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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 21 minutes ago
Lidar and the Roscoe upper troposphere/lower stratosphere lidar). Additional projects include the development of machine learning and advanced data processing algorithms, and participation in upcoming
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description languages; developing and testing signal processing algorithms from concept to implementation; and performing systems integration and testing for technology maturation. Minimum Qualifications: 1
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developments in sensor design, dataset transmission, data analysis, and numerical modeling to distinguish between normal and abnormal features. Here, the goal is to develop machine learning algorithms
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, presentation lists, or portfolio materials. Experience with multi-disciplinary product development, including mechanical design, designing and testing control systems, sensor algorithm development, and electro
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Position Details Position Information Job Title Submersible humidity sensor researcher Appointment Type Student Employee Job Location Corvallis Position Appointment Percent 100 Appointment Basis 12
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National Aeronautics and Space Administration (NASA) | Hampton, Virginia | United States | 21 minutes ago
observations by the end of the decade as other sensors are phased-out. The SAGE Mission is seeking qualified candidates to conduct research activities that advance the maturity of this increasingly important
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to develop AI-enabled, low-latency signal-processing algorithms for next-generation pixel detectors used in high-energy physics experiments. This position offers the opportunity to engage in cutting-edge
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vehicle (AV), allowing for automated detection, prediction, mapping, and planning. During the vehicle’s operation, data is obtained through a myriad of sensors in an AV—including RADAR, LIDAR, cameras, and
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 22 minutes ago
. Recent updates to QFED include integration of fire products from new sensors (VIIRS), and a new multispectral approach for retrieving fire radiative power (FRP) for two phases of burning: flaming and
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research team. Key research areas include: Development of low-carbon materials and tunable thermal energy storage materials integrated with smart sensors and advanced algorithms Creation of Digital Twins