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student with an aerospace, mechanical engineering, or physics background. Experience of experimental and computational modelling of icing physics, instrumentation and imaging techniques would be
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within the energetics field. Whilst many reactive burn models have been developed to simulate this behaviour, they are generally designed for ideal explosives and are mostly engineering models fitted
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of deformation and stress in the elements. In this DPhil project, you will develop and implement novel, NURBS based, element formulations and validate the application of IGA to mechanical problems with complex
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1st class degree in Engineering with strong background in theoretical and computational mechanics of solids/materials. To apply please contact the supervisor, Prof Andrey Jivkov - andrey.jivkov
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heat transfer behaviour is known to depart from standard analytical correlations. Under the combined supervision of academics in mechanical engineering and computer science, you will consider the use
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gross salary) for 3 years An additional £2,000 per annum for consumables and travel Requirements The candidate should have a 1st or high 2:1 degree in electrical/mechanical engineering, physics
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engineering, food engineering, mechanical engineering, or related discipline. Good team working, observational and communication skills are essential with the ability to work independently and as a member of a
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Discipline: Engineering & Technology, Mechanical Engineering, Other Engineering University of Warwick – School of Engineering Scholarship Qualification: Doctor of Philosophy in Engineering (PhD
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both in academia and in industry. Funding information: The Wolfson School of Mechanical, Electrical and Manufacturing Engineering is offering a PhD studentship to fund one of three advertised projects
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this testbed available to users for testing hardware and applications. NPL will lead on the testing and security evaluation of the testbed and collaborate widely on the technology development. The student’s