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molecular beam epitaxy (H-MBE). These materials are vital across multiple industrial sectors, including catalysis, electronics, energy storage, and optical technologies, due to their versatile and valuable
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simulation. Description of the PhD topic (subproject B7 - New methods for multimodal microscopic simulation of street users’ behavior in shared space contexts): This PhD project will develop and implement
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opportunities within ScaDS.AI. Tasks: foundational and applied research in LLMs for traffic engineering, with particular focus on mobility knowledge benchmarking, simulation of human mobility behavior, simulation
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Max Planck Institute for Intelligent Systems, Stuttgart site, Stuttgart | Stuttgart, Baden W rttemberg | Germany | 4 days ago
project Swarm robotics, multi-robot systems, active matter, programmable matter, and jamming-based systems all explore distributed robotic systems: robots composed of multiple bodies rather than single
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simulations, and hardware prototyping. The doctoral project focuses on developing novel concepts for VCO-based detectors for EPR imaging, implementing and testing hardware prototypes, and performing advanced
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, modelling and simulation of photonic systems, sensor systems, signal processing and device manufacturing, development of machine learning algorithms, and design of optical communication networks or power
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expertise and supervision of experienced researchers from multiple institutes at Forschungszentrum Jülich. As one of Europe’s largest and most multidisciplinary research centers, Forschungszentrum Jülich
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Max Planck Institute for Astronomy, Heidelberg | Heidelberg, Baden W rttemberg | Germany | 19 days ago
Job Code: 396 Job Offer from September 08, 2025 We invite applications for multiple postdoctoral fellowships at the Max Planck Institute for Astronomy in Heidelberg, Germany including independent
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Description The Research Training Group (in German: Graduiertenkolleg, GRK) RTG2670 “Beyond Amphiphilicity: Self-Organization of Soft Matter Via Multiple Noncovalent Interactions” in the second
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Via Multiple Noncovalent Interactions” in the second funding phase at the Martin Luther University Halle-Wittenberg will start with a highly interdisciplinary and ambitious research program in November