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, while simulations are subject to error due to uncertainty in nuclear data and unresolved physical processes e.g. thermal expansion and fine-scale inhomogeneities. Generating independent simulation
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We are looking for a highly motivated candidate with strong interest in catalysis and hydrogen economy to take up this exciting PhD project. You will collaborate with other postdoctoral researchers
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the University can be found at the Lancaster University Admission Portal . Please also submit your application materials via this Qualtrics form, which is specific to this PhD opportunity. Applications must be
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the official University process—instructions can be found at the Lancaster University Admission Portal . Please also submit your application materials via this Qualtrics form. Applications must be submitted by
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, we will employ molecular simulations and theoretical methods to understand how to design materials for hydrogen-energy applications. With these design principles, we aim to develop, synthesize, and
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of practical solutions, economics and legislative constraints, the simplistic approach to reducing enteric CH4 production is to modify dietary composition (Hart et al., 2015). This can be accomplished by
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University process - instructions can be found at the Lancaster University Admission Portal . Please specify that you are applying to the International Relations PhD programme. A list of materials you will
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REACTOR DESIGNS FOR THE SUSTAINABLE PRODUCTION OF LIGNIN-DERIVED END-PRODUCTS VIA DEPOLYMERISATION REACTIONS This exciting opportunity is based within the Advanced Materials Research Group
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models considering networks of patches and their species and interactions composition to predict spatial and temporal community structure across restoration gradients, aimed at developing a predictive
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This exciting opportunity is based within the Advanced Materials Research Group at Faculty of Engineering. Vision We are seeking PhD student that is interested in high pressure reactor systems that