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? Important subquestions are: How can the thermal behavior (including the runaway) of batteries be understood and modelled? This includes factors like the load cycles of the batteries, but also possible
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, including high-throughput bioreactor cultivations, multi-meta-omics (metagenomics and metaproteomics), and mathematical modelling. You will work in a highly interdisciplinary environment at the interface
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approaches, including high-throughput bioreactor cultivations, multi-meta-omics (metagenomics and metaproteomics), and mathematical modelling. You will work in a highly interdisciplinary environment at
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curious and driven scholar who enjoys sharing knowledge. In addition, you should have: Successfully completed a (Research) Master’s degree in linguistics. Demonstrable teaching experience, preferably in
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Apply now Are you a curious, research-driven historian with an interest to collaborate in a team that is interdisciplinary? Do you wish to write a PhD thesis with impact? Then this is the vacancy for you
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developments, you will work closely with the other PhD, postdocs, engineers in the lab, and other collaborators from TUM and ETH, to establish a digital twin for construction, and optimize CAML hardware
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deployed. As a PhD candidate in the Propulsion & Power group at TU Delft, you will tackle this challenge through advanced experimental and analytical investigations, focusing on how two-phase flow develops
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; biochemical characterisation of virus–glycan interactions. These insights will be integrated to define glycan features that govern influenza attachment and to develop advanced in vitro receptor models