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research on how emerging technologies can support more sustainable consumer behavior and decision-making. The position is embedded in two international research communities, offering a rich and collaborative
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can generate electromagnetic interference (EMI) that propagates through unexpected conducted and radiated paths. Conventional EMC measurements, typically performed at a single location and moment
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cryogenic carbon capture, in which CO₂ is cooled to very low temperatures and turns directly from gas into solid. This gas-to-solid phase change is called desublimation. Although cryogenic carbon capture can
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challenges of our time: the energy transition? Then we are looking for you! What are you going to do? As a PhD candidate, you will investigate how the regulation of the hydrogen economy can be designed in
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of society are creating increasingly complex electromagnetic environments. Fast-switching power electronics in vehicles, buildings, hospitals and farms can generate electromagnetic interference (EMI
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with little to no biological activity that can harmlessly circulate through the body until they reach their target and are converted into active drugs. The use of prodrugs offers the potential for safer
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many distances are required to reconstruct the edge set of a graph?') or finding structures that can lead to faster algorithms ('How fast can you 3-colour an n-vertex graph of diameter 2?'). The PhD will
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: Engineering Hydrogen-Resistant Circular Steels (CIRHY)" which is a 6-year research and innovation project developing next-generation circular steels that can safely operate in hydrogen environments. By
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the Department of Microelectronics at Delft University of Technology in the Netherlands. Our research aims to develop multifunctional and multidimensional bioelectronic interfaces that can address fundamental
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. You will work in an interdisciplinary setting to identify microbial species, metabolites and genes that mediate microbiota–immune interactions, generating knowledge that can support future interventions