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that diversity strengthens our research community, leading to enhanced research creativity, productivity and quality, and societal and economic impact. For the Future of the Academic Studentship, we actively seek
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communication, and collaborative problem-solving capabilities, which are essential for success in innovation-driven environments. This training prepares graduates for impactful roles in semiconductor R&D
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use of clinical time. Ensuring digital resources meet the needs of diverse communities is essential to avoid widening health inequalities. There is a desire to roll-out the training across West
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and resilience of communities, buildings and the built environments. The University and the Department strongly encourage a multi-cultural environment regarding both the staff and student body
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strong teamwork and communication skills, reliability, attention to detail, effective time management, and the ability to independently lead their own programme of research. You will have an MSc and
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to creating and sustaining a fully inclusive workforce culture. We welcome applicants from all backgrounds and communities, we particularly welcome applicants who are currently under- represented in our
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battery solid-electrolyte materials, and new XFEL methodologies/interpretation tools that can be used by the community. Background Femtoseconds and faster are the natural timescale of electrons and ions in
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of the art academic and research services to industrial clients such as Boeing, BAE Systems, Rolls-Royce, Meggitt, Thales, MOD, Bombardier, QinetiQ, Thales, Network Rail, Schlumberger and Alstom.
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join a vibrant, supportive research community (around 20-25 people involved in fluids modelling research). Real-World Impact: Contribute to transformative technologies in clean energy and carbon capture
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research community at the University of Manchester. You will benefit from a supportive research and training environment, and you will contribute to our School's research excellence. Specified use The School