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the desulphurizing process and to achieve energy savings and increased contaminant destruction. Computational modelling will be performed to assess the oxy-acid gas reaction processes involving multiple chemical
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to the advancement of digital imaging technique and computing power. In this project, high speed stereo imaging for flame studies developed in Prof. Zhang’s research lab will be further developed for more quantitative
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Kevin Hughes, Prof Derek Ingham Application Deadline: Applications accepted all year round Details This project aims to combine computational fluid dynamics, chemical process modelling and virtual system
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. This project will develop Rolling Contact Fatigue (RCF) testing programme of bearing steel samples to investigate effects of some key factors, including high contact pressure, impact loading, surface slip and
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scientifically challenging problems have to be solved in order to make them cost effective and thus commercially viable. In this project, novel designs of gas diffusion layer and catalyst support will be
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, Materials Science, Physics, Chemistry, Applied Mathematics, or other Relevant Discipline. This project is available only for Self funded students. View DetailsEmail EnquiryApply Online
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require applicants to have either an undergraduate honours degree (1st) or MSc (Merit or Distinction) in a relevant science or engineering subject from a reputable institution. Prospective candidates
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degree (1st) or MSc (Merit or Distinction) in a relevant science or engineering subject from a reputable institution. Prospective candidates for this project should have an MSc, MMath or MEng in
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science or engineering subject from a reputable institution. Prospective candidates for this project should have an MSc, MMath or MEng in mathematics, statistics, physics, aerospace engineering, signal
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to have either an undergraduate honours degree (1st) or MSc (Merit or Distinction) in a relevant science or engineering subject from a reputable institution. Prospective candidates for this project should