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Postdoctoral Research Associate in Sum-Frequency Generation Microscopy of Biomolecular Self-Assembly
the institute focusses on the structure and dynamics of elementary processes in solids and at surfaces. Within this broader research theme, the Nonlinear Chemical Imaging (NCI) group of Dr. Alexander Fellows
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Postdoctoral Researcher (Physicist, Chemist or Material Scientist( (all genders) for a Tenure Tra...
and technical staff of GSI and FAIR in related topics, and collaborates with target laboratories worldwide. The position is focused on the development and the construction of a setup for the reduction
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topics such as innate immunity. The Department of Structural Biochemistry is on the forefront of cryo-EM and cryo-ET, with expertise ranging from method development to applying electron microscopy
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Max Planck Institute of Biophysics, Frankfurt am Main | Frankfurt am Main, Hessen | Germany | 25 days ago
hands on experience in optics is preferred. Prior experience in development/extension of optical instrument and/or surface chemistry is desired.) Cryo-electron microscopy-based structural analysis of SMC
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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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Participation in experiments as well as design and construction of instruments and/or sample environments with practical work at neutron sources Supervision of MSc and BSc students Presentation of research
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, Group Leader – Thermo-Chemomechanics and Interfaces, Department of Structure and Nano-/Micromechanics of Materials (Prof. Gerhard Dehm) Email: a.kanjilal@mpi-susmat.de
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theoretical and practical experience with machine learning methods, especially for training of machine learning potentials - development and utilization of ab initio electronic-structure methodology - previous
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | about 1 month ago
description Single molecule X-ray scattering experiments with free electron lasers offer a new route to the structure determination of biomolecules. Due to the super-low signal-to-noise-ratio, computing
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of the occurrence of rare events, as well as model simplifications and associated a posteriori error estimate. This will mainly rely on the construction of optimal control strategies associated to the large deviation