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microstructure exhibiting improved physical and mechanical properties. The main objective of this project will be to develop a mechanistic understating of the microstructural evolution of the Additive
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. OR A Bachelors degree in a relevant subject with an award of First Class or 2.1, and a Masters degree in a relevant subject with an award of Merit or higher. Qualifications from other countries which
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equivalent) in a science, mathematics or engineering discipline. Applicants without a master's qualification may be considered on an exceptional basis, provided they hold a first-class undergraduate degree
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master's qualification may be considered on an exceptional basis, provided they hold a first-class undergraduate degree. Please note, acceptance will also depend on evidence of readiness to pursue a research
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you To be successful in this role, we are looking for candidates to have the following skills and experience: Essential criteria Master's degree in a relevant area of the social sciences (e.g
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, Research Assistants, and an International Advisory Board. Your primary supervisor will be Dr Jim Everett. The PhD You will be primarily responsible for the work package, looking at situations where we
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should have or expect to achieve at least a 2.1 honours degree in materials science/engineering, metallurgy, physics, chemistry, or a related subject. To apply, please contact the main supervisor, Prof
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Type of award Studentship Principal investigator Prof. Peter Scott, Director of the Lincoln Theological Institute. Managing department Faculty of Humanities Value Tuition fees - to the maximum
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studies to aid in the experiment design, impact analysis and icing code droplet impact solver refinement. The main impact of the work will be to provide droplet impact data and analysis at high speeds which
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will have a first degree in materials and/or metallurgy, but candidates with degrees in related disciplines will also be considered. To apply, Pease contact the main supervisor, Dr Francis - john.francis