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- University of Nottingham
- DAAD
- Delft University of Technology (TU Delft); yesterday published
- Helmholtz Zentrum Hereon
- Helmholtz-Zentrum Geesthacht
- Helmholtz-Zentrum Hereon
- Imperial College London;
- Max Planck Institute for Sustainable Materials GmbH, Düsseldorf
- Max Planck Institute for Sustainable Materials •
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environment and / or publication in relevant and refereed journals Practical experience in a broad range of techniques including ceramic powder processing, sintering, SEM, XRD Practical experience with EBSD and
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receive bespoke training in (1) digital and traditional mapping techniques (all supervisors); (2) microstructural analysis via electron backscatter diffraction analysis (EBSD), SEM, transmitted and
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techniques in both space and time (e.g., correlated APT, TEM, FIM, EBIC, EBSD, XPS Kelvin probe microscopy, machine learning augmented analysis techniques) Experimental and computational analysis of transport
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-resolution SEM, TEM, EBSD, EDS, and XRD. This means you will not only master advanced electron microscopy but also gain the broader expertise to connect micro-scale insights with alloy design and real-world
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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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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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, structure and transformations at the atomic scale of buried interfaces and defects by correlated experimental techniques in both space and time (e.g., correlated APT, TEM, FIM, EBIC, EBSD, XPS Kelvin probe
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upon metal contact with 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
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for automotive applications. Key tasks include: Performing advanced transmission electron microscopy (TEM) and complementary techniques (SEM, EBSD) to study grain boundaries, precipitate-free zones, and solute
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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