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cells (https://doi.org/10.1038/s41579-025-01256-w ). Subcellular localization of T6SS assembly and timing of its firing is tightly regulated in various bacteria: Despite these breakthroughs, we still lack
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Your position You will work on the development of a nanopore-based platform for single-molecule analysis of nanoclusters. Your research will include: • Establishing nanopore assays for detecting and
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viscoelasticity as a function of cytoskeletal tension, guiding cell growth. Your profile We are looking for a highly self-driven candidate with a hands-on work attitude who is interested in pursuing
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We offer you Interdisciplinary work in a highly collaborative environment A unique environment combining state-of-the-art ultrafast experiments at University of Applied Sci-ences and Arts
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. Empa is a research institution of the ETH Domain. You will work on a research project in the field of novel dielectric elastic materials. The emphasis will be on synthesizing specially designed polymers
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only to delve into modern nanofabrication and cutting edge material science, but also to actively engage in fundamental physics and quantum technology topics, in the uniquely collaborative effort to go
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part of an SNSF Ambizione grant led by Dr. Livius F. Muff, hosted in the group of Dr. Luciano Boesel at Empa. The work will primarily be carried out at Empa St.Gallen under the direct supervision of Dr
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. Combining expertise in nanomaterials, colloid and analytical science, cellular biology and bioengineering, we investigate how nanoparticle structure and composition influence biological function. A particular
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, located on the border where Switzerland, Germany, and France meet. Basel is home to numerous biomedical research institutions, offering outstanding opportunities for training, networking, and career
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We offer you Thrive in an inspiring, international research environment with cutting-edge infrastructure, where your work will directly impact the future of quantum technologies. Get involved in all