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physics and chemistry. It currently employs around 280 people. Postdoctoral position (m/f/d): Paired Electrons and Topology APPLICATION DEADLINE: 2025-11-02 START: as soon as possible SCOPE: 39 h per week
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Max Planck Institute for Chemical Physics of Solids, Dresden | Dresden, Sachsen | Germany | 12 days ago
are therefore expressly encouraged to apply. Application via our online form by 02 Nov 2025. More information about the Max Planck Institute for Chemical Physics of Solids and the Paired Electrons and Topology
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Your Job: Develop and refine detailed models of power electronics and their control systems for stationary battery storage applications Focus on system identification and parameter optimization
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to unravel signatures of non-equilibrium dynamics and phase transitions in the transient electronic structure. We have a strong background and reputation in state-selective and spin-sensitive time- and angle
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-specific methods such as X-ray absorption spectroscopy at synchrotron radiation sources and free-electron lasers. A wide variety of magnetic material systems are studied, such as magnetocaloric materials
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for High-Luminosity LHC. These activities are supported by excellent mechanical and electronics engineering departments and workshops. Our ATLAS upgrade projects comprise the development of new front-end and
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Postdoc (f/m/d) in Irradiation Tolerance of Additive Manufactured Ferritic/Martensitic Steels for...
# Post-irradiation investigations using transmission electron microscopy (TEM/STEM) and nanoindentation # Analysis of the interaction between additive manufacturing-induced microstructure, irradiation
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with a doctorate In-depth knowledge and experience in computer tomography and experimental imaging techniques, demonstrated by publications, scientific documentation, and active participation in
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-Methodologie Herrn Prof. Dr. Stefan Liebig Garystr. 55 14195 Berlin (Dahlem) With an electronic application, you acknowledge that FU Berlin saves and processes your data. FU Berlin cannot guarantee the security
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to unravel signatures of non-equilibrium dynamics and phase transitions in the transient electronic structure. We have a strong background and reputation in state-selective and spin-sensitive time- and angle