95 structures-"https:" "https:" "https:" "https:" "https:" positions at Forschungszentrum Jülich
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Your Job: Independent design/develop and construction of experimental facilities and testing platforms for high-temperature heat pipe components Planning and supervision of manufacturing processes
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management Fluent German (level C1!) and English language skills necessary Strong organizational and communication skills, analytical thinking, and a structured, process-oriented approach Ability to work
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support and mentoring for building a career in academia or industry Professional development through JuDocS, including training courses, networking, and structured continuing education ( https://www.fz
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in a dedicated, international, and collegial team. It is important to us that you quickly settle into the team and are given structured training for your tasks. We also support you from the very
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) Knowledge of surrogate modeling, GNNs or Physics-Informed ML Experience with academic writing or contributions to scientific papers High level of independence, motivation, and a structured, reliable work
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): https://go.fzj.de/JuDocs FAIR REMUNERATION: Depending on your qualifications and assigned responsibilities, you will be classified according to pay group 13 (75%) of the TVöD-Bund. Additionally, you will
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individually e.g., through training and networking opportunities specifically for doctoral candidates (JuDocS): https://go.fzj.de/JuDocs CAMPUS EXPERIENCE: Our research campus in the countryside creates ideal
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Collaborative Doctoral Project (PhD Position) - AI-guided design of scaffold-free DNA nanostructures
Your Job: The field of structural DNA nanotechnology holds a great promise for the realization of all-DNA building blocks with arbitrary complexity and shape at the sub-nanometer scale
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well as spectroscopic methods to determine their composition, structure, and oxidation-state distribution. In addition, variable temperature and pressure studies will be carried out to probe their structural stability
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relationships between structure, morphology, performance (reactivity, selectivity, efficiency), and degradation mechanisms under realistic deployment conditions Participation of beam times at international large