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the AI algorithms state of the art for crater detection. generate an overview of available meta data in coordination with the game developers. identify potential use cases in the science community and
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-board Payload Signal and Data Processing algorithms and techniques for RF payloads and instruments in close collaboration with TEC-ED; and Time and frequency references, modelling, design tools
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(addressing areas such as tribology/lubrication engineering, tribology free and compliant mechanisms, mechanical components including ball bearings & gears, position sensors, electric motors, new/alternative
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. Measurement of optical properties of key optical components by devising ad-hoc measurements in the Optical and Optoelectronics Laboratory (OOEL); Optoelectronics: laser systems and sensors, LIDAR and laser
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. Measurement of optical properties of key optical components by devising ad-hoc measurements in the Optical and Optoelectronics Laboratory (OOEL); Optoelectronics: laser systems and sensors, LIDAR and laser
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classical computing algorithms are NP-hard or, in general, difficult to implement. Within your application, please provide a research proposal (no more than five pages) answering the following questions: What
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data, complicated algorithms are required. Some of these algorithms are yet to be developed and/or validated, with real data from polar regions required in order to do so. A dedicated airborne radar
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to end simulator (CHEES): simulating, testing and generating hyperspectral products | SPIE Sensors + Imaging Candidates interested are encouraged to visit the ESA website: http://www.esa.int Field(s) of
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: designing and developing prototype algorithms for ground processing of Synthetic Aperture Radar images, with a focus on X-band systems; developing Synthetic Aperture Radar image processing; validating and
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adaptability, and safety; Applying AI and optimisation techniques (e.g. reinforcement learning and evolutionary algorithms) to adapt locomotion strategies to varying surface conditions; Supporting