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The Process and Systems Engineering Center (PROSYS) at the Department of Chemical and Biochemical Engineering, Technical University of Denmark (DTU), is seeking a highly motivated researcher to
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PhD fellowship at the Copenhagen Center for Glycocalyx Research at the Department of Cellular and Mo
and Molecular Medicine (ICMM) Information on the department can be found at: https://icmm.ku.dk/english/ The position We are seeking a highly motivated and enthusiastic PhD student with backgrounds in
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PhD Scholarships in Piezophotoacoustic Technology for Minimally Invasive Endoscopy - DTU Health Tech
a PhD at DTU. Application procedure Your complete online application must be submitted no later than 15 October 2025 (23:59 Danish time). Apply online here: PhD Scholarships in Piezophotoacoustic
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-edge interdisciplinary project aims to understand charge transport in the natural mineral feldspar, unlocking new ways of measuring the rates of Earth surface processes — from weathering and erosion
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humans English language skills Place of employment The place of employment is at the Section for molecular ecology and evolution, Øster Farimagsgade 5, 1350 Copenhagen K. We offer creative and stimulating
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and operation of plasma devices—such as tokamaks and linear plasma systems—is also essential. In this role, you will lead plasma heating experimental research at DTU using RF and microwave technologies
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working languages: Danish and English. You are expected to be fluent in at least one of these languages, and in time are expected to master both. As formal qualification you must hold a PhD degree (or
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Senior Researcher in Synthetic Biology and Metabolic Engineering of power-to-X utilizing Microorg...
processes or improving existing ones. Demonstrated ability to develop and lead ambitious research projects. Proven success in competitive external funding acquisition. Excellent communication skills and the
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-high-resolution lithographic processes: You will explore and refine unconventional electron-beam resists (e.g., HSQ, metal fluorides, alkali halides) to reliably achieve robust pitches below 15 nm