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. We highly value collaboration, teaching and outreach. To learn more about our team, we invite you to visit our website: https://klimadynamik.univie.ac.at/ . Ready to be part of our team? Let’s shape
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highly value collaboration, teaching and outreach. To learn more about our team, we invite you to visit our website: https://klimadynamik.univie.ac.at/ . Ready to be part of our team? Let’s shape
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-scale resolution. We highly value collaboration, teaching and outreach. To learn more about our team, we invite you to visit our website: https://klimadynamik.univie.ac.at/ . Ready to be part of our team
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Organic Matter under NORM/TE-NORM Conditions Insoluble organic matter represents a major fraction of soil organic carbon and plays an important role in contaminant retention. However, the mechanisms
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transition and catalytic conversion of carbon-based feedstocks? We are looking for a motivated PhD candidate to investigate how feedstock composition and catalyst structure affect performance during transient
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of fluid and energy systems, with applications including Power-to-X, carbon capture and utilization, green fuels, and sector coupling. The working culture is collaborative and informal, with close
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notably on geothermal energy and heat storage, carbon capture and storage, natural hydrogen, underground storage of energy vectors, and radioactive waste storage. This position will contribute to the R&D
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Primary Supervisor: Dr. Andrew Gates As well as carbon dioxide (CO2), other important climate-active gases are known to drive global warming. Importantly, nitrous oxide (N2O) also known as laughing
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from aquatic sediments represent a major uncertainty in the global carbon cycle. This project seeks to advance our mechanistic understanding of methane gas dynamics across multiple spatial scales by
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Bachtold. The group investigate emergent quantum phenomena in hybrid electrical and mechanical systems engineered from low-dimensional condensed matter platforms, including graphene and carbon nanotubes