67 algorithm-development-"Multiple"-"Prof"-"UNIS"-"DIFFER" positions at University of Nottingham
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to develop a comprehensive modelling and analysis approach for hydrogen systems, such as electrolysers and their BoP systems, in meeting some of the below challenges in: advanced diagnostics and prognostics
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spectra. This is a unique opportunity to contribute to transformative research in analytical chemistry, biophysics, and structural biology, while developing your own expertise in a supportive and innovative
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, packaging, thermal management and reliability, developing new concepts and ideas. Where appropriate, we will support you to create and submit innovative research development proposals and funding bids
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New Year. Our reward scheme grants bonuses of numerous values for excellent work We are committed to staff development through the provision of training, continued support, and career progression
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developing ideas for application of research outcomes. This post also be linked to research activities linked to the University’s research platforms such as the UNNC Sir Peter Mansfield MRI Centre. - To take
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respond over time (e.g. changing shape), controlled by the arrangement of differential materials within them. The goal of this project will be to develop responsive 4D-printed biomaterial devices for drug
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they support. This research project aims to improve the experience of both carers and residents in Nottinghamshire care homes by developing personalised digital avatars. These avatars will represent realistic
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or temperature. This project will develop the materials, methods, and designs necessary to 3D-print the next generation of electro-responsive soft-actuators. The overall aim is to develop and exploit new designs
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to produce anti-counterfeit markings, dye-free colour images, humidity and chemical sensors, anti-glare coatings and optical filters. This project will develop additive manufacturing of devices with actively
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ultrasound. This project will develop the materials, methods, and designs necessary to 3D-print the next generation of medical micro-robots targeting drug delivery, exploiting combinations of functions