Ron Miller
- ORCiD
- https://orcid.org/0000-0003-2122-0443
- OpenAlex ID
- https://openalex.org/A5027620526 (API record)
Associated Concepts [?]
- Geology
- Physics
- Geography
- Environmental science
- Biology
- Meteorology
- Atmospheric sciences
- Ecology
- Climatology
- Chemistry
- Oceanography
- Mathematics
- Organic chemistry
- Aerosol
- Climate change
- Engineering
- Computer science
- Quantum mechanics
- Philosophy
- Mathematical analysis
- Thermodynamics
- Forcing (mathematics)
- Climate model
- Astronomy
- Paleontology
Authored Works
sorted by decreasing year, and then by display-name
- Understanding model-observation discrepancies in satellite retrievals of stratospheric temperature using GISS ModelE
- The role of soil mineralogy atlas and iron oxide mixing assumptions upon global and regional dust radiative effects in the MONARCH model
- The Earth Mineral dust source InvesTigation (EMIT): Instrument Performance and Initial Results
- Remotely Sensed Retrievals for Fractional Abundance of Quartz and Feldspar to Assess the Influence on Radiative Forcing in Earth System Models
- Projecting Interaction of Mineral Dust with Radiation and Its Impact on Climate
- Minerals and Other Materials Identification and Mapping with EMIT
- Global Distributions of Fractional Cover in Arid Lands: Early Analyses from NASA's Earth Surface Mineral Dust Source Investigation
- First Imaging Spectroscopy Observations and Early Science from the NASA Earth Surface Mineral Dust Source Investigation
- Coupling of Dust Mineralogy to Radiation in NASA GISS ModelE: Impact upon Dust Optical Properties and Direct Radiative Effect
- Atmospheric Controls on Aerosol Iron Solubility under Different Climate Scenarios
- An IMPROVE Perspective of the Godzilla Dust Storm and Transport into the Southeastern U.S.
- AMOC Stability in GISS-E2-1-G: a case of stochastic bifurcation
- Irrigation and the Effect of Cultivation Upon Dust Emission Trends During the Historical Period
- First Ground Performance Measurements and On Orbit Plans for the NASA Earth Surface Mineral Dust Source Investigation (EMIT)
- Effect of Mineral Composition upon Dust Optical Properties and Direct Radiative Forcing
- A Review of Dust Optical Properties used in Earth and Mars System Modeling, as well as Remote Sensing Applications
Linked Co-Authors
- A. Joshua West
- Anastasia Romanou
- B. L. Ehlmann
- Carlos Pérez García‐Pando
- Clara Orbe
- D. T. Shindell
- David R. Thompson
- E. P. Nowottnick
- Francisco Ochoa
- Gregory S. Okin
- Hongbin Yu
- J. P. Perlwitz
- Jasper F. Kok
- K. Reath
- Kostas Tsigaridis
- Larissa Nazarenko
- Luka Ilić
- M. D. Smith
- Martina Klose
- Mian Chin
- N. M. Mahowald
- Paul Ginoux
- Peter R. Colarco
- Philip G. Brodrick
- Robert C. Levy
- Robert Green
- Scott D. Guzewich
- Stelios Myriokefalitakis
- T. H. Painter
- Yongjun Huang
- О. В. Калашникова
Linked Collaborating Institutions
- California Institute of Technology
- Columbia University, New York
- Cornell University, New York
- Desert Research Institute
- Duke University, North Carolina
- Helmholtz Center for Geosciences, Potsdam
- Jet Propulsion Laboratory
- Karlsruhe Institute of Technology, Germany
- NASA Goddard Space Flight Center, Maryland
- NASA HQ
- NASA Langley Research Center
- National Observatory of Athens, Greece
- Planetary Science Institute, Arizona
- State University of New York System
- Technical University of Catalona, Spain
- Tel Aviv University, Israel
- U.S. Geological Survey
- Universitat Politecnica de Valencia, Spain
- University of California, Irvine
- University of California, Los Angeles
- University of Southern California
- University of Texas, Austin
Add Incoming Edge
Login via ORCiD to contribute.
Add Outgoing Edge
Login via ORCiD to contribute.