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research group focusing on synaptic function and calcium channel signaling in health and disease. The research program combines neuronal cell culture models, fluorescence microscopy, electrophysiology, and
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PhD Position – High-Temperature Electrolysis – from stack design to operational optimizationFull PhD
cells with improved energy and power density, longer lifetime, and maximal safety. Find out more about our mission and future-oriented projects here: https://www.fz-juelich.de/en/iet/iet-1 We
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publication(s) in relevant peer reviewed journals. (E) Expert in use of scanning electron microscopy (SEM) and electron back scattered diffraction (EBSD). (E) Experience in communicating with multiple parties
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publications see here: https://www.scilifelab.se/researchers/stefanos-stagkourakis/ Essential technical expertise (Required) This position is intended for candidates who can immediately operate at a high
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the BERNARDO project, funded by the PEPR LUMA program (https://www.pepr-luma.fr/ ). The project focuses on chiroptical interactions, which play an essential role in fields such as biomolecular recognition
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their stability, drug release kinetics, encapsulation efficiency and electron microscopy imaging. Integrate innovative approaches to enhance the specificity and efficiency of advanced therapeutics, with a
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. The content of the research activity: Archeometallurgical analyses SEM-EDS microscopy and chemical composition analysis of iron artifacts, slags, and ores GIS spatial analysis, statistical analysis, and network
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stimulating scientific environment and state-of-the-art technical platforms (amphibian animal facility, confocal microscopy, access to SEM, CT scan). Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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level of autonomy and in collaboration with national and international research groups, research activities using advanced electron microscopy techniques, with particular reference to transmission
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using a combination of classical and advanced techniques including optical and NMR spectroscopy, surface plasmon resonance, light and X-ray scattering, cryo-electron and fluorescence microscopy