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large part of the medical degree programme. Academic staff contribute to the teaching. English is the preferred language in the laboratory, at meetings and at seminars. The department employs approx. 500
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Postdoctoral position in structural and biophysical analysis of plant hormone transporters within...
to investigate the molecular mechanisms of plant hormone transport. The position offers the opportunity to work within an international, interdisciplinary environment, combining structural biology, biophysics, and
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topological phases and hysteresis-driven memory mechanisms. You will work closely with experimental and theoretical physicists and material scientists at DTU Physics, DTU Energy as well as our collaborators
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is part of an interdisciplinary project funded by the Human Frontiers Science Program (www.hfsp.org) and involves collaboration with researchers from biology and mechanical engineering from the UK
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Temporary Job Status Full-time Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer
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international quality. In your daily work, you will work closely with an interdisciplinary team of scientists and clinicians, combining cutting-edge computational approaches with experimental validation. Your
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the wider scientific community Formal qualifications You must hold a PhD degree in chemical engineering, computer science, software engineering, data science, or a related discipline. We offer DTU is a
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Development and Demonstration Programme. The position is affiliated with the Section for Mechanical Technology and will be under the supervision of Associate Professor Jonas Sundberg. The project focuses
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Biomedicine, Technical University of Denmark. You will work on regulatory mechanisms of cell signalling downstream of Receptor Tyrosine Kinases using mammalian cells grown in 3D cell cultures and will develop
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and Biomedicine, Technical University of Denmark. You will work on regulatory mechanisms of cell signalling downstream of Receptor Tyrosine Kinases using mammalian cells grown in 3D cell cultures and