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these powerful tools to quantitatively characterize the nanometric magnetic and electric fields in topological materials to exploit emergent phenomena. [keywords] Focused-ion-beam (FIB),transmission electron
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, chemical etching, or FIB milling is a strong advantage. Familiarity with optical setups for imaging or polarization-resolved analysis will be considered a significant plus. Responsibilities You will be part
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techniques, such as particle size and shape, powder flow assessment, advanced electron beam microstructural characterisation techniques and sample preparation for powders (e.g. cryo-SEM, FIB and/or TEM) and X
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to reduce the stack pressure required for cycling using functional interlayers. You will use techniques such as EIS, solid-state NMR, FIB-SEM, and various electrochemical methods to characterize materials and
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cultures Stable isotope labelling coupled to nanoSIMS Fluorescence microscopy & Expansion microscopy Cryo-FIB in tandem with Cryo-EM This position is financed by the Independent Research Fund Denmark
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characterization using cryo-electron tomography (cryo-ET), and complementary light microscopy methods. Specific objectives are: Setting up cryo-ET FIB SEM workflow for reconstituted synapses Visualize nanoscale
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electron microscopy, particularly demonstrating state-of-the-art methodologies. Additional experience with other electron beam instruments (EPMA, SEM, and/or FIB). Experience troubleshooting electronics and
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03.02.2025, Academic staff The Cryoskeleton Lab (https://www.pioneercampus.org/index.php?id=56765) at Helmholtz Munich is looking for Master students who are interested in using in situ cryo