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acceptable impurity ranges for precursor synthesis from recycled metal streams. The project will involve experimental design, synthesis and characterization of precursor materials, and analysis of impurity
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for the project. The research will primarily involve physical modelling of Li-ion batteries through finite element methods. Requirements: PhD degree in chemistry, physics, materials science or engineering, or a
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analysis. Requirements: PhD degree in Chemistry or Chemical Engineering or a foreign degree equivalent to the same. The degree needs to be obtained by the time of the decision of employment. Those who have
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collaboration with other departments. We research next-generation batteries, more efficient solar cells, more environmentally friendly hydrogen, and materials that can replace critical elements. In
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include leading the investigation of structural and biophysical properties of miniaturized tumor environment models. A multidisciplinary approach is expected, integrating microfabrication, cell component
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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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to perform science of very high quality in a collaborative and open manner. This independent work includes experimental design, in vitro and in vivo technologies, data analysis, and dissemination of findings