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. The successful candidate will join a collaborative project involving Uppsala University (UU), industrial partners and research institutes, contributing to a highly interdisciplinary effort to establish
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of technology, people, and society to drive the transition toward a sustainable future. Through research, education, and collaboration, we create solutions that connect materials to mobility, ideas to impact
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of Mechanical Engineering , we unite the power of technology, people, and society to drive the transition toward a sustainable future. Through research, education, and collaboration, we create solutions
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bring together academia, the public sector and industry to jointly drive knowledge development and strengthen the relevance of research and education. Education at all levels is research-based and closely aligned
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. Conduct transportation resilience assessment and enhancement studies based on GIS, complex network analysis, and machine learning. Simulate human mobility in response to extreme weather events (e.g
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the link between mechanics and biology in the musculoskeletal system, including related pathologies and repair of skeletal tissues. Experimental studies, tissue characterisation and computational simulation
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given to good collaborative skills, drive and independence, and how the applicant’s experience and skills complement and strengthen ongoing research within the department, and how they stand to contribute
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us At the Department of Mechanical Engineering , we unite the power of technology, people, and society to drive the transition toward a sustainable future. Through research, education, and
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. Demonstrated ability to independently formulate scientific questions, solve research problems, and drive research projects forward. Research experience and demonstrated expertise in at least one of the following
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-facing web GIS dashboard. Investigate the forest, landscape, and climate conditions that drive storm susceptibility, using major windstorms as natural experiments and interpretable machine-/deep-learning