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. We are looking for a skilled and motivated Computational Engineer to work on the development of numerical gyro-fluid edge turbulence models targeting magnetic confinement fusion devices. Our section
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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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to improve energy flexibility in our pilot cases Development of building simulation models supporting energy and indoor climate optimization Analysis of building performance data for occupancy detection and
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background in Intelligence, Security, or a similar degree with an academic level equivalent to a two-year master's degree and with an interest (and ideally some experience) in Agent-based Modelling, Simulation
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Computing at DTU Compute, and the Danish Glaucoma Association. The project, called "Project FOREVER: Application of deep learning models for better glaucoma detection in practice” is a subset of the ongoing
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for planning and executing experiments in climate chambers and in buildings. You will be responsible for carrying out dynamic building simulation models. You will be responsible for disseminating research
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cooling one and validation against the experimental data collected in the Thermal laboratory; (ii) Use of the validated simulation model for implementing a suitable control algorithm for ejector-equipped
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the coastal region are largely unknown. SHORE aims to bridge this knowledge and competence gap and develop the first model capable of accurately simulating both on and offshore transport of sediments and
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Responsibilities Perform metabolic modelling to simulate strain behavior and propose engineering strategies. Design biological parts for both low- and high-throughput strain construction. Analyze internal and public
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the development of a Virtual Training Environment (VTE) for disaster response simulation, integration of Building Information Modelling (BIM) with Structural Health Monitoring (SHM) using smart sensor networks, and