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of Buildings . Responsibilities and qualifications The project's primary objective is to enhance the energy flexibility of buildings by employing advanced data-driven energy management techniques. A few
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senior staff and Bachelor/Master/PhD students that is trying to establish the indispensable building blocks for the quantum technology of tomorrow. Responsibilities You overall focus will be to develop
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commercialized by a DTU spin-out (Spectroinlets) - but we have to move beyond what we already have in order to enable automated detection of non-volatile products. This will be your main objective. In parallel
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, while avoiding humidity and gas exposure related robustness issues. You must have a two-year master's degree (120 ECTS points) or a similar degree with an academic level equivalent to a two-year master's
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of Buildings . Responsibilities and qualifications The project's primary objective is to enhance the energy flexibility of buildings by employing advanced data-driven energy management techniques. A few
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. During the project, you are expected to supervise Bachelor and Master students, work in tandem with colleagues and coordinate with collaboration partners, therefore we expect a high degree of project
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– set up and alignment Numerical modelling Scientific software development Geochronology You should possess strong communication and academic writing skills in English. You must have a two-year master's
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Job Description You will join a supportive and dynamic research team working at the intersection of machine learning and operations research. Your main task will be to design and implement ML
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working with “DTU Smart Road,” a full-scale pavement research platform at DTU’s main campus that hosts embedded strain and temperature sensors. Experiments will also involve the development and installation
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market frameworks and business models for fair value distribution will be analysed. Responsibilities and qualifications Your primary research tasks will include: Develop and simulate coordinated control