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. This methodology will be used towards the synthesis of novel oligosaccharide-based macrocycles, foldamers, receptors and mechanically-interlocked molecules. Your work could include: the design, organic synthesis and
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, consisting of (a) remanufacturing processes, (b) take-back systems, (c) design for disassembly and circularity, (d) business models, and (e) sustainability and circularity assessment. The project will analyse
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of the IML group within prediction of T cell immunogenicity and immunoinformatics in general. You will work with nearby bioinformatics, postdocs and PhD students working on other projects within the group and
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). The successful candidate will contribute to the Nudge2Green research project, applying software development and AI methods to design digital nudging tools that promote sustainable consumer behavior in food choices
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workshop and laboratory facilities, where research and innovation are carried out in direct collaboration with industry to a great extent. The position is offered in relation to the research group Power
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the competences of the IML group within prediction of T cell immunogenicity and immunoinformatics in general. You will work with nearby bioinformatics, postdocs and PhD students working on other projects within
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the Electronics group at DTU Electro. We are offering a 2-year fully funded Postdoc position, supported by the Innovation Fund Denmark (IFD) Grand Solution “GreenMag” project. The GreenMag project aims
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research environment with 2 postdoctoral fellows, 9 PhD students, 5-6 research year students and 4-7 master’s students. We are located next to the department of dermatology’s outpatient clinic and take
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positive and supportive team environment. You prefer to stay organized and take pride in completing your tasks in a thoughtful and structured way. As a formal qualification, you must hold a PhD degree (or
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Two year postdoc position at Aarhus University for single molecule FRET based investigations of l...
and its substrate, the 195 kDa protein complement C5. A series of unpublished cryo-EM structures representing intermediates along the reaction path are available to support rational design of