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to ETH's central compute and the Alps supercomputer at CSCS A multidisciplinary team of mechanical engineers, materials scientists, biologists, and machine learning researchers, embedded in the broader
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tactile skins, and a dedicated GPU cluster with eight NVIDIA H200 GPUs alongside access to ETH's central compute and the Alps supercomputer at CSCS A multidisciplinary team of mechanical engineers
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in transport sciences, management/ decision sciences, applied mathematics, econometrics, statistics, computer science, physics or related fields. Your research track is consistent and shows a track
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, computer science, physics or related fields. Your research track is consistent and shows a track record, or clear potential, for analysing, modelling, control, and optimisation of transport systems. You are highly
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100%, Zurich, fixed-term The Molecular Engineering Thermodynamics (MET) group at ETH Zurich is looking for a doctoral student to develop and improve computational tools for the molecular scale
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analysis methods and high-performance computing to develop solutions for specific societal and economic challenges. Located at the D4 Business Village in Root, close to Lucerne, ETH Swiss GeoLab works at
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an international, vibrant, and intellectually stimulating work environment. The head of the group also serves as Co-Chair of Design++, the ETH Center for Augmented Computational Design in Architecture, Engineering
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analysis methods and high-performance computing to develop solutions for specific societal and economic challenges. Located at the D4 Business Village in Root, close to Lucerne, ETH Swiss GeoLab works at
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10%, Zurich, fixed-term The position is offered in the Biocommunication Group at ETH Zürich, led by Professor Consuelo De Moraes. Our group investigates insect-host interactions using behavioral, chemical, and molecular approaches. We are looking for a motivated student to assist with rearing...
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computational screening and process modelling The overarching goal is to connect atomic-scale mechanisms directly to their separation performance and to derive rational design principles for improved materials