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susceptibility to water ingress can lead to issues such as surface degradation, internal cracking, frost damage, and biological colonisation. Prolonged exposure to moisture makes these materials particularly
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efforts have been undertaken to re-wet degraded peat areas by blocking ditches and erosional gullies. However, the hydrological response of peatlands is poorly characterised, unlike lowland areas reduction
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. Assess ecological change by applying shotgun metagenomics and amplicon sequencing to track microbial community shifts under persistent wet skimming. Translate lessons learned into engineering design rules
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repeated global LiDAR measurements related to biomass. Sentinel missions offer increased temporal resolution in both multispectral (for vegetation indices) and SAR data (for moisture and structure
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predominantly gas-fired condensing boilers with a wet radiator system, and either on-demand hot water (from a combi-boiler) or a hot water cylinder. A transition from natural gas, to a more decarbonised heat
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suitable Master’s degree, as well as excellent problem-solving and communication/IT skills, e.g. use of MS Office tools. Desirables Experience with wet lab research e.g. at either undergraduate or post
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-diseases/ . This is an exciting opportunity to collaborate with computational and wet-lab scientists at the forefront of pioneering research. You will be responsible for designing and implementing proteomic
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Nanopore sequencing, ChIP-seq, and Hi-C, to probe plant genomes and centromeres. The project will involve both wet-lab based functional genomics approaches, together with dry-lab based bioinformatics
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successful student in several highly desirable skills, both in the wet-lab and in genomics approaches. We are therefore seeking an enthusiastic graduate with an interest in advanced cell models and genomics
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in inks, surfactants added to crop sprays to improve jetting, wetting, adhesion, and bodily fluids with polymeric components. This PhD project aims to explore how such additives affect micromechanics