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dynamics, working at the interface of cell biology, biochemistry and biophysics to tackle cutting edge problems in their field. Example research areas include the spatial, temporal and biophysical
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materials collectively determine their macroscopic interface response. The work will connect cell-scale mechanics with concepts from multiscale/rough-surface contact mechanics to develop effective
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connections all over the world, we work together to develop solutions for the global challenges of today and tomorrow. Where to apply Website https://academicpositions.com/ad/eth-zurich/2026/doctoral-position
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research group focused on understanding the pathophysiology of arthritis. Our work integrates in vitro models across diverse cell types and in vivo models of joint injury and inflammatory arthritis
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peptides and nanobodies using diagnostic and therapeutic radionuclides. Perform quality control and analytical characterization of newly developed radiopharmaceuticals. Conduct cell-based binding, uptake
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in mountainous areas. The project is focussed on collecting and analyzing a unique field data se t collected using sensors originally developed for mobile robotics applications. Job description
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political support for railway funding. This ETH Mobility Initiative project addresses these gaps by developing quantitative support for fact-based decision-making in railway infrastructure management
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lead the development of a cross-platform mobile application for delivering and monitoring these interventions, including deployment and management of the associated backend infrastructure. The PhD
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/ ) includes the development of: (i) rational design of dynamic polymer networks; (ii) (bio)material processing; (iii) organ perfusion and regeneration; (iv) tools to study mechanobiology and cell–matrix
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-invasive targeted drug delivery to the brain. Our laboratory recently developed a novel focused ultrasound-mediated targeted drug delivery platform, published in Nature Communications (https://www.nature.com