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underwater frames and instrumentation, including sensor testing and calibration Quantifying benthic biogeochemical fluxes and momentum fluxes in situ from high-density datasets (e.g. using eddy covariance
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competence gap and develop the first model capable of accurately simulating both on and offshore transport of sediments and microplastic particles without case-specific calibration. The project will also
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limited to: Testing underwater frames and instrumentation, including sensor testing and calibration Quantifying benthic biogeochemical fluxes and momentum fluxes in situ from high-density datasets (e.g
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microplastic particles without case-specific calibration. The project will also involve collaboration between DTU, Utrecht University, Aberdeen University and Twente University. An external research stay
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agent-based simulation framework and apply and calibrate them for the Greater Copenhagen Area. You will develop, apply and test agent-based mobility simulation frameworks for assessing new mobility
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. DTU Space is involved in the full life cycle of space activities, including concept and design, construction and proto-typing, calibration and validation, implementation and operations, data analysis