A. Milewski
- ORCiD
- https://orcid.org/0000-0003-0494-8002
- OpenAlex ID
- https://openalex.org/A5016496070 (API record)
Associated Concepts [?]
- Geology
- Engineering
- Geography
- Biology
- Environmental science
- Geotechnical engineering
- Ecology
- Hydrology (agriculture)
- Physics
- Groundwater
- Paleontology
- Computer science
- Meteorology
- Aquifer
- History
- Archaeology
- Geomorphology
- Remote sensing
- Climatology
- Precipitation
- Cartography
- Oceanography
Authored Works
sorted by decreasing year, and then by display-name
- Towards groundwater management in the basement terrains: A case study from Saint Katrine City, southern Sinai, Egypt
- Rock-Water Interactions in Tumbling Rock Cave, Alabama, USA: Geochemical Analysis of an Underground Stream System
- Remote Sensing Applications within Ephemeral Channels: Quantifying Temporal and Spatial Flow Patterns within the Souss-Massa basin, Morocco
- Evaluation of Remote Sensing-Based Approaches for Salt Marsh Monitoring
- Coastal Dryland Subsidence Detection Using Interferometric Synthetic Aperture Radar (InSAR)
- A Satellite-based Approach for Quantifying Terrestrial Water Cycle Intensity (WCI) and Climate Change Impacts on Hydrological Processes across the Contiguous USA
- Water Resource Inventory and Assessments for the U.S. Fish and Wildlife North Mississippi Refuges Complex
- Two-dimensional Forward and Inverse Modeling to Simulate Geoelectric Response to Lateral Water Flow in a Topographically Induced Inland Freshwater Lens
- Remote Sensing-Based Salt Marsh Monitoring of Southeast Coast Network
- Remote Sensing Approach for Dune Migration Measurement
- Optimization of Remote Sensing Techniques for Ephemeral Channels: Quantifying Temporal Changes in Channel Flow within the Souss-Massa Basin, Morocco
- Evaluating Water Resources and Threats at the Carolina Sandhills National Wildlife Refuge
- Development of Hydrograph Analysis Techniques for Ephemeral and Intermittent Transmission Loss Modeling
- A Satellite-based Approach for Quantifying Terrestrial Water Cycle Intensity (WCI) and Evaluating its Impact on Groundwater Recharge Potential Across the Contiguous USA
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