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Field
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therapies before transplantation. In this PhD project, you will develop and evaluate innovative strategies to detect, prevent, and repair oxidative stress–associated injury in high-risk donor livers
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The importance of oxide nanoparticles spans from fundamental astronomy (e.g. nanosilicate dust particles) to applied catalysis (e.g. photoactive TiO2 and electroactive IrO2 nanoparticles). Across these fields
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for Atmospheric and Climate Science (IAC) – ETH Zurich invites applications for a 4-year PhD position on “Investigating oxidized nitrogen in the troposphere”. The Atmospheric Chemistry group at ETH conducts
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of levitated droplets. The intensity of the fluid flow visible over the surface of the droplet due to the transport of some oxide particles was also found decreased, however, the question remained about the
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expand and improve an existing modelling framework to predict direct and indirect nitrous oxide and methane emissions from agriculture. You contribute to the following activities: Performing a SWOT
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Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr | M lheim an der Ruhr, Nordrhein Westfalen | Germany | 14 days ago
, with the possibility of additional one-year renewals. The position is funded by the SFB/TRR 247 collaborative research network “Heterogeneous Oxidation Catalysis in the Liquid Phase” and will be jointly
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ultrastructural assays to assess: Oxidative stress and mitochondrial function Lysosomal/autophagy flux and waste disposal Inflammatory signalling and complement activation Cell survival, death pathways, and barrier
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data for inorganic materials, particularly oxides. Existing LLMs will be adapted to process materials science data, answer complex queries related to materials science, and formulate research hypotheses
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this PhD will address. This project will develop a direct ammonia solid oxide fuel cell (SOFC) technology for efficient and carbon-free heat and/or power generation. By using a novel catalyst design strategy
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to the quality of the interfaces and materials, particularly the presence of an amorphous oxide in the junction. To address this challenge, InAs nanostructures coated with Sn are being developed to fabricate