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of candidate sensor architectures. Design and fabricate sensor prototypes, including their mechanical integration, shielding, connections and readout interfaces. Develop experimental methods to determine
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team working at the interface of computer science, mathematics, and biology in the Biosystems Data Analysis group at the Swammerdam Institute for Life Sciences at the University of Amsterdam. We welcome
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economy. Thermal interfaces at cryogenic conditions: Many advanced technologies — like quantum computers, powerful microscopes, and chip-making tools — require extreme cooling. However, the optimal design
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at the interface of preclinical research, academic leukodystrophy expertise and patient-oriented therapy development. Your work will include: Performing longitudinal natural-history studies in
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and limitations of candidate sensor architectures. Design and fabricate sensor prototypes, including their mechanical integration, shielding, connections and readout interfaces. Develop experimental
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, publish the results and collaborate closely with the supervisory team and colleagues. This is what we ask of you You enjoy experimental research and want to work at the interface of physical chemistry
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of tramp elements to precipitates, inclusions, interfaces, voids and dislocations. Investigate the influence of hydrogen on deformation behaviour and ductility through in-situ hydrogen mechanical testing
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dynamics (MD) simulations capable of probing hydrogen diffusion and trapping at interfaces in the presence of tramp elements with near-DFT accuracy Collaborate closely with a broad team of researchers from
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, you will: Perform advanced 3D microstructural characterization of circular steels, focusing on segregation of tramp elements to precipitates, inclusions, interfaces, voids and dislocations. Investigate
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interfaces to share intermediate data for distributed training and processing, generating large traffic flows. Low and deterministic latency will be required for specific application in data centre for AI