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supporting better patient outcomes. The successful candidate will lead the development of multi-modal MRI foundation models that integrate imaging data and radiology reports. Using advanced deep learning
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lead the development of multi-modal MRI foundation models that integrate imaging data and radiology reports. Using advanced deep learning techniques—including vision-language architectures (e.g., CLIP
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Oxford Physics, Materials and Chemistry and Liverpool Chemistry brings together expertise in photovoltaic (PV) materials synthesis and device fabrication, advanced characterisation and materials modelling
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living tissues with synthetic scaffolds to model and repair organs. These efforts converge across three interrelated programmes; Nanopore Sensing and Sequencing, 3D Tissue Construction, and Device
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Applications are invited for a Postdoctoral Research Associate with expertise in optical spectroscopy, structural characterisation techniques and modelling applied to next-generation semiconductors
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computational modelling and design optimisation. You will run CFD and fluid-structure-interaction simulations. You will develop models, analyse results and collaborate with partners to inform design. The role
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structural properties of nanostructures and nanoparticles. We combine expertise in nanofabrication, laser science, nonlinear optics, sensing, advanced imaging techniques and numerical modelling. About the role
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unique device structures, apply thermal imaging techniques for nm-scale devices and access the extensive device testing suite available in Bristol, from advanced electrical, thermal to electric field
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of semiconductor devices in a clean room using advanced fabrication techniques and developing device simulation TCAD models to complement experiments and to support device design and to analyse device failure
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ambitious researcher looking for your next challenge? Do you have an established Are you an ambitious researcher looking for your next challenge? Do you have an established background in modelling