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, which causes reduced performance and accelerated material degradation in seawater. This project will experimentally investigate cavitation erosion in composite materials and develop a structural health
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of World Archaeology of our Faculty. The research appointment is for a two-year timeframe (1.0 FTE). Part time work is negotiable (e.g. 0.8 FTE). The Postdoctoral position will be supervised by Dr Wei Chu
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strategies (e.g. predictive or machine learning approaches) to improve performance and reduce costs. Collaborating with industrial partners on design optimization, life-cycle analysis, and business case
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take a leading role in the modeling and validation of this innovative system. Your main tasks include: Developing thermal models of convective heat transfer in ventilated cavities and their coupling
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screening, and screening workflow. Finally, we will work closely with industrial partners that are involved in every aspect of breast cancer image interpretation in screening, including AI, image analysis
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crisis, often referred to as the ‘silent pandemic’. Most of the antibiotics in clinical use are natural products derived from microorganisms. Large-scale bacterial genome sequencing has revealed that most
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to composite propellers still faces significant challenges. One of these outstanding challenges is cavitation erosion, which causes reduced performance and accelerated material degradation in seawater
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is for a two-year timeframe (1.0 FTE). Part time work is negotiable (e.g. 0.8 FTE). The Postdoctoral position will be supervised by Dr Wei Chu (PI), Assistant Professor at the Faculty of Archaeology
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appointment is for a two-year timeframe (1.0 FTE). Part time work is negotiable (e.g. 0.8 FTE). The Postdoctoral position will be supervised by Dr Wei Chu (PI), Assistant Professor at the Faculty of Archaeology
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crisis, often referred to as the ‘silent pandemic’. Most of the antibiotics in clinical use are natural products derived from microorganisms. Large-scale bacterial genome sequencing has revealed that most