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heating networks in combination with heat pumps. To design and operate these systems effectively, advanced simulation tools are essential for analyzing their thermal and hydraulic performance. In
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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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operation of an integrated pulp and paper plant. The model will combine various technological components and demand response. The aim is to minimize costs and global warming impact, thereby improving both
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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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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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to PANDA in the recent years, with the needs of being commissioned and the request of implementating modern data collection and analysis tools. Furthermore we support to perform own high profile research in
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genomic approaches Application of the modeling approaches in relevant downstream tasks Co-development of high-performance computing AI training codes for the first European Exascale Supercomputer JUPITER
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laboratory with two millikelvin scanning probe microscopes in ultra-high vacuum with adiabatic demagnetization refrigeration (Rev. Sci. Instrum. 92, 063701, (2021)). The millikelvin systems reach temperatures
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performance and degradation of electrolysis in dependence on different operating modes Your Profile: Completed Master’s degree in chemical engineering, computational engineering, computational mathematics, data
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simulation studies (LTspice and Cadence Spectre) perform algorithm-circuit co-design, quantifying performance and benchmarking with competing approaches support printed circuit board design and tape-out