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experiments. About the Project Our group has pioneered the development of the Nanopore Electro-Osmotic Trap (NEOtrap), a groundbreaking technique that enables label-free trapping and sensing of single proteins
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position at the Chair of Strategic Management and Innovation (SMI), ETH Zurich. This position is associated with the SNSF-funded research project focusing on the role of artificial intelligence in strategy
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. Empa is a research institution of the ETH Domain. Our Laboratory for High Performance Ceramics in Dübendorf, near Zürich, is looking for a PhD Student within a project funded by the Swiss National
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DyeCycling to map protein energy landscapes in unprecedented detail, thereby gaining access to previously overlooked effects, like dynamic disorder, with far-ranging consequences for the design and functional
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: we seek lively and inquiring minds with a heightened sense of curiosity to take part in projects of advanced development work, in a broad range of applied sciences and engineering fields. Marie
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trapping and analysis using state-of-the-art nanopore experiments. About the Project Our group has pioneered the development of the Nanopore Electro-Osmotic Trap (NEOtrap), a groundbreaking technique that
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to the nanometer scale. Project background Chirality describes whether an object is non-superimposable with its mirror image. Despite being a purely geometric property, chirality plays a crucial role in all living
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this project, funded by the Swiss Federal Office for the Environment (FOEN), the occurrence of PFASs in ambient air will be investigated. Sampling a broad range of PFASs simultaneously is challenging, as is
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of labeled phospho-tyrosine. Your tasks will encompass utilization of state-of-the-art bionformatic tools for protein design, perform high-throughput cell uptake tests, perform selection assays and express
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. Project background The position is associated to a project on phase-field modeling of fracture. The PhD project aims at developing cutting edge models for the fracture behavior of quasi-brittle materials