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will also investigate process optimisation algorithms, providing a route toward autonomous optimisation and ultimately enabling long term stable operation under variable load conditions. This post is
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. About You You will have a PhD in computational engineering, applied mathematics, bioengineering, mechanical engineering or a related discipline, with strong experience in CFD or numerical simulation. You
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. About You You will have a PhD in computational engineering, applied mathematics, bioengineering, mechanical engineering or a related discipline, with strong experience in CFD or numerical simulation. You
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and water. Working closely with researchers at the University of Liverpool and collaborators at UCL, you will develop, construct and optimise a plasma-liquid reactor based on an existing plasma source
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translational research. You will have responsibility for optimising processes required to produce LVNPs at scale including testing strategies for purification and concentration. You will hold (or be in
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BromoTag, BromoCatch, and dTagfused constructs) required for biophysical assay development and structural studies. Deploying and optimising a palette of in vitro biophysical and biochemical assays
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algorithms and neural network models, drawing on probability, partial differential equations, large deviations, stochastic analysis, optimisation and machine learning. The successful candidate will contribute
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routinely collected healthcare data. Through the analysis of linked electronic health records, you will generate evidence to inform clinical guidelines, optimise prescribing practices and support healthcare
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to accelerate the translation of FLASH radiotherapy by designing and optimising a linear accelerator (linac) capable of producing megavoltage (MV) photon beams at ultra-high dose rates. The post is available
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the translation of FLASH radiotherapy by designing and optimising a linear accelerator (linac) capable of producing megavoltage (MV) photon beams at ultra-high dose rates. The post is available initially for a