368 postdoc-parallel-computing positions at University of Sheffield in United Kingdom
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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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Hughes, Prof Lin Ma, Dr Janos Szuhanszki Application Deadline: Applications accepted all year round Details Computational Fluid Dynamics modelling is a powerful tool that, due to recent advances in
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Synthesis of Heteroaromatic Boronic Esters via Annulation Reactions of Ynone Trifluoroborate Salts School of Mathematical and Physical Sciences PhD Research Project Self Funded Prof Joe Harrity Application Deadline: Applications accepted all year round Details About the Project We have recently...
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higher dimensional structure. Likewise other programs in our group, this program addresses the principle, design, and implementation of developed mechanisms. We require applicants to have either
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of the system is within the set at some time, then it is guaranteed to remain within the set for all future times. Therefore, being able to characterize and compute these sets is of prime importance when
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student will gain experience across different disciplines including engineering, and neuro-computation. We require applicants to have either an undergraduate honours degree (1st) or MSc (Merit
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of nonlinear systems. These methods will identify unstable states, design stabilizing or optimal controllers and compute invariant sets. There is scope here to combine traditional model-based methods with new
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Facility at the Pilot Scale Advanced Capture Technology (PACT) Facilities, this project will involve a thorough and innovative experimental programme to characterise the above phenomena and correlate
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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