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rare opportunity to work across the complete development chain of a medical device: from designing the sensors, through the readout electronics and data analysis, to integrating the system with robotic
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, biochemistry and, increasingly, biomedicine. We are appointing a Research Fellow to develop quantum sensors based on optically readable spin defects (such as nitrogen-vacancy centres in diamond) and translate
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Computer Science at the University of Southampton. The project will involve the development of an innovative new multiparametric sensor technology to monitor the microbial properties of cattle rumen
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of Southampton. The project will involve the development of an innovative new multiparametric sensor technology to monitor the microbial properties of cattle rumen. The ultimate aim is to design, test and deploy
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across the project, with a particular focus on Work Package 3, which explores how social networks and schooling shape individual outlooks. This work will involve analysing large-scale social network data
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Society – aims to deliver the reconfigurable terahertz topological states for the application in the next generation of wireless communications. To be successful in this role, you will have: a PhD or
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Society – aims to deliver the reconfigurable terahertz topological states for the application in the next generation of wireless communications. To be successful in this role, you will have: a PhD or
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Society – aims to deliver the reconfigurable terahertz topological states for the application in the next generation of wireless communications. To be successful in this role, you will have: a PhD or
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of an innovative new multiparametric sensor technology to monitor the microbial properties of cattle rumen. This sensor bolus will be manufactured and used to measure physical and chemical parameters in cattle
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: offshore wind turbines, wave tank experiments, fluid-structure interactions, sensors for offshore structural health monitoring, software development, machine learning and advanced AI modelling, and previous