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infrastructure is needed? What is a cost-effective design for this infrastructure and what framework conditions need to be created? To answer these questions, you will perform the following tasks: Identifying
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in shaping the change! We offer ideal conditions for you to complete your doctoral degree: Excellent environment to perform high-quality research and to implement own ideas in the development process
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high-resolution electron microscopes. Perform and advance image analysis to determine high-resolution cryo-EM structures of ice-embedded test specimens and in situ cellular samples. Employ advanced
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, especially under extreme weather conditions. High-resolution subsoil characterization using electromagnetic induction (EMI), electrical resistivity tomography (ERT), and ground penetrating radar (GPR) will be
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for an ideal balance between stability, performance and price Building a test station for evaluation of electrochemical performance in short stack Physical, spectroscopic, and electrochemical characterization
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Your Job: Random unitaries are a ubiquitous tool in quantum information and quantum computing, with applications in the characterization of quantum hardware, quantum algorithms, quantum cryptography
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fundamentals of chemical reaction engineering Construct and operate continuous experimental plants Use state of the art techniques to investigate the functioning of applied catalysts Develop analytical
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Good knowledge of AI and applied Machine Learning Hands-on experience with High Performance Computing Systems Basic knowledge of System Architecture of Supercomputers and NVidia-GPUs Practical experience
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supply system for providing electricity (and heat/cooling) for the DAC plant Detailed model for DAC operation with respect to fluctuating energy supply and climatic conditions Model for assessing
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-electrolysis). High-temperature electrolyzers (SOE; solid oxide electrolyzers) are one of the electrolyzer technologies. SOEs are based on ceramic cells, which today are produced using typical ceramic