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integrates state-of-the-art synthetic biology with advanced nanotechnology, and electrogenetic interfaces to engineer human cells for next generation bioelectronic medicine, designing programmable cells
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cellular activities, we design programmable cellular implants and devices for therapeutic applications. By integrating fundamental discoveries with translational development, we aim to shape the future
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chemical structures that interface with and actuate cellular activities, we design programmable cellular implants and devices for therapeutic applications. By integrating fundamental discoveries with
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-of-the-art synthetic biology with advanced nanotechnology, and electrogenetic interfaces to engineer human cells for next generation bioelectronic medicine, designing programmable cells that respond
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on the design of AI-based surrogates of large-scale energy system models and will be integrated in the activities of the Nexus-e group with close links to the ETH AI Center and the Reliability and Risk
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and experiments with tracers in atmosphere-ocean general circulation experiments. Job description As a PhD student, you will plan, generate, and interpret new research data; you will present data
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to apply Website https://academicpositions.com/ad/eth-zurich/2026/doctoral-position-innovation-e… Requirements Research FieldEconomicsYears of Research Experience1 - 4 Research FieldEconomicsYears
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and focused design to leverage their unique properties, with the knee as the example case. You will gain the necessary interdisciplinary skills demanded by industry and academia to deliver timely and
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to have an MA degree or equivalent in a field related to your research before the beginning of your employment You must design and manage your own research under the guidance of your supervisors You must be
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poorly understood. This PhD project addresses that gap. Sitting at the intersection of clinical simulation, multimodal AI, and human factors research, the successful candidate will design high-fidelity ICU