172 high-performance-quantum-computing-"https:"-"https:"-"https:"-"https:"-"https:" positions at ETH Zurich
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is to build efficient and robust computational tools for analyzing complex engineering systems. Applications include structural dynamics and other dynamical systems relevant to real-world engineering
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, Biostatistics, Software Engineering, Systems Operations, and Screening & Lab Automation. Embedded in this multi-disciplinary environment, the Clinical Bioinformatics group translates computational biology into
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focusing on the physical realization of a next-generation high-speed AFM system tailored for biological research. Job description The Lead Mechatronics Engineer is responsible for the physical realization
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now be adopted for secretion recombinantly synthesized proteins for the first time. Job description The PhD-Student will perform the following tasks: Development of high throughput assays, typically
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close collaboration with experimental and clinical partners, and we are embedded in one of the strongest AI and computer science environments worldwide. Learn more about our research and recent work
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to the research group’s teaching responsibilities, which involves teaching courses for ETH’s teacher training program in German. Further, the candidate should be prepared to co-mentor PhD students and to mentor
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transfer, developing and employing laboratory experiments, computer simulations, and field analyses. Our aim is to gain fundamental insights and to develop sustainable technologies that address societal
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now be adopted for secretion recombinantly synthesized proteins for the first time. Job description The postdoctoral fellow will perform the following tasks: Development of high throughput assays
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In this role, you will support the establishment and day-to-day operation of the ETH Swiss GeoLab. A key focus lies in providing high-level administrative and executive support, including managing
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microorganisms can be used to produce high-performance biopolymers. The scalability and non-seasonality of this process will enable the sustainable manufacturing of biopolymer filaments, films and 3D structures