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be responsible for managing your own academic research and administrative activities. You will design and perform original research and develop new scientific techniques. You will provide help to Dr
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sources. Deployment of these technologies at scale requires electrocatalysts produced from earth-abundant elements that exhibit both low overpotentials and long-term stability. This project aims to develop
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About the role We are seeking candidates to develop a therapy for heritable cardiomyopathies. Specifically, the appointee will be responsible for the preclinical development and selection
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skills, and the ability to manage their own research and administrative activities. Experience of collecting data from, or working with, young children with developmental conditions or special educational
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developing an existing widely-used atomic physics model, GRASP, to include new and more accurate methods to calculate quantum electrodynamic corrections to energy levels. The successful candidate will develop
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evidence of excellent written and verbal communication skills, e.g. peer-reviewed research papers, external conference talks, teaching and have expertise in using organoid models and high throughput next
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report to Prof Simon de Lusignan and Dr Jose Ordonez-Mena. The post holder will be encouraged to develop research ideas and apply for research/programme grants under supervision of the line manager. They
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to develop correlative technologies to visualize integration targeting by cryoET in situ. You will be managing the project day-to-day, including both design and action of strategies in molecular biology and
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goals of Deep Medicine. The objective of the project is to develop and enhance a range of Transformer-based models to predict the risk of key clinical outcomes, such as all-cause mortality and
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the Cader group who are researching the same topic. You will be expected to develop or optimise the relevant methods and tools. You will also be expected to provide support and guidance to research students