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Field
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150 members, with 18 academics (including 7 full professors) and approximately 120 PhD students and post-doctoral research fellows. The group has excellent facilities for experimental work including
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bottlenecks facing flexible and large-area metal oxide electronics: the scarcity of hole-transporting (p-type) oxide semiconductors. Developing p-type materials with performance on par with their commercialized
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hydrogen fuel cell turbomachines. AFBs support the shaft by creating a cushion of air between the rotating part and a flexible foil structure, which includes a top foil and an underlying supporting foil
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their entire life cycle due to the variations arising from geometry, material properties and loads during the long-term operation. This leads to a growing need in model identification, calibration, and
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/or dynamic analysis of mechanical/robotic systems •Ability to use finite element modelling and to simulate complex mechatronics •Ability to implement control and kinematics with hardware-in-the-loop
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Primary supervisor - Dr Matthew Wallace This four-year funded PhD studentship is available in the School of Chemistry, Pharmacy and Pharmacology at UEA, in collaboration with PepsiCo as part of
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should: Have an undergraduate or masters degree in psychology or other relevant quantitative subject Be excited about the opportunity to work with a non-academic partner (Adfree Cities) to bring about real
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engineering, medical physics, image analysis, computational neuroscience or quantitative psychology is desirable. If you would like to work on a PhD project about biological understanding of human diseases and
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has a dramatic effect on the fate of a component—a part may survive millions of cycles in vacuum and last only a few hundreds of thousands in air and much lower in actively corrosive environments
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alongside numerical simulations relying on high-performance computing and reduced order modelling. We aim to gain new insights about the physical coherent structures which are most relevant to viscoelastic