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Post-Doctoral Associate in Sand Hazards and Opportunities for Resilience, Energy, and Sustainability
of the S.M.A.R.T. Construction Research Group and Co-PI in the SHORES Center . The successful candidate will also collaborate with researchers and other Investigators from the SHORES Center on project
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twin system for the structural performance of civil engineering structures. The project is a collaboration between multiple research groups led primarily by Professor Tarek Abdoun and Professor Mostafa
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York University Abu Dhabi, seeks to recruit a post-doctoral associate to work on crystal structure determination using electron or X-ray crystallography. Candidates must have substantial experience in
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York University Abu Dhabi, seeks to recruit a highly motivated post-doctoral candidate in the areas of Artificial Intelligence (AI) for materials science, with an emphasis on structure-property
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on firm dynamics, structural transformation, economic growth, spatial economics. The appointment is for 3 years and will begin September 1, 2026, subject to final budget approval and UAE visa acquisition by
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University Abu Dhabi seeks to recruit a postdoctoral associate to work on the development, characterization, and applications of sustainable construction materials derived from desalination waste. This
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Post-Doctoral Associate in Sand Hazards and Opportunities for Resilience, Energy, and Sustainability
excavation and ground response (e.g., geotechnical centrifuge testing, lab-scale TBM experiments). Probabilistic and reliability-based analysis applied to underground structures. Advanced subsurface
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York University Abu Dhabi, seeks to recruit a highly motivated post-doctoral candidate in the areas of Artificial Intelligence (AI) for materials science, with an emphasis on structure-property
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Postdoctoral Associate to work on a fascinating project focused on the development machine-learning powered digital twin system for the structural performance of civil engineering structures. The project is a
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, characterization, and applications of sustainable construction materials derived from desalination waste. This exciting research will combine innovations in brine-to-cement technologies with advances in low-carbon