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focus on developing your PhD project Mechano-corrosive properties of PBF‑LB manufactured biodegradable Mg and Zn alloys. A combination of dynamic mechanical loading and corrosive environment is imposed
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EU MSCA doctoral (PhD) position in Materials Engineering with focus on mechanistic study of biodegra
the entire network, and one of 3 doctoral candidates based at Helmholtz-Zentrum Hereon. Your tasks You focus on developing your PhD project Mechano-corrosive properties of PBF‑LB manufactured biodegradable Mg
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need for advanced solutions in wound care, the INTROS consortium brings together leading academic and non-academic partners to develop diagnostic and prevention strategies for acute complex wounds
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wide range of opportunities for personal and professional skill development. Magdeburg offers excellent opportunities for cognitive and systems neuroscientific research, including ahigh resolution
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transport, microbial systems, or circular bioprocesses. You will contribute to developing and applying novel modeling strategies, AI-enhanced simulations, and computational workflows to explore biological
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computational and data-driven approaches, focusing on topics such as plant carbon transport, microbial systems, or circular bioprocesses. You will contribute to developing and applying novel modeling strategies
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groups in Mainz (Schweiger lab) and Basel (Keller Valsecchi lab) to investigate the molecular mechanisms controlling gene reactivation during development. Using human induced stem cell models with
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Several PhD positions (f/m/d) in International Research Training Group (iRTG) limits2vision Full PhD
) / Sorbonne Université in Paris (France), two of Europe’s largest institutions in the field of vision research. Together, IOR and IDV host the new l imits2vision research training network to educate the next
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-Zentrum Hereon. Your tasks You focus on developing your PhD project Unravelling the high reactivity of PBF-LB manufactured Mg and Zn alloys. Additively manufactured (e.g. by PBF-LB) Mg alloys are often
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on transforming nitrogen pollutants from water and air into valuable ammonia. This project offers the chance to be at the forefront of sustainable chemistry by developing cost-effective and efficient catalysts