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of Oxford. Unpaired electron spins are ubiquitous in materials and devices for optoelectronics and solar energy technology and play a crucial role in the fundamental photophysical processes at the basis
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Artificial Intelligence for Net Zero Centre (RAINZ) which is a partnership between three of the UKs leading universities (The University of Manchester , University of Glasgow and University of Oxford
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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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activities in the UK Hypersonics Doctoral Network, led by the University of Oxford and Imperial College London. Each Cohort will have at least 8 students studying across a number of UK Universities. Duration
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well as external institutions and organisations, such as the University of Oxford and other industrial partners. For further information about the project or any informal enquiries, please contact: Dr. Tianning Tang
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actively contribute to the FlexEdge project, funded by the National Research Fund, in collaboration with University of Oxford and Imperial College London. FlexEdge focuses on designing and nationally
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actively contribute to the FlexEdge project, funded by the National Research Fund, in collaboration with University of Oxford and Imperial College London. FlexEdge focuses on designing and nationally
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was a postdoc researcher at the University of Oxford. In the past years our research group has accumulated critical expertise and laboratory infrastructure to support this PhD. This research will be in