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Research Group at the Faculty of Engineering which conducts cutting edge research into experimental and computational heat and mass transfer, multiphase flows, thermal management, refrigeration, energy
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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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their biosynthetic machinery is the fundamental challenge behind the BBSRC-funded GlycoWeb project. This 4-year PhD forms part of GlycoWeb’s broader mission. Project The PhD project will focus on the organisation
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stress. Building on our discoveries (Dietrich et al. 2017, Nature Plants; Orosa-Puente et al. 2018, Science; Mehra et al. 2022, Science), this project aims to identify genes and mechanisms involved in
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mitosis and meiosis in Plasmodium” under the supervision of Professor Rita Tewari. The research will involve unravelling regulatory mechanism of mitosis and meiosis in parasite proliferative stages within
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building services engineering discipline such as Heating Engineering, Plumbing and fitting with mechanical systems (knowledge and experience) or be qualified to NVQ 2 or equivalent with extensive relevant
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covers tuition fees, a stipend, and RTSG (research training and support grant). Alongside the scientific PhD training, the programme will provide a wide range of training opportunities. DTP Standard
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are invited to undertake a three-year PhD programme in partnership with industry to address key challenges in on-platform manufacturing engineering. The successful candidate will be based at the Rolls-Royce
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home or international students) fully funded. A competitive Tax-free annual stipend for 3 years Requirements The candidate should have a 1st class degree (BEng or MEng/MSc) in electrical/mechanical
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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