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                Employer- University of Basel
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                -on experience with microbiological methods, material characterization, or polymer/ nanoparticle/ hydrogel synthesis. Strong analytical and problem-solving skills with high scientific curiosity. Ability to work 
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                quantum sensing techniques to probe these emergent states. The successful candidate will join a small, collaborative team and be involved in all stages of the research cycle: design and operation of 
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                team from various backgrounds with a large knowledge base. We conduct research on Li-Ion batteries ranging from material development, structural analysis with x-ray techniques, to digital modeling and 
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                characterization. The experimental nature of the work requires a very high level of experimental skills, an analytical mindset for interpreting results, and the ability to design innovative experiments. You are a 
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                The IOB PhD and MD-PhD Program on Translational Visual Neurosciences offers a unique opportunity to make breakthrough discoveries in the function or dysfunction of the eye and the visual brain, as 
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                or more of the following topics is required: Synthesis of ceramic powder, basics in ceramic sintering processes, cold sintering process or piezoelectric characterization. The experimental nature of the work 
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                are joint research and training projects funded by the European Union. Funding is provided for doctoral candidates from both inside and outside Europe to carry out individual project work in a European 
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                are joint research and training projects funded by the European Union. Funding is provided for doctoral candidates from both inside and outside Europe to carry out individual project work in a European 
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                analytical and problem-solving skills with high scientific curiosity. Ability to work independently and in a collaborative, interdisciplinary environment. Excellent communication skills in English (both 
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                in liquid-like lasers (fast-gain devices with quasi-constant intensity) we can go further: resonant radio-frequency (RF) modulation transforms the spectrum into a synthetic frequency lattice, enabling