112 structures "https:" "https:" "https:" "https:" "https:" "https:" "https:" "https:" "Univ" uni jobs in Switzerland
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expertise when needed Ways of working: Ability to thrive in collaborative, self-organizing environments based on Agile principles Experience with structured development practices such as test-driven
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their influence on film architecture on MEMS/miniaturized substrates Engineering and tailoring film architectures (thickness gradients, porosity/connectivity, hierarchical structures, multi-layer stacks
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on the development and application of advanced electronic structure calculations to explore the phase diagram and relevant properties of layered Ruddlesden-Popper-type nickelates. Project background Layered nickelates
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earth observation with applied forest monitoring, including tree species identification, forest structural changes, and forest resilience assessments, with a growing focus on spectral and functional trait
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description The aim of this doctorate is to quantify transitions in firn structure, albedo, and temperature of selected glaciers in Switzerland and Central Asia, and determine the consequences of
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the structural reorganisation of the DP, the scope of the Service is set to change. Therefore, the new Head will be involved in this process. UNIL and CHUV are committed to promoting gender equality and diversity
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and CHUV NB: As part of the structural reorganisation of the DP, the scope of the Service is set to evolve. Therefore, the new Head will be involved in this process. UNIL and CHUV are committed
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establish (semi-)quantitative polymer structure–adsorption relationships by linking polymer and sorbent properties to experimentally collected adsorption and desorption data. Specific tasks include: Conduct
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organic compounds suitable for use as electrolytes in flow battery systems. The overarching goal is to expand the accessible chemical space and identify structures with improved stability, performance, and
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that control microbial surface colonisation and biofilm assembly, structure, and rheology. We use a broad spectrum of technologies in materials science, microbiology, and microfluidics, as well as advanced