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achieve this, the PhD candidate will employ advanced in situ and ex situ transmission electron microscopy (TEM) methods, alongside electron diffraction techniques, to investigate structural changes and
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of nanofabricated sample supports and tracking algorithms for 5D electron diffraction (5DED). EMAT is one of the leading electron microscopy centers in the world and has a vast expertise in both fundamental and
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neuronal culturing techniques, immunohistochemistry, confocal and electron microscopy, transcriptomics and electrophysiology on monolayer micro-fluidic devices and neuromuscular organoids to determine the
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neuronal culturing techniques, immunohistochemistry, confocal and electron microscopy, transcriptomics and electrophysiology on monolayer micro-fluidic devices and neuromuscular organoids to determine the
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degree in biomedical sciences or related life science discipline We are looking for candidates with hands-on experience or a strong interest in spectral imaging techniques, confocal microscopy, and
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for candidates with hands-on experience or a strong interest in spectral imaging techniques, confocal microscopy, and bioinformatic analyses Experience in mouse work is highly desirable Interest in
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of these materials.State-of-the-art characterization techniques such as DSC, DMA, DTMA, micro-Computed Tomography (micro-CT), optical microscopy and Scanning Electron Microscopy (SEM) are combined with advanced numerical
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nanotubes. The most efficient catalysts will be characterized ex situ by electron microscopy and x-ray photoelectron spectroscopy, and under operating conditions by X-ray absorption spectroscopy (XANES and
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biology, proteomics, cutting-edge microscopy, structural biology, technology development, and bioinformatics. VIB provides a highly interactive environment and ample training opportunities for its
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/fracture mechanics tests, etc.) and characterization (scanning electron microscopy, X-ray tomography), to calibrate and validate the numerical simulations. You will be responsible for conducting finite