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for finite element methods, or the AI-assisted discovery of new discretization paradigms for classes of PDEs where standard methods struggle, with their properties then verified formally. You will publish and
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, we aim to advance our understanding of indoor air pollutants and their implications for human exposure, with particular interest in indoor aerosols and ultrafine particles (UFPs). Main duties and
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ultrafine particles (UFPs). Main duties and responsibilities The successful candidate will have considerable freedom to shape their research within the broader scope of the laboratory. Potential research
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The Ultrafast Spectroscopy and Attosecond Science group at the Laboratory of Physical Chemistry, Department of Chemistry and Applied Biosciences, ETH Zurich develops experimental methods for measuring and
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for electrode and composite fabrication. Analytical facilities include X-ray diffractometers, UV-Vis (including in-flow configurations), Raman and FTIR spectrometers, surface area and particle size analyzers
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fabrication. Analytical facilities include X-ray diffractometers, UV-Vis (including in-flow configurations), Raman and FTIR spectrometers, surface area and particle size analyzers, electrochemical
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this process contributes to the development of multiple sclerosis, and potentially to exploit the findings for therapeutic applications. Experimental methods include molecular and cell biology, flow cytometry
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. Empa is a research institution of the ETH Domain. Our passion lies in materials science and technology, and at the Urban Energy Systems Laboratory (UESL), we develop strategies and methods to support the
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, formal methods, and/or networking, with interests in one or more of the following areas: NetKAT and its extensions, symbolic automata, routing algebras, packet scheduling, and AI-based cybersecurity. Main
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. Our passion lies in materials science and technology, and at the Urban Energy Systems Laboratory (UESL), we develop strategies and methods to support the creation of decarbonized, resilient, and