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Description TUD Dresden University of Technology, as a University of Excellence, is one of the leading and most dynamic research institutions in Germany. Founded in 1828, today it is a globally
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on a full-time, contractual basis, with sufficient additional funding for fieldwork. The workplace is Halle (Saale), a dynamic, historical town in central Germany (Sachsen-Anhalt) that is home to
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a dynamic, growing team in the field of enzyme and protein design Collaborate in the context of a prestigious DFG Priority Programme (SPP2363) Enjoy a vibrant scientific environment at the Weinberg
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holography, combined with ultra-fast laser excitation and ultra-short electron pulses, to monitor carrier dynamics. The goal is to identify and map regions of high quantum efficiency as well as recombination
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Your Job: Maintain, and update quantitative methods for assessing economic impacts of the energy transition at the national and regional levels Develop dynamic and multisectoral economic models
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and complexity theory, and in the chaotic dynamics of quantum many-body systems. Moreover, a breakthrough result in 2024 shows that random unitaries can often be constructed by short-depth quantum
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experience in the extraction of natural compounds from complex matrices knowledge of the isolation and structural elucidation of natural products experience in the statistical analysis of research results
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international research environment covering a wide variety of research areas, such as algorithms and data structures, machine learning, computer graphics and vision, database systems, artificial intelligence
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: religious meaning-making in language use Cosmic Interacting Matters From Atoms to Turbine Blades Symplectic Structures in Geometry, Algebra and Dynamics Bulk Reaction – reacting and moving granular assemblies
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time-scales: ab initio methods for the description of reaction processes, for the determination of electrochemical stabilities and for the optimisation of force fields; molecular dynamics simulations