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of future urban scenarios? The postdoctoral researcher will develop an integrated analytical framework connecting: Verticalisation → 3D urban morphology → environmental processes → climate and flood impacts
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expertise and creativity to reduce violence and promote peace in conflict-affected contexts. Thereby, we contribute to more impactful peacebuilding processes, a stronger knowledge-driven environment, and
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chronic disease prevention. The PhD student will work in an interdisciplinary team spanning behavioural scientists, clinical psychologists, computer scientists, AI engineers, and health systems researchers
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modeling, laboratory experiments, and theoretical analyses, we seek to link microscopic processes with the macroscopic behavior of both engineering and natural systems and develop predictive tools
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approval processes. Program and maintain the technical infrastructure for experiments and surveys (e.g. oTree, z-Tree, Qualtrics) and provide organisational support for running experiments in the field
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works on increasing the efficiency of industrial systems in real-world deployment by enabling process monitoring, learning, and policy training while ensuring safety and efficiency. For this, we develop
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systems developed in the SAM3 project in terms of process-structure-mechanical property-function relationships. The candidate will be enrolled as PhD student at the Doctoral School for Materials Science and
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projects through laboratory-based experimental work. ● Perform cell culture, routine molecular and cellular biology techniques. ● Assist with tissue processing, and harvests ● Support experiments using
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- such as high-frequency on-board vehicle sensors and computer-vision imagery - are well-suited to capture these complexities via near real-time, high-resolution insights. However, collecting, processing, and
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[email protected] . For administrative questions about the application process, please contact Maja Weilenmann [email protected] . The University of Zurich is committed to diversity, equal