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                Employer- University of Basel
- ETH Zürich
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- Ecole Polytechnique Federale de Lausanne
- Ecole Polytechnique Federale de Lausanne - EPFL
- Prof. Dr. Ricarda Toerner
- Swiss Federal Institute for Forest, Snow and Landscape Research WSL
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- École Polytechnique Fédérale de Lausanne (EPFL)
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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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                that are currently hindering the transformation of agri - food systems, including high land and labor costs, path dependencies, and low demand for plant - based food alternatives, including high land and labor costs 
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                established research group at the University of Zürich, focusing on the structural effects of posttranslational modifications within intrinsically disordered proteins. Our work combines biomolecular NMR with 
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                engaging in conversation. Are you highly communicative, a strong team player, and enthusiastic about welcoming young researchers from around the world? Do you bring a precise, well-structured, and forward 
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                niches. Building on our experience in cell-fate tracking tracking and studying various stages of the metastatic cascade, we set out to follow tumour cell-niche interactions to reveal how distant sites 
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                -duration energy storage. The approach is to use hierarchical structures, i.e. complex material layers that can be optimized to specific battery chemistries and flow phenomena from the microscale up 
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                -duration energy storage. The approach is to use hierarchical structures, i.e. complex material layers that can be optimized to specific battery chemistries and flow phenomena from the microscale up 
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                nano-scale objects Designing and building a coherent low-energy electron microscope Sample preparation and recording holograms Numerical reconstruction of the sample structure Presenting the results 
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                of printed biosensors while the other will address the embedding of sensors in 3D printed fluidic micro-structures. Context This project is funded in the framework of the Swiss National Science Foundation (SNF 
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                in the global carbon cycle and have the potential to mitigate greenhouse gas emissions by oxidizing methane, even at atmospheric concentrations. The research will investigate how interactions between