85 computer-programmer-"https:" "https:" "UNIS" "https:" "https:" "https:" "https:" "Dr" research jobs at Technical University of Denmark in Denmark
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collaborative interactions with both other experimentalists as well as computational chemists in working with catalysts and understanding the phenomena related to electrolysis. The work will take
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, particularly with diagnostic development. Familiarity with fusion devices (tokamaks/stellarators). Knowledge of signal processing techniques for high-bandwidth data. Experience with computational modeling (e.g
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Engineering & Structural Biology at https://www.biosustain.dtu.dk/research/research-areas/natural-products/enzyme-engineering-and-structural-biology If you are applying from abroad, you may find useful
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obtained from Senior Researcher Bjarke Eltard Larsen , https://orbit.dtu.dk/en/persons/bjarke-eltard-larsen . You can read more about Department of Civil and Mechanical Engineering at www.construct.dtu.dk
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, under the supervision of Dr. Elena Papaleo. The project will involve analyses of variants effects at the protein level using a structure-based framework developed by the group. Responsibilities and
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approaches are transforming how next-generation biologics are discovered and engineered. We are launching an ambitious research program centered on AI-driven generative protein design to develop GPCR-targeting
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interaction, contact-rich manipulation, and force-aware behaviors Integrate robotic manipulators with mobile bases, perception systems, and onboard sensors Program and deploy robotic systems for experimental
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Job Description We are looking for two highly skilled and motivated scientists for our program within carbohydrate chemistry, glycobiology, and vaccine design. You will join the team working
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(DTU) welcomes aspiring candidates to expand the field of two-state water thermodynamics. This PostDoc project is funded by the Villum Experiment Programme “Can the two-state theory of water
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qualifications In this project, we advance an AI-driven T cell-targeting strategy based on de novo-designed peptide-MHC (pMHC) binding proteins. Using computational protein design, we create synthetic recognition