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qualifications include: Proven ability to develop and apply complex in vitro or ex vivo test systems. Hands-on experience with microbial assays, biofilm models, and/or biomaterial characterization. Strong project
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100%, starting January 2026 (negotiable) Proteins must fold correctly to function, and this process is tightly regulated by a network of chaperone proteins. At the heart of this network is Hsp90, a
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Marie Curie Grant Agreement Number 101226997 Is the Job related to staff position within a Research Infrastructure? No Offer Description Background Information Marie Skłodowska-Curie Doctoral Networks
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Marie Curie Grant Agreement Number 101226997 Is the Job related to staff position within a Research Infrastructure? No Offer Description Background Information Marie Skłodowska-Curie Doctoral Networks
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research in earthquake physics, seismic instrumentation, and geothermal energy. A dense, multi-scale seismic network consisting of standard seismological instruments, borehole piezoelectric acoustic emission
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learning to explore complex quantum systems, opening doors to advancements in fields like materials science and quantum chemistry. Similarly, quantum physicists are exploring the use of quantum effects
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to function, and this process is tightly regulated by a network of chaperone proteins. At the heart of this network is Hsp90, a molecular chaperone essential for the folding and maturation of at least 20% of
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Molecular Physiology and Functional Biochemistry. We are looking for a researcher investigating biochemical and molecular processes that underlie physiological functions in complex biological systems
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80%-100%, Zurich, fixed-term The Research Center for Energy Networks (Forschungsstelle Energienetze – FEN) of the Swiss Federal Institute of Technology, Zurich (ETHZ) acts as a bridge between
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or two of these areas: algorithm learning, approximation algorithms, blockchains, complexity theory, deep neural networks, distributed systems, graph theory, graph neural networks, learning theory, online