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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 2 months ago
. Description: New techniques and instrumentation are developed and applied for remote atmospheric measurements. Current research includes cloud and aerosol studies using space-based lidars such as the Cloud
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. These points are extracted from existing Lidar (ICEsat/GLAS) and field data sets. The ecosystem models widely available in the literature will be driven using the derived vegetation parameters. M. Simard, K
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simulation methods to target key performance parameters needed for position, navigation and timing (PNT) applications including detectors for imaging LiDAR. You will develop new process methodologies and
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applied to the study of sites, particularly rock schematic rock art sites of southern France. The contract will be carried out in the ANR SCHEMA project (https://schema.hypotheses.org/a-propos ). ANR SCHEMA
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LIST? Check our website: https://www.list.lu/ How will you contribute? The Post-Doc researcher will develop, implement, and apply advanced ways in inverting a radiative transfer model for forest trait
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therefore: - To carry out a systematic inventory of PBRs based on existing databases, as well as on the analysis of HD LiDAR (IGN) and satellite topographic data. This first step will enable us to target
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well as the enhancement of the research program through the publication of results and dissemination through participation in workshops. Where to apply Website http://www.unibas.it Requirements Additional Information
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Job Description Apply now Req Id: 38998 Job Title: EAPS Assistant Professor City: West Lafayette Job Description: Job Summary The Department of Earth, Atmospheric, and Planetary Sciences (https
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systems. Position Responsibilities Architect and implement large-scale, georeferenced 3D digital twin models Develop computational pipelines for integrating vector, raster, terrain, LiDAR, and
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 2 months ago
to better understand aerosol, cloud, and precipitation processes and their interaction through a constellation of instruments in low earth orbit (aos.gsfc.nasa.gov) that includes a 3-channel Raman LIDAR and a