170 phd-in-architecture-interior-design-built-environment Postdoctoral positions at University of Oxford
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on modelling of the transport, electrochemistry, and mechanics of next-generation lithium/air electrode materials and cell architectures. Using input data from experiments, the post holder will develop and
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-certification, and redeployment, as well as social acceptability and policy design. About you You should hold a relevant PhD/DPhil, or be near completion, in electrical engineering, economics, applied mathematics
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hardware support mechanisms. Your role will include the design, implementation and evaluation of different parts in the system, and the integration with other partners in the project. About you You should
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response to stimuli, allowing them to transduce signals to the cell interior. Dynein-2 lies at the heart of these processes, as it is the molecular motor responsible for all retrograde transport from the tip
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methods suitable for legged systems in physically-realistic simulated environments and on real robots. You should hold or be close to completion of a PhD/DPhil in robotics, computer science, machine
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, and market and protocol design. The postholder should hold a relevant PhD/DPhil or be near completion in one of the following: Economics, Finance, Operations Research, Statistics, Econometrics
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including design, conduct, and dissemination. The post holder will work at the newly built Institute of Developmental and Regenerative Medicine (IDRM) at the Old Road Campus of University of Oxford in
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for network constraints and uncertainty. Collaborating with other researchers on the project, you will also contribute to the design of a supporting cloud-to-edge computing architecture and profit-sharing
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The University of Oxford is a stimulating work environment, which enjoys an international reputation as a world-class centre of excellence. Our research plays a key role in tackling many global
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. Research on this project will involve catalyst design, setting up small-scale hydrogenation reactions in batch and continuous flow, immobilisation of enzymes, combination of enzymes with metal nanoparticle