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electrolysis have made large advances in terms of geometric surface area, current density and selectivity towards valuable products such as C2H4. To reach successful commercial deployment of CO2 to C2H4, we need
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balance of properties and low density, achieved through alloying additions such as Zn, Mg, and Cu along with carefully processing. One issue is that under some conditions, these alloys can become
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, vessel orientation, water flow and pebble configurations to study heat transfer, natural convection, boiling phenomena and hotspot formation. Experiments will include extreme maritime conditions with
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specialisms. Currently, we are an academic staff of 1 full professor, 2 associate professors and 4 assistant professors, working with a dozen PhD students. We focus on polymer and data science for (mechanical
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and advanced measurement systems. You will perform experiments that vary pebble power, vessel orientation, water flow and pebble configurations to study heat transfer, natural convection, boiling
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furnace infeed. The research will focus on modelling how key scrap characteristics - such as size, shape, density, and material heterogeneity - interact with scrap handling and transport systems
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comprising several nationalities and scientific specialisms. Currently, we are an academic staff of 1 full professor, 2 associate professors and 4 assistant professors, working with a dozen PhD students. We
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texts for your fields and develop collaborative projects. Your participation in workshops and master classes will ensure that you are up to date with current academic discourses and will give you the
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researchers to each specific programme. The scientific focus in each section is driven by current topics in Life Sciences: collaborative research projects and graduate training groups are major contributors
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semester 2026, varies slightly with each semester) The current semester contribution can be found here: https://www.uni-giessen.de/en/org/admin/departments/b/5/studoffice/sc . Costs of living Approximately