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and derive new research directions from the results. Characterize the geometric, structural, and electronic properties of promising electrocatalysts using advanced materials
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excitations and excitonic effects using advanced Wannier-based methods * Quantum transport in polymer materials with electron–phonon coupling Full details and application instructions: https://www.ch.nat.tum.de
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validation and regulatory translation. We offer: Participation in a highly ambitious, internationally visible research program. Access to state-of-the-art imaging, photonics, electronics, and biomedical
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Hillebrand via email ([email protected] ). Applications should include: A cover letter describing your motivation for the position, relevant experience, and fit with DC3. A curriculum vitae including
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production of materials and parts from scarce resources in a highly automated and resilient way. The Cluster of Excellence will thus contribute to the sustainable human exploration of space and power a green
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bioinformatic skills. ● The ability to work both independently and collaboratively in a team. ● Good written and spoken English skills. What We Offer. ● A fully funded 3-year PhD position within an ERC-funded
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-kenntnisse (z. B. Python, JavaScript/Angular/Electron, C++ oder vergleichbar) Erfahrung in der Entwicklung von virtuellen Umgebungen und Nutzung von VR/MR/AR Kenntnisse im Bereich Künstlicher Intelligenz
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power. In this PhD position, you will analyze the task of sensing and coordination on an information-theoretic basis with the ultimate goal of implementing a resilient sensing and coordination protocol in
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data • Design clinically meaningful benchmarks and robust evaluations • Publish at leading machine learning and medical AI venues • Collaborate with clinicians, computer scientists, and European partners
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17.05.2026, Academic staff In networks of robots and unmanned aerial vehicles, the ability to exactly coordinate the observations of the different devices is key for successfully carrying out