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on Ni-based superalloys and/or Ti-alloys (SEM, EDS, EBSD, TEM, etc.) Personal competences in accordance with the requirements profile including specification (e.g. social skills, meaning that you enjoy
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superalloys and/or Ti-alloys (SEM, EDS, EBSD, TEM, etc.) Personal competences in accordance with the requirements profile including specification (e.g. social skills, meaning that you enjoy collaborating with
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entail electrode preparation, cell assembly, electrochemical testing, characterization of interfaces (largely SEM and XPS, but could also include FTIR, XRD), and experimental/analysis methodology
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techniques such as ICP-OES/ICP-MS, SEM, XRD, or particle size analysis Particle characterization techniques such as particle size distribution analysis or tap density measurements Hydrometallurgical processing
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equipment such as, rheometers, tensile testers and other characterisation techniques such as AFM, SEM, TEM, FTIR, XRD, TGA, DSC and fluorescence spectroscopy. To be willing to spend time in other research
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characterisation techniques such as AFM, SEM, TEM, FTIR, XRD, TGA, DSC and fluorescence spectroscopy. To be willing to spend time in other research groups in Sweden and/or in a foreign country. Our research is
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will also use focussed ion beam milling scanning electron microscopy (FIB-SEM) to prepare infected cells for in situ cryo-ET. The resulting tomographic data will be analysed by machine-learning assisted
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: Experience materials design and materials selection Experience in chemical reaction development Expertise in complementary methods such as ICP-MS, XRD, XPS, SEM, TEM, EDX Scripting in Matlab, Python
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in complementary methods such as ICP-MS, XRD, XPS, SEM, TEM, EDX Scripting in Matlab, Python or equivalent languages for data analysis Strong publication record in peer-reviewed journals What you will
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recovery and recycling processes, particularly dealing with the critical, strategic, and rare earth elements. Hands-on experience in up-scaling hydrometallurgical process and analytical skills on XRD, SEM