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. Historically, two industrial scale powder processing routes have been used to manufacture MOx fuel materials, the micronized master blend (MIMAS) developed by Belgonucleaire and utilised in the Orano MELOX fuel
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composite materials that require different physical modelling techniques. The primary aim of the proposed research project is to create novel surrogate/reduced-order laser-material thermal models based
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project will be co-funded by MBDA. The main objectives of the project are: Build upon novel mathematical frameworks developed at Manchester to describe complex laser-substrate interactions Understand how
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apply, please contact the main supervisor, Prof Shaw - sam.shaw@manchester.ac.uk . Please include details of your current level of study, academic background and any relevant experience and include a
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. To apply, please contact the main supervisor; Prof Nick Lockyer -nick.lockyer@manchester.ac.uk . Please include details of your current level of study, academic background and any relevant experience
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and a strong interest in computational modelling and programming. To apply, please contact the main supervisor, Dr. Mara Strungaru - mara.strungaru@manchester.ac.uk . Please include details of your
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have, or expect to achieve, at least a 2.1 honours degree or a master’s (or international equivalent) in a relevant science or engineering related discipline. To apply, please contact the main supervisor
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related discipline. To apply, please contact the main supervisor, Dr Steph Flores - steph.flores@manchester.ac.uk . Please include details of your current level of study, academic background and any
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equivalent) in a relevant science or engineering related discipline. To apply, please contact the main supervisor; Dr Zhang - dongda.zhang@manchester.ac.uk . Please include details of your current level of
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science or engineering related discipline. To apply, please contact the main supervisor, Dr Attfield - m.attfield@manchester.ac.uk . Please include details of your current level of study, academic