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project is focused on the development and validation of next-generation self-healing multilayer composites for space structures. These materials aim to enhance the durability and safety of inflatable
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. Coordinate materials for the student employment contract process. Process students' biweekly time-sheets in the absence of the Supervisor. Provide instructions, directions, and guidelines to students
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properties. In particular, we will explore the non-linear effects of chiral materials and their rectifying properties at high frequencies. The project also foresees the integration of optimal working materials
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storage device based on adsorbent materials, integrated into an air humidification system for PEMFCs. The assignment includes the development of models for adsorption and desorption processes
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . The Decarbonisation Programme “Singapore Max-Planck Alliance for the Sustainable
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . The Decarbonisation Programme “Singapore Max-Planck Alliance for the Sustainable
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . The Decarbonisation Programme “Singapore Max-Planck Alliance for the Sustainable
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . The Decarbonisation Programme “Singapore Max-Planck Alliance for the Sustainable
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nell’ambito della ricerca tecnologica di Fascia 2 presso la Sezione di Torino dell’INFN Where to apply Website https://www.ac.infn.it/ Requirements Additional Information Eligibility criteria Eligible
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FAST-TRACK – Fast Alloy Screening for Next Generation Aerospace Superalloy Development EPSRC CDT in Developing National Capability for Materials 4.0, with the Henry Royce Institute PhD Research