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-dependent MLCS regulation on lysosomal trafficking, mitochondrial quality control and hypoxia-induced cell death. Please apply for this project using this link: https://www.sheffield.ac.uk/postgraduate/phd
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mechanisms for apicoplast DNA compaction. In this collaborative, inter-disciplinary project, we will use cryo-EM (Lahiri lab https://sites.google.com/sheffield.ac.uk/lahirilab/), NMR (Willamson lab https
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lab https://sites.google.com/sheffield.ac.uk/lahirilab/) with structural bioinformatics (Chaudhuri lab, https://www.sheffield.ac.uk/biosciences/people/academic-staff/roy-chaudhuri) and plant genetics
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the Science Graduate School. You’ll get access to training opportunities designed to support your career development by helping you gain professional skills that are essential in all areas of science. You’ll be
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collaboration with Special Melted Products (https://specialmeltedproducts.com/) using the unique Royce metals processing capabilities in Sheffield (https://sheffield.ac.uk/royce-institute), that range from alloy
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entry requirements and research at the University of Sheffield, and how to apply visit our school’s webpages at https://www.sheffield.ac.uk/biosciences/postgraduate/phd Science Graduate School As a PhD
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Details Invariant sets play an important and fundamental role in the design of control systems. An invariant set is a region of a dynamic system’s state space that has the following property: if the state
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production method by designing the products to achieve the required specifications such as strength, size and dissolution/disintegration time. A regime map will be produced based on the results
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Design and synthesis of mesoporous zeolite catalysts for the conversion of sugars into biofuels and high-value chemicals School of Mathematical and Physical Sciences PhD Research Project Self Funded
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be optimised taking into account both process parameters and design aspects. Online measurement techniques such as thermal imaging and near infra-red spectrophotometer to correlate ribbon surface