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without invasive surgery. Project background We develop advanced focused ultrasound technologies, adaptive closed-loop control algorithms, and ultrasound-responsive micro/nano therapeutic carriers as an
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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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regulatory principles. We work on regularization, training on time-resolved perturbation and lineage-tracing data, and multi-modal readouts to constrain these models toward biological mechanisms
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trilobite morphologies, and their impact on dispersal in the Cambrian and Ordovician oceans. The PhD student will: (1) Work with the PI in developing comprehensive computational and experimental fluid
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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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promising candidates for this goal, combining fast electrical control, compact device geometry, and excellent performance in a semiconductor platform. As this technology advances, one of the main remaining
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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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, or a related discipline • Previous experience with T cells, primary human cells, flow cytometry, molecular cloning, or functional cellular assays is considered an advantage • Strong motivation to work
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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