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At the Ellison Institute of Technology (EIT), we’re on a mission to translate scientific discovery into real world impact. We bring together visionary scientists, technologists, engineers
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process wherever it is reasonable to do so and, where successful, reasonable adjustments will be made to support people within their role. Person Specification Candidates will have completed their PhD
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physics, cosmology, particle physics and quantum physics. It has real world impact, informing developments in energy storage, improved cancer imaging, quantum computing, nuclear fusion, pandemic modelling
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from the close proximity of the scientific departments as well as advanced imaging and characterisation facilities and state-of-the-art-instrumentation. At the Department of Physiology Anatomy & Genetics
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of the scientific departments as well as advanced imaging and characterisation facilities and state-of-the-art-instrumentation. At the Department of Physiology Anatomy & Genetics (DPAG) we undertake discovery science
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, quantitative image processing and data analysis. The postdoc will also contribute to the theoretical side of the project, developing models grounded in active matter physics, non-equilibrium statistical physics
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epigenomics. AI-enabled pathology and medical imaging. Cancer evolution and tumour ecosystem modelling. Systems biology and network-based approaches especially in immunology Clinical data science and real-world
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Specification Essential Criteria: Qualifications 1. A good first degree in Biomedical Engineering/Bioengineering, Mechanical Engineering, Computer Engineering or a closely related subject. 2. A PhD (or be
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Understanding the Role of Self-Poisoning in Polymer Crystallisation School of Chemical, Materials and Biological Engineering PhD Research Project Directly Funded UK Students Dr Xiangbing Zeng
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them using basic spectroscopic and microscopic imaging measurements. You will use the same films in solar cell devices from which you will determine device efficiency and operational stability. You will