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What will be funded? The applicant’s salary Materials (on a limited scale) The maximum duration of project funding depends on the faculty at which the project is carried out. Faculty of Theology and the Study of Religion: 12 months Faculty of Law: 12 months Faculty of Business, Economics and...
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Please submit the following documents with your nomination: Application form with details of the nominees and the nominator A title (max. 150 characters) and a brief summary of the achievement (max. 400 characters) A description of the achievement and the main results (max. 4’000...
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/ethnic groups, women, individuals with disabilities, veterans, LGBTQ community members, and others who demonstrate the ability to help us achieve our vision of a diverse and inclusive community
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University of Basel, Condensed Matter Theory and Quantum Computing Position ID: University of Basel -Condensed Matter Theory and Quantum Computing -POSTDOC [#21540] Position Title: Position Type
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Versatile Top-Down Patterning Technique for Perovskite On-Chip Integration. ACS Nano, 2025. State-of-the-art electronic device fabrication techniques will be applied during the project, including thermal
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products is a strong plus. Excellent laboratory and organizational skills; ability to work independently and as part of a collaborative team. Good communication skills in English. In
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that characterize the deposition environment, investigate their properties and microstructure of the deposited thin films by cutting edge analytical techniques, such as scanning/transmission electron microscopy, atom
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electron microscopy, atom probe tomography or scanning probe microscopy. Your profile You hold a PhD in Physics, Materials Science or similar. A high level of motivation to work in close collaboration with
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; hands-on with Illumina and/or Nanopore and meta-omics is a plus • Strong organizational skills, attention to lab detail, and ability to work independently • Willingness to conduct short-term fieldwork in
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of strongly correlated electron systems on surfaces. A particular focus is placed on molecular spin systems, where you can harness quantum correlations of many-body spin systems, enabled by atomically precise