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and public authorities. Our research aims at strengthening welfare, productivity and sustainability within society. A key element is the role of technology and its interaction with industry and
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modelling Your specific work will involve modelling and validation of the static and dynamic response of complex wind turbine structures (e.g. wind turbine blades). As part of your work, you will be modelling
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-mechanical analyses, supporting isotope-yield target requirements, and contributing to regulatory interactions and technical dossiers. You will also take part in planning and documenting de-risking tests
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reaction evolution mechanisms for magnesium-based binders, leveraging state-of-the-art experimentation and numerical modelling tools. This position is part of the prestigious Villum Synergy project
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for load assessment and wind turbine control and ultimately achieve load reduction for wind turbine structures and main components. Your primary responsibilities will include: Develop, implement and validate
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Job Description We invite applications for a 3 year postdoctoral position to study ice sheet dynamics using remote sensing data. The postdoctoral position is a part of The Center for Ice-Sheet and
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of digital chemical production? Then join DTU Chemical Engineering’s digitalization initiative and be part of building the next generation of smart, semantically linked research infrastructure. The job Over
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qualification, you must hold a PhD degree (or equivalent). We offer The position offers a unique possibility of being part of an interdisciplinary research team working on building foundational knowledge linking
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also be responsible for further developing source attribution models based on metagenomic data. Finally, as part of the capacity building activities in the project, you will contribute to the training
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will be to: Model the optical, mechanical and optoelectronic properties of the fibers using ray tracing and finite element method models; Select and characterize soft materials for the fibers, and use