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optimization of electrolysis from the cell to the stack requires automated monitoring, analysis, and control of the operating parameters and processes. As part of this project, high-throughput experimental
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Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr | M lheim an der Ruhr, Nordrhein Westfalen | Germany | 3 days ago
topology on electrochemical activity in energy conversion reactions” under the project leadership of Dr. Viktor Čolić. The project primarily aims to utilize electrochemical methods coupled with surface
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Max Planck Institute of Microstructure Physics, Halle (Saale) | Halle, Sachsen Anhalt | Germany | 2 months ago
, and band topology shape electronic states, spin and orbital transport, and emergent functionalities in quantum materials. The successful candidate will use theoretical and computational approaches
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experiments, supported by close collaboration with theoretical researchers. This postdoctoral position focuses on exploring emergent states and properties of quantum and topological magnets through experimental
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for joint events. What we expect A solid background in at least one of the areas essential for the CRC, e.g., higher category theory, algebraic/arithmetic geometry, homotopy theory, geometric topology
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the fabrication process Your Role: Develop & test acoustic metamaterial concepts for Megahertz frequencies Conduct numerical simulations of sound fields at the unit cell and device level Optimize geometries
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embryos, including single-cell measurements of chromatin accessibility, promoter activity, histone modifications, and chromatin topology. Job Description During your daily work, you will: develop sequence
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FDSOI devices for neuromorphic computing applications Develop and optimize semiconductor fabrication processes in a state-of-the-art cleanroom environment Perform electrical characterization and analyze
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of acaricides, and in vitro models to investigate the transmission of tick-borne pathogens. Job description: Independently conduct a research project focused on the development and optimization of artificial tick
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of energy materials Develop and optimize advanced X-ray optical concepts with emphasis on maximizing photon flux, transmission, stability, beam quality, and experimental flexibility Design next-generation