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advantages in terms of materials modelling and contact, COMSOL offers the potential to capture a fuller range of physical behaviours. Chiefly, the ability to capture the inertial behaviour of fuel pellet
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, or physics. Prior experience in microstructural characterization, computational modelling, or metal forming is advantageous but not essential. Enthusiasm and willingness to learn are more important
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to you. Eligibility We are seeking a motivated individual with a keen interest in the interface between the geosciences and nuclear industry, with a physical sciences or engineering background. Acceptable
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mathematics. Mode of Study: Full or Part time Start Date: 1 February 2027 Funding Details This project is offered on a self-funded basis. It is open to applicants who are self-funded or who are in the process
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are self-funded or who are in the process of securing external funding. A bench fee is payable in addition to the tuition fee, to cover the cost of specialist equipment and laboratory facilities required
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will not be considered eligible Selection process Doctoral candidates will be selected based on scientific qualification and experience, research interest, additional knowledge/skills and their
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starting conditions with our new improved process or strains. You will be working in a large supportive multidisciplinary team that spans four UK institutions (Birmingham, Imperial College, Nottingham, and
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project or the application process, please contact Kelsey Carthew at [email protected] Applicants should apply at the link button and submit the following no later than 5 pm on 18 October 2026: Curriculum
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manufacturing, laser engineering and robotics Physics of materials, structures and dynamics, biomechanics, welding and structural performance Nuclear fission, fusion, nuclear fuels and graphite and nuclear policy
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applicability in larger bioreactors with Professor Robbie Pott, a process engineer based at the University of Stellenbosch, South Africa. The student will gain expertise in a wide range of skills including