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via operando liquid-phase transmission electron microscopy (LP-TEM). Your tasks: Self-motivated and independent planning, execution, and analysis of research in the scope of operando electrocatalysis
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workflow for the imaging of Mg-LPSO alloys via X-ray nanotomography followed by higher resolution imaging of the identified regions of interest using transmission electron microscopy and atom probe
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knowledge of semiconductor physics, lasers, and optics. Ideally, experience in the field of transmission electron microscopy. High level of self-motivation, as well as enjoyment and skill in practical work
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on conventional transmission electron microscopy (TEM) exposures taken in underfocus. In this project, we aim to further develop the imaging analysis capabilities for (scanning) transmission electron microscopy
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electron microscopy at the Ernst-Ruska-Zentrum, the Julich Supercomputing Centre, the Neutron-SimLab or various physicochemical characterization methods and workshops Comprehensive training programs and
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Environmental Physics 2. Solid State Physics Electron Microscopy Semiconductor Epitaxy Semiconductor Optics Surface Physics 3. Theoretical Physics Complex Systems Solid-State Theory Semiconductor Physics
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. These range from flow-cytometry and two-photon microscopy to genome and proteome analysis. CONVENTIONS During the course, students take part in one to two conventions in their specialist field and present
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two-photon microscopy to genome and proteome analysis. CONVENTIONS During the course of study, students take part in one to two conventions in their specialist field and present parts of their research
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microscopy in biological science; digital signal processing; computer-aided design of optical and photonic systems; LabView; MatLab/SimuLink) Scientific modules (Summer School; Karlsruhe Days of Optics
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, pharmacovigilance, and Good Clinical Practice (GCP). In our basic research infrastructure, we operate several core units that ensure top performance in methodologies such as structural analysis, electron and