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Field
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schools, where children and adolescent research participants will complete computer-based learning tasks designed to capture metacognitive monitoring and regulation during task performance. The successful
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electrochemical reactions are governed by complex interfacial processes that are still poorly understood. In this project, you will investigate how electrolyte environments influence reaction mechanisms in
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habitual control. It will then test how acute stress alters these processes, combining behavioral performance, physiological monitoring, movement-based phenotyping, and advanced statistical and computational
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of electrochemical performance, with a focus on ion distribution, transport, and degradation processes during battery operation. The project addresses key questions such as the formation of Li/Na
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, including physical and chemical processes occurring after emission; Human inhalation exposure to indoor air pollutants and factors influencing exposure; Experimental characterization of indoor aerosols and
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exploring laser-matter interaction phenomena, investigating new manufacturing processes based on 3D direct-write laser methods, and finally, exploring novel concepts of multi-scale systems based on single
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dual liquid feed will allow composition, porosity, and appearance to be graded continuously across a printed element, turning a fabrication process into an instrument for specifying material behavior
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The Trapped Ion Quantum Information group (TIQI) performs research in the quantum domain using trapped ions focussing on quantum information processing, quantum metrology, and fundamental questions
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for fiber processing, polymer analysis, and electrochemical testing. You will be working at Empa in St. Gallen. The starting date is as soon as possible or upon mutual agreement, and the employment contract
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or projects) Experience with high-frequency transport experiments at low temperatures Proficiency in computer-based data acquisition and processing (e.g., Python, C++, LabView) Proven track record of high