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tools on real data will allow a better understanding of gas dust and dusty-wind CND interaction, the use of resolved dust structures to constrain the BLR geometry and eventually improved modeling of BLRs
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collaboration between multiple research groups led primarily by Professor Tarek Abdoun and Professor Mostafa Mobasher. It involves a diverse range of activities including: structural and geotechnical modeling
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applications for a postdoctoral researcher to advance the multi-scale durability modeling of self-compacting concrete (SCC) incorporating mineralized SCMs. The research will focus on: Modeling long-term
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with a particular focus on structural models tied with labor market surveys to study the role of beliefs in the labor market in both developed and developing economies. We seek a candidate with expertise
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system optimization for remote construction. This position will focus on advancing research in construction assembly science and technology, logistics optimization, and real-time communication frameworks
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; Demonstrable expertise in thermal and/or electromagnetic NDE (optical, inductive thermography or electromagnetic sensing) or heat‑transfer modelling of composite structures; Hands‑on experience with IR cameras
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, the structure of these models, depending on the dominant regime and its dynamics, put more focus on a specific water balance component than others. This can make the structure inadequate to be directly
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highly skilled and motivated Postodoctoral Scientist with advanced expertise in isotope-enabled ecohydrological modeling. We are looking for an early career scientist who is passionate about unraveling the
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for high-impact, multidisciplinary research. Position Description We invite applications for a postdoctoral researcher to advance the multi-scale durability modeling of self-compacting concrete (SCC
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collective effects related to engineered long-range optical interactions emerge. This involves developing models accounting for the dynamics of the excitations in molecular emitters coupled to structured