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providing substantial 'added value' Develop and carry out the specified project using appropriate techniques and equipment as outlined in the personal requirements Determine appropriate methodologies for
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thesis for examination. You will have experience with data handling, databasing and statistical/bioinformatic analysis as applied to translational cancer research, and a keen interest to develop your
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for helping to conduct the research, including recruitment (through community groups) and data collection. You will be expected to analyse and interpret findings and develop and disseminate accessible outputs
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comprises the development of R packages for Bayesian computational pooling inference. • To develop an R package for path-space rejection sampling for diffusion processes • To develop an R package
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ways to monitor the environment and remove pollutants. The Cyanobacteria Engineering for Restoring Environments (CYBER) project aims to develop the foundational multidisciplinary tools needed to de-risk
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carried out in collaboration with world-leading experimental partners in the UK, Europe and North America. Our ambition is to develop and apply state-of-the-art computational and experimental techniques
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-class international team of clinicians, scientists and bioinformaticians, you will be able to demonstrate evidence of completing bioinformatics project with a research environment and develop a strong
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to grant applications submitted by others and develop their own research objectives and proposals for funding • Involvement in the supervision, with guidance, of final year undergraduate research
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the development of a predictive maintenance tool to train asset degradation models using homogenous asset data from the building portfolio. You will have access to one of the largest city scale urban
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the next 18 months. By integrating data pre-processing and machine learning algorithms inspired by the Tsetlin Machine principles, the project will develop tools to generate scalable hardware architectures