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be accompanied by EBSD for ex situ microstructure characterization, X-ray micro- and nano-tomography at DESY (Deutsches Elektronen-Synchrotron / German Electron Synchrotron) and Scanning Kelvin Probe
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EU MSCA doctoral (PhD) position in Materials Engineering with focus on mechanistic study of high cor
an aqueous electrolyte. For this, in situ SEM and in situ TEM will be used at HEREON. This will be accompanied by EBSD for ex situ microstructure characterization, X-ray micro- and nano-tomography at DESY
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- and nano-tomography at DESY (Deutsches Elektronen-Synchrotron / German Electron Synchrotron) and Scanning Kelvin Probe Force Microscopy (SKPFM) for visualising the distribution of cathodic phases in
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SEM and in situ TEM will be used at HEREON. This will be accompanied by EBSD for ex situ microstructure characterization, X-ray micro- and nano-tomography at DESY (Deutsches Elektronen-Synchrotron
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ignore physical constraints, and evaluation of performance and regulatory requirements requires computationally expensive simulations. Moreover, a complete vessel design involves far more than just
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processing, algorithm design, optimisation and simulation, software engineering and automation and control systems. An overview of the current PhD research projects is given here: https://www.dashh.org