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cutting-edge technologies to dissect these interactions: high-density microelectrode arrays (HD-MEAs) for large-scale electrophysiology, spatial transcriptomic methods, and human iPSC-derived neuronal
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Tethys Robotics develops innovative underwater robotic solutions for inspection & investigation operations in challenging conditions. We serve clients such as large asset operators and industrial
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on our work and constantly improve it. We believe that the world can be improved with open data. Project background As part of our Open Science team, you will support us in developing efficient data
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scientific and engineering workloads are no longer just large; they are complex, data-intensive, and highly diverse, meaning they push existing infrastructure to its limits. This position is funded via
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based on fluorescence mediated by biosensors or (bio)chemicals Characterization of assay performance using lead strains Execution of large-scale screening campaigns with up to 1E6 variant strains Co
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that can are large and expensive, precluding their use in LMICs. They are also overly reliant on sputum samples, which can be difficult to obtain, particularly in low-resource settings. In this project, we
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, typically based on fluorescence mediated by biosensors or (bio)chemicals Characterization of assay performance using lead strains Execution of large-scale screening campaigns with up to 1E6 variant strains Co
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clinical trials before large scale application in humans. You will be working with a leading research team on Microalgae and Plant-based Foods in Human Nutrition and Health with strong support from both ETH
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CAD packages (Autodesk Revit, Archicad and cadwork3d) and work in a multi-disciplinary team of software engineers, architects, computer scientists Your projects will include multi-disciplinary
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the research platform, support interdisciplinary projects that integrate multiple data sources, and use high-performance computing resources to manage, process, and analyse large environmental datasets. Job