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Join us at TU Delft to reshape the future of spaceborne radar systems in the Netherlands! Job description Spaceborne radar systems has proven to be effective tools for broader applications from high
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to shaping the next steps of the research. As a postdoctoral researcher, you will: Use existing computational tools and research foundations to investigate promising concrete architectures. Design and perform
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novel calibration algorithms, products and tools to maximise the impact of the Biomass mission, in particular during the commissioning phase and the early exploitation phase; studying novel approaches and
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living laboratories in Bratislava, Espoo, Rotterdam, and Tirana, the project works with citizens, schools, and local authorities to co-design and test urban interventions, generating evidence-based tools
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packaging and e-waste, while Exergy will develop the digital-twin and machine-learning tools that make the process adaptive and scalable. The research effort will be directed towards the selective recovery in
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OpenML (tasks and automatically share detailed workflows and model evaluations. More than just a platform, OpenML fosters a collaborative ecosystem where scientists create new tools, launch
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physics/mechanics. Experience with and enthusiasm for numerical simulation tools including programming in fortran/python. A research-oriented mindset: critical thinking is your second nature. A team player
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-recorded environments to assess real-world performance Design clinician-facing visualization tools ensuring privacy-by-design anonymization of patients and their home environment You will translate
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, Espoo, Rotterdam, and Tirana, the project works with citizens, schools, and local authorities to co-design and test urban interventions, generating evidence-based tools and guidelines for wider European
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-camera, home-based markerless system Test the algorithm across lab and home-recorded environments to assess real-world performance Design clinician-facing visualization tools ensuring privacy-by-design