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using electromagnetic induction (EMI), and ground penetrating radar (GPR) will be combined with soil sensors systems and UAVs at different scales. In particular, we will combine borehole and surface GPR
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lead remote sensing data acquisition campaigns using multi-scale platforms, including ground-based spectrometers, UAVs (optical, Lidar), and satellite imagery (e.g., Planet, Sentinel, Landsat). Develop
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amplification? 3. How effective are emerging low-cost monitoring techniques (e.g., UAV surveys, citizen science, remote sensing) in detecting and managing sediment retention? By bridging geomorphology
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methodologies, including the manipulation and processing of satellite imagery and data from equivalent remote-sensing platforms (e.g., UAVs), as well as the development of machine-learning approaches to enhance
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options Employee and dependent educational benefits Life insurance coverage Employee discounts programs For detailed information on benefits and eligibility, please visit: http://uhr.rutgers.edu/benefits
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dynamics, materials, and controls; and the aerospace sciences, particularly aerodynamics, aircraft design, hypersonics, propulsion, flight research using UAVs, and computational fluid dynamics
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sciences, particularly aerodynamics, aircraft design, hypersonics, propulsion, flight research using UAVs, and computational fluid dynamics. The Department of Mechanical and Aerospace Engineering has
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administration. Experience and knowledge in any of the following areas would be highly valued: AUV and UAV mapping, marine monitoring experience (ADCP, Kestral, wind, wave, buoy), sediment analysis (particle size
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mechanics, structural dynamics, materials, and controls; and the aerospace sciences, particularly aerodynamics, aircraft design, hypersonics, propulsion, flight research using UAVs, and computational fluid
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communicators and be able to lead project administration. Experience and knowledge in any of the following areas would be highly valued: AUV and UAV mapping, marine monitoring experience (ADCP, Kestral, wind