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local gas/liquid phase conditions. Whilst direct simulations of breakup are possible, computational cost is high, restricting applications to small sections of geometry and for modest run times
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Industrial Doctoral Landscape Award (IDLA) in Gas Turbine Heat Management. Supervisors: Prof Peter Ireland Future aircraft engines will maximize fuel efficiency by including new, fluid flow and cooling systems
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tissue stiffens and pores close, intraocular pressure rises, ultimately damaging the optic nerve. While current treatments aim to manage this pressure, they come with significant side effects and do not
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! Where are they hiding? It turns out that binary systems containing high mass stars (and so those which go on to produce black holes), evolve through a number of stages; in one such stage there is a black
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Requirement: Please note that the successful applicant will require DBS disclosure. Further info: https://bit.ly/3DP5K8y Positions Available: We are hiring for two positions under this role, each with a
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support: LSBU’s Doctoral College guides you through every stage—onboarding, progress reviews, training, and the final viva. Who can apply? Anyone completing (or having completed) a UK 2:1 honours degree
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plants. These advantages include being more compact, lower costs, using single-phase fluid rather than two-phase fluid used in steam turbines, higher cycle efficiency when using low temperature heat
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infrastructure at Aalto’s Otaniemi campus - home to OtaNano, the largest cleanroom facility in the Nordics. The PhD position is full-time. The contract period is initially for 2 years, with an extension
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applying for RADMA funding, and your funding application must be supported by your supervisor. Stage 2: The completed RADMA funding application form and Application Spreadsheet (with supporting
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the attacker compromises any steps in the software development process by deliberately incorporating vulnerabilities into the code to be triggered at a later stage of the software life cycle. We are looking