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properties of polymer composites after aging is very limited. The project will be organized around 3 main activities: · Insitu characterization of microstructural changes in polymer composites during
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the current storage and transportation technologies, to which we believe adequately engineered and designed thermoplastic carbon fiber technology can be beneficial. The project will be organized around 3 main
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applications. Our laboratory expertise incorporates three main areas: Design of materials in representative environments of energy applications: In-situ testing facilities and characterization techniques
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providing innovative composite solutions or optimizing the usage of existing solutions in demanding Energy and Mobility applications. Our laboratory expertise incorporates three main areas: Design of
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. The successful applicant will be associated with the new Mineral Exploration and Exploitation Group at KAUST. The group will commence work in August 2025. Its main aim is to contribute to the development
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of work. The successful applicant will be associated with the new Mineral Exploration and Exploitation Group at KAUST. The group will commence work in August 2025. Its main aim is to contribute
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expertise incorporates three main areas: Design of materials in representative environments of energy applications: In-situ testing facilities and characterization techniques (Generation of unique databases
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around 3 main activities: • In situ characterization of microstructural changes in polymer composites during aging. • In situ characterization of the mechanical and fracture performance of polymer
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directions and goals, within remit of original project proposal. Supporting of less experienced members of the project team eg PhD students Contributing to the documentation of all research results