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suboptimal thermal performance and energy inefficiencies. This programme focuses on the development of multiscale models that will improve our understanding of how microstructural changes in materials and
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gender, age and cultural background is key to performing excellent research. We therefore strongly encourage everyone to apply. More information on working at NWO can be found at the NWO website (https
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, with more projects starting soon); share in the performance of duties under these projects, including the production of deliverables and organization of activities (workshops, events) where applicable
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distribution (QKD), where you will adapt both the codes and their decoders to the specific security and performance requirements of QKD protocols. Beyond QKD, you are encouraged to explore open problems in
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to store electricity efficiently to cover durations of 25+ hours. In that light, we started the collaborative research project REDOX BLEND, performed at seven Dutch universities and knowledge institutes (TU
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performance. Where possible, strategies to mitigate their negative effects will also be examined. The project offers an exciting opportunity to address a fundamental scientific challenge with direct industrial
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that integrate performance evaluations, processing windows, and circularity-related data. Where to apply Website https://www.academictransfer.com/en/jobs/362528/phd-digital-twin-frameworks-for… Requirements
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respiratory health and environmental sciences, and contribute to research with direct societal impact. What you do During this PhD project, you will carry out the following activities: Performing cellular
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metabolism and contractility. Performing functional and molecular analyses using primary rodent cardiomyocytes and human stem cell-derived cardiomyocyte models. Performing metabolic substrate uptake assays
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for scalability, system integration, and performance. In this PhD project, you will contribute to the development of cryogenic electronic interfaces that support future quantum technologies. You will join a leading