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and components with high surface quality requirements. Despite the trends towards increasing automation and higher productivity, the polishing of complex geometries is still normally performed manually
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willing to embark on a research project in this area. This 3-year PhD scholarship at DTU is part of a collaborative project with NTNU at the Trondheim campus. Researchers from two Departments at DTU (DTU
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on damage tolerance of composite aircraft structures, where disbanding between the face sheet and core of sandwich components is a critical damage mode. The Researcher position will initially be funded by
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quantum light sources coupled to quantum memories. Quantum memories are key components of optical quantum computers and scalable quantum networks: They are responsible for the central tasks of storing and
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communication skills and a curiosity to understand the needs of researchers, as well as the motivation to explore and find solutions. You will be part of our Data Management Department, where we work hard to
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Job Description In this position, you will be part of the absolute forefront in the development of intelligent solutions for positive energy districts, including machine learning/AI methods
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sunlight, air and water. Electrodes are a central component of the novel bioelectrochemical platforms for energy harvesting and microbial electrosynthesis. Optimal design of the 3D geometry and material
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successful, it will contribute to environmentally responsible shutdown of oil & gas operations in the North Sea. As part of the project, you will develop as a researcher and deepen your technical skills
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circuits in thin-film lithium niobate (TFLN) [Zhu2021] and tantalate (TFLT) [Powell2024]. Using the ultrafast Pockels effect in TFLN/TFLT, you will build high-speed cavity-based components [Larocque2024
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, including electrical engineering, control theory, industrial engineering, electronics engineering, energy policy, data science, and applied mathematics. As part of the Alliance program, your project will be