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- PhD student in quantitative verification interested in co-developing Automata Tutor - main developer of Automata Tutor Positions in the Formal Methods for Software Reliability group of TU Munich led by
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project led by the MDC/Helmholtz Imaging, GEOMAR, Hereon and FZJ, fully committed to Open Science. We are looking for a PhD student or Postdoc or Research Software Engineer to join our highly vibrant and
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04.04.2025, Wissenschaftliches Personal The Chair for Computer Architecture and Parallel Systems (CAPS) offers this position as part of the DARE-project funded by the EuroHPC JU bringing together
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`s degree and PhD in quantum physics, computer science, electrical engineering, mathematics or a related field Experience in quantum computer programming Experience in applying numerical methods and
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Your Job: In this position, you will be an active part of our AI Consulting Team. Together with our partners, we develop new and innovative applications of Machine Learning. You will connect
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. The exact starting date is flexible. Applicants should have completed their doctoral degree; however, candidates expecting to finish their PhD in 2025 can also apply. For general inquiries about the position
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Max Planck Institute for Demographic Research (MPIDR) | Rostock, Mecklenburg Vorpommern | Germany | about 1 month ago
; however, candidates expecting to finish their PhD in 2025 can also apply. For general inquiries about the position, the Center, and the topics it covers please contact Christian Dudel at dudel
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Max Planck Institute for Demographic Research, Rostock | Rostock, Mecklenburg Vorpommern | Germany | 2 months ago
flexible. Applicants should have completed their doctoral degree; however, candidates expecting to finish their PhD in 2025 can also apply. For general inquiries about the position, the Center, and the
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. Your profile You hold a PhD in computer science, biomedical engineering, applied mathematics, medical physics, or a related field. You have a proven track record of publications in top-tier journals (e.g
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electron, which would make this approach very promising for scaling up semiconductor spin qubit devices. This position focuses on experimentally demonstrating coherent spin shuttling, shuttling-compatible