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field of bioinorganic spectroscopy, with a particular emphasis on electron paramagnetic resonance (EPR) spectroscopy. This position is part of a newly established research group (2025) in the Department
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to the understanding of climate change and its consequences. The climate effect and the ability of mixed-phase clouds to form precipitation is strongly dependent on the presence of ice crystals. Observations show that
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Your Job: This PhD thesis aims to quantitatively study the initial stages of light conversion into electrical signals in Si-based photovoltaic devices. The research will employ off-axis electron
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computer vision in dusty conditions by incorporating hyperspectral cameras. In addition, assisting in project applications and general development duties of the Chair. The position is available from
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studies and long-term observations contribute significantly to the understanding of climate change and its effects. A central aspect of cloud and climate research is the investigation of the ability
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intervention development and testing Experience in conducting research Fluency in English (written and spoken) Excellent communication skills and empathy, especially when dealing with patients Ability to work
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The TRR404 "Next Generation Electronics With Active Devices in Three Dimensions [Active-3D]" is a Collaborative Research Center/Transregio between TUD Dresden University of Technology and Rheinisch
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). Fluency in, and willingness to work on, one of the languages of the project (preferably, French) is expected. Familiarity with corpus and experimental methods would be welcome but is not required. Ability
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applications ranging from Computational Physics, Computational Finance to Computational Electronics. For more details see https://acm.uni-wuppertal.de/en/ . A successful applicant is expected to have a
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Description The TRR404 “Next Generation Electronics With Active Devices in Three Dimensions [Active-3D]” is a Collaborative Research Center/Transregio between TUD Dresden University of Technology