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for applications ranging from magnetoelectronic devices to advanced biomedical systems. A central strength of our group is the development and operation of unique, home-built scanning probe microscopy platforms
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of performance for magnetic hyperthermia (MHT), magnetic particle imaging (MPI), and sensing applications. The position offers a unique opportunity to bridge fundamental magnetism, advanced nanofabrication, and
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clarity and tissue compatibility. In the frame of this project, you will work with a team of scientists with backgrounds in chemistry and cell biology as well as with clinical partners on the development
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are explored for applications ranging from magnetoelectronic devices to advanced biomedical systems. A central strength of our group is the development and operation of unique, home-built scanning probe
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delivery of biologics while maintaining optical clarity and tissue compatibility. In the frame of this project, you will work with a team of scientists with backgrounds in chemistry and cell biology as
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ionomer membranes under diverse real-world operating conditions, using operando electrochemical and spectroscopic methods. Lead synchrotron campaigns aiming at unveiling the degradation mechanism
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. Empa is a research institution of the ETH Domain. Your tasks You will work on applied research and fundamental projects funded by InnoSuisse and the Swiss National Science Foundation on simulations
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membranes under diverse real-world operating conditions, using operando electrochemical and spectroscopic methods. Lead synchrotron campaigns aiming at unveiling the degradation mechanism of catalysts
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. Our Laboratory for Mechanics of Materials and Nanostructures is looking for a highly motivated candidate. Post-doc in Simulations of Thin Film Growth Your tasks You will work on applied research and
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of fluoride and hydrofluoric acid species during battery operation Coupling of the individual online measurement techniques and development of an appropriate control procedure Maintenance of processing and