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Field
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data collection and analysis, including neuroimaging or behavioral data•Languages: Dutch is strongly preferred, as the project involves extensive interaction with Dutch-speaking participants; English
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develops LLMs and agentic AI systems for scientific discovery, engineering and physical systems. We investigate how AI can reason about scientific problems, interact with simulation software and support the
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exceptional optical activity, for strong and predictable enantioselective interactions with nanoscale biological entities, such as proteins and amyloid fibrils. Three-dimensional (3D) investigation of the NPs
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technologies. The team combines state-of-the-art experimental techniques—including optical spectroscopy, magneto-photoluminescence, and ultrafast measurements—with theoretical modeling. From Hot Carriers
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picture of microbial communication. The Cluster of Excellence ‘Balance of the Microverse’ studies the fundamental principles underlying microbial community interactions and functions in diverse habitats
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Description Are you passionate about human behavior, XR technology, and real societal impact? Join us in studying how people interact with complex environments and empowering individuals with disabilities with
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to TV‑L E13, initially limited to four years, within the DFG-funded project described above The primary workplace will be the Geodetic Observatory Wettzell, with regular interaction with TUM and
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machinery during infection is still an open question. In this project, you will uncover how viral replication complexes interact with host ribosomes and translation factors to promote efficient viral gene
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methylation and tests the causal effects of candidate epialleles on gene expression (this PhD project at UU). In this PhD project you will: Develop and use state-of-the-art CRISPR/Cas9-based technologies
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on ultrafast chirality and attosecond electron dynamics, aiming to develop new methods for probing and controlling chiral light–matter interactions with applications in photonics, biosensing, and materials