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Postdoc (f/m/d) Mechanical Characterization and Materials Assessment for Nuclear Applications / P...
Area of research: Scientific / postdoctoral posts Starting date: 01.11.2026 Job description: Postdoc (f/m/d) Mechanical Characterization and Materials Assessment for Nuclear Applications With
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Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Dresden, Sachsen | Germany | 2 months ago
Job description:Postdoc (f/m/d) Methods Development for the Micromechanical Characterization and Modeling of the Mechanical Behavior of Ion-Irradiated Nuclear Structural Materials within Materials
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Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Dresden, Sachsen | Germany | 2 months ago
Job description:Postdoc (f/m/d) Mechanical Characterization and Materials Assessment for Nuclear Applications With cutting-edge research in the fields of ENERGY, HEALTH and MATTER, around 1,500
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Postdoc (f/m/d) Methods Development for the Micromechanical Characterization and Modeling of the ...
for the Micromechanical Characterization and Modeling of the Mechanical Behavior of Ion-Irradiated Nuclear Structural Materials within Materials Acceleration Platforms. Resistance to radiation-induced damage is a critical
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Max Planck Institute for Gravitational Physics, Potsdam-Golm | Potsdam, Brandenburg | Germany | about 4 hours ago
from ground-based (LIGO, Virgo, KAGRA, Cosmic Explorer, Einstein Telescope) and space-based (LISA) detectors, including searches and detector characterization. Acceleration of gravitational-wave
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Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr | M lheim an der Ruhr, Nordrhein Westfalen | Germany | 14 days ago
of electrocatalysis, employing electrochemical and materials science characterization techniques to investigate additively manufactured 3D-structured electrodes for the catalysis of reactions of interest in energy
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semiconductor devices and circuits based on fully depleted silicon-on-insulator (FDSOI) technology for next-generation AI hardware. This position focuses on the design, fabrication, characterization, and modeling
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energy conversion. We use element-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
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of energy materials Develop and optimize advanced X-ray optical concepts with emphasis on maximizing photon flux, transmission, stability, beam quality, and experimental flexibility Design next-generation
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architecture based on coherent long range qubit shuttling Nat. Commun. 15, 4977 (2024) is currently one of our main activities. To this end, we pursue a holistic approach addressing material challenges, device