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hybrid systems—covering RF generation, transmission lines, and launchers. Conducting plasma experiments on tokamaks, stellarators, and linear devices, with a focus on heating mechanisms and the development
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the controlled flow at tunable temperature and photopolymerization of the precursor. The practical work will be complemented by fluid mechanics computer simulations, including solutions employing machine learning
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integration and plasticity at spinal nociceptive synapses, with particular emphasis on sex-specific mechanisms and glial adaptations that may influence the transition from acute to chronic pain, as well as its
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or advanced micro/nanofabrication methods. Solid understanding and background in condensed matter physics, quantum mechanics, or nanoscale materials science. Hands-on laboratory experience with characterization
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to cancer, metabolic disorders, and infections. As part of this position, you will have the opportunity to contribute to cutting-edge research aimed at understanding microbiome-driven mechanisms and
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The position is funded for 3 years (65% TV-L E13), starting on January 1st, 2026, within the framework of the TTU HIV program of the German Center for Infection Research (DZIF). Project Description: Although
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the relevant union. The position is part of DTU’s Tenure Track program. Read more about the program and the recruitment process here . You can read more about career paths at DTU here . Further information
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. The aim of the project is to gain deeper insights into the molecular mechanisms, in order to evaluate the efficacy of newly developed skincare products. She/he will more particularly carry out research and
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opportunity to contribute to cutting-edge research aimed at understanding microbiome-driven mechanisms and developing novel strategies for disease prevention and treatment. You will collaborate with renowned
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resume with professional and technical skills, and exploring the scientific and cultural diversity in Europe and North America? The graduate training program in Scalable 2D-Materials Architectures (2D