE-FO Periods with Improved Signal Recovery
- Collaborative Sea-Level Science on NASAs Science Managed Cloud Environment: Toward an Earth Information System
- A New Global GRACE/GRACE-FO High-resolution Mascon Trend Product with Comparisons to ICESat/ICESat-2 Ice Sheet Mass Rates
Linked Co-Authors
- Augusto Getirana
- Brooke Medley
- Christa D. Peters‐Lidard
- D. N. Wiese
- Denis Felikson
- E. S. Tucker
- Frank Flechtner
- Justin Quinn
- Kim Locke
- Lauren C. Andrews
- M. J. Croteau
- M. L. Rilee
- Mary Michael O’Neill
- Matthew Rodell
- Melissa L. Wrzesien
- R. S. Nerem
- Richard I. Cullather
- S. Ahmad
- Srinivas Bettadpur
- Sujay V. Kumar
- T. Neumann
- Terence J. Sabaka
- Wanshu Nie
Linked Collaborating Institutions
- Jet Propulsion Laboratory
- Johns Hopkins University, Maryland
- Leibniz University, Hannover, Germany
- NASA Goddard Space Flight Center, Maryland
- SUNY Buffalo, New York
- The Ohio State University
- University of California, Irvine
- University of California, Los Angeles
- University of Colorado, Boulder
- University of Maryland, College Park
- University of Texas, Austin
- University of Texas, Austin, Department of Geological Sciences
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