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will have three responsibilities: - (1) studies of composite materials for a beam-facing RF shield. (2) contributions to the operation and exploitation of the Timepix4 testbeam. (3) simulation work
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will have three responsibilities: - (1) studies of composite materials for a beam-facing RF shield. (2) contributions to the operation and exploitation of the Timepix4 testbeam. (3) simulation work
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porewaters from our Demonstrator field sites (treated and control plots/catchments), and synthetic solutions with ionic compositions constructed to mimic the envelope of chemistries of UK groundwaters and UK
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analysis and knowledge of chemical weathering processes and their impact on the geochemical composition of the critical zone. You will be a self-starter, be able to work independently and you must have the
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rapid growth of artificial intelligence. Key responsibilities include synthesising 2D materials with precise control over layer thickness, composition, and defect density, followed by comprehensive
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measurements and methods for the characterization of the materials structures, compositions, and functionalities. The position is advertised for 3 years. Your future tasks: You actively participate in research
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studying the activity of eukaryotic replisome at the single-molecule level. You will examine replisome composition, replisome motion dynamics, and the interplay between these two quantities; and examine how
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the scientific analyses of glass, including compositional analysis using techniques such as SEM-EDS and LA-ICP-MS, an ability to thrive as part of a diverse team and a willingness to contribute
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replisome at the single-molecule level. You will examine replisome composition, replisome motion dynamics, and the interplay between these two quantities; and examine how these change in the context
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expected to be in post by 1st July 2025, or as soon as possible thereafter. The postholder will work on developing and implementing models of structured electrodes, in which the local composition (active