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Field
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Predicting the dynamic response of materials and structures to high energy ballistic impacts is a fundamental component of the development and design of fit-for-purpose armour and protection
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engineering education to transform lives – both for students and for the users of the products they design and make. Our mission is to attract and empower individuals and partners from diverse backgrounds and
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experience in cognitive/usage-based linguistics, with a focus on syntax and/or semantics, and/or historical linguistics/language change. Experience in design and delivery of effective undergraduate and
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(REC-SAT) plays a critical role in the design, implementation, and evaluation of actions aligned to race equality objectives. Expressions of interest are invited for the role of Co-Chair of the REC-SAT
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modelling with realistic perturbations dynamics become even more complex. Modern trajectory design aims to identify and exploit features in the natural dynamics to design trajectories meeting mission
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aiming to design, implement and evaluate lifestyle self-management resources for kidney patients and healthcare professionals in primary and secondary care. This project is an integral element within our
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neural network methods for PDEs and their application to engineering problems. For more information on the IN-DEEP Doctoral Network, please visit https://www.in-deep.science Scientific Tasks: Design a deep
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such as human resources personnel, safety managers and occupational health staff, in order to design, test and pilot intervention content, based around necessary adaptations to fit the offshore work
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officials. The project will do so through: Completion of a job task analysis of elite soccer officiating to determine the frequency, importance, and physical demand of the tasks involved. Design and
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resources personnel, safety managers and occupational health staff, in order to design, test and pilot intervention content, based around necessary adaptations to fit the offshore work environment and context