M. D. Lebsock
- ORCiD
- https://orcid.org/0000-0002-7546-0090
- OpenAlex ID
- https://openalex.org/A5075984507 (API record)
Associated Concepts [?]
- Physics
- Geography
- Geology
- Environmental science
- Meteorology
- Computer science
- Engineering
- Operating system
- Remote sensing
- Aerospace engineering
- Political science
- Law
- Cloud computing
- Climatology
- Atmospheric sciences
- Organic chemistry
- Chemistry
- Thermodynamics
- Astronomy
- Quantum mechanics
- Precipitation
- Mechanics
- Satellite
- Telecommunications
- Optics
Authored Works
sorted by decreasing year, and then by display-name
- Understanding the microphysical control and spatial-temporal variability of warm rain probability using CloudSat and MODIS observations
- Reanalysis Biases Limit Single Column Model Ability to Simulate Low Clouds and Turbulence
- Model vertical resolution determines its ability to represent the subtropical marine boundary layer
- Microphysical Properties of Arctic Cold Air Outbreak Clouds
- Characterizing Planetary Boundary Layer (PBL) using Naval Radio-Occultation approach
- Advances in imaging spectrometer atmospheric correction with the open source ISOFIT codebase
- A-priori statistics for AOS cloud retrievals: A case study in cloud drop size dispersion
- A Lagrangian View Of The Liquid Water Path Response To Aerosols Using Bias-corrected GOES-16 Observations
- Seeking guidance from active cloud observations to improve climate model subcolumn generators
- Quantifying the Effects of Radar Resolution on a Warm Rain Retrieval
- ParOSSE: A Flexible Parallel Bayesian Framework for Quantifying Uncertainty in Measurements and Retrievals of Clouds and Precipitation
- How can reanalyses contribute to atmospheric model parameterization development and validation?
- GOES-16 Analysis of the Evolution of Pockets of Open Cells and the Surrounding Environment
- Dynamical properties of marine boundary layer clouds derived from ground-based observations in the Eastern North Atlantic
- Cloud and aerosol plume dynamics inferred by the Tandem Stereographic Camera concept as part of NASAs future Atmosphere Observing System: Aerosol, Cloud, Convection, and Precipitation (ACCP) satellite mission.
Linked Co-Authors
- Alexey Shiklomanov
- Anthony B. Davis
- Benjamin Poulter
- C. O. Ao
- David Mechem
- David R. Thompson
- Derek J. Posselt
- Dongmin Lee
- F. C. Seidel
- I. B. Glenn
- Jong‐Hoon Jeong
- Katia Lamer
- Kevin M. Smalley
- Kuo-Nung Wang
- Larry Di Girolamo
- Lazaros Oreopoulos
- M. J. Garay
- Mark Smalley
- Mikael Witte
- Nayeong Cho
- R. L. Storer
- Robert Green
- Robert Wood
- Roger Marchand
- Zhibo Zhang
- О. В. Калашникова
Linked Collaborating Institutions
- Brookhaven National Laboratory, New York
- Cornell University, New York
- Jet Propulsion Laboratory
- Lawrence Livermore National Laboratory, California
- Morgan State University, Maryland
- NASA Goddard Space Flight Center, Maryland
- SUNY Stony Brook, New York
- U.S. Naval Academy Postgraduate School, California
- University of California, Los Angeles
- University of California, Santa Barbara
- University of Illinois, Urbana-Champaign
- University of Kansas
- University of Maryland, Baltimore County
- University of Michigan
- University of Washington, Seattle
- University of Wisconsin, Madison
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