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, with a focus on spin transport and spintronics. This position will be funded through the Collaborative Research Center / Transregio 227 “Ultrafast Spin Dynamics”. The Dahlem Center is an exciting forum
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19 Dec 2025 Job Information Organisation/Company Max Planck Institute for Dynamics and Self-Organization Research Field Physics Researcher Profile Recognised Researcher (R2) First Stage Researcher
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Max Planck Institute for Dynamics and Self-Organization, Göttingen | Gottingen, Niedersachsen | Germany | 18 days ago
physics is a plus. Programming skills are highly desirable. Fluency in both written and spoken English is required. The researcher should show eagerness to learn new skills and apply established ones.
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programme Is the Job related to staff position within a Research Infrastructure? No Offer Description An outstanding opportunity is available for a PhD student to work on mutation load dynamics in a
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of the molecular interactions between polyelectrolytes such as DNA, proteins, or heparin with complex biological systems. Project A1 under the guidance of Dr. Marina Pigaleva focuses on investigating how proteins
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(Wissenschaftlicher Assistent/ Research Assistant) in Gravitational Wave Physics (m/f/d, E13 TV-L, 100%) The position is expected to start as early as 1 March 2026 and is initially funded until 30 September 2027, with
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The Max Planck Institute of Biophysics is a leading international research center that develops biophysical, biochemical and computational methods to investigate the structure, dynamics and function
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TUD Dresden University of Technology, as a University of Excellence, is one of the leading and most dynamic research institutions in the country. Founded in 1828, today it is a globally oriented
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Doctoral and Postdoctoral Researcher Positions in the Cluster of Excellence “Balance of the Microver
community dynamics STRUCTURES: investigate the compositional and spatial structures of microbial communities and their influence on functions and stability, from local to global scales TRANSITIONS: study
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. Wheeled, bipedal robots combine the advantages of dynamic walking with efficient wheeled locomotion. Controlling such systems in real-world environments is challenging due to the high-dimensional dynamics