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conferences and writing peer-reviewed papers. This PhD includes 3-6 months spent at the UK National Physical Laboratory (NPL), for research-led training on inferring CO2 emissions using atmospheric datasets and
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in atmospheric temperatures. The increase in freshwater inputs into the ocean are likely linked to changes in biological productivity, either through the resulting physical changes to the water column
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to eruptive activity. These transitions pose significant challenges to hazard management (1). Physical parameters, such as the location, geometry, and size of the volcanic system, and their changes over time
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change will affect the air-sea fluxes of the major greenhouse-gases within a consistent physical and biological model framework. TRAINING This is a collaborative project between UEA, and the British
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, likely with imaging devices not existing during the development. This will require an approach that considers the physics of the multispectral image formation including the three key variables: sensor
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or pathogenic? What impact does this have on the global climate? The recruited postgraduate researcher (PGR) will be pioneering research understanding this process in marine fungi and assessing the contribution
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% efficient in this process largely due to proton leak pathways that occur, leading to energy lost as heat. In specialised brown adipose tissue, popularised as ‘good fat’, such heat production is specifically
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(chemical biology and pharmacology). The student will also undertake a three-month placement at Prozomix Ltd., gaining industrial experience in enzyme production, assay design, and biocatalytic process
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in numerate, computational, or environmental subject areas. Numerate Subject Areas include e.g.: Mathematics, Statistics, Physics, Economics, Finance, Engineering (Mechanical, Electrical, Civil, etc
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our understanding of the roles and importance of lysosome regulation in stress resistance and ageing, identifying novel roles played by PrLPs and lysosomes in the ageing process and in anti-ageing