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Field
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oxidized nitrogen in the troposphere”. The Atmospheric Chemistry group at ETH conducts research exploring the processes controlling tropospheric composition (gases and particles) and their intersection with
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, to quantify mediator-booster reactivity and component dissolution during operation, developing a firm understanding of how material formulation and experimental parameters govern charge transfer at the liquid
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100%, Zurich, fixed-term The Optical Materials Engineering Laboratory (Prof. David J. Norris) in the Department of Mechanical and Process Engineering (D-MAVT) at ETH Zurich investigates
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process control, and fundamental research. Project background The project will focus on the development of integrated MIR photonic devices for advanced optical sensing and spectroscopy. The successful
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processing strategies that can enable the fabrication of a wide variety of advanced functional materials and devices. We are seeking a candidate with experience either in a) the development of (macro)monomers
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probes for cryo- SPM Development and optimization of wafer-scale micro- and nanofabrication processes, including integration of sensing, actuation and electrical functionalities Mechanical, electrical and
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expertise and creativity to reduce violence and promote peace in conflict-affected contexts. Thereby, we contribute to more impactful peacebuilding processes, a stronger knowledge-driven environment, and
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building of charge and ion transport processes in functional materials. Synthesis and processing of ceramic proton conductors, solid electrolytes and semiconductor photoelectrodes Structural characterization
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-vision-based image analysis. Job description Develop the existing functional prototype into a robust, user-friendly measurement system suitable for use in an industrial shop-floor environment. Design and
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. Within this field, we are continuously developing and adopting various algorithms for multiple applications such as automating quality control, detecting process deviations and finally predicting