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coupled magnetite formation and consumption, alongside complementary mineralogical, geochemical and petrological analyses. You will design and refine experimental protocols, analyse complex scientific
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petrological analyses. You will design and refine experimental protocols, analyse complex scientific datasets, and contribute to field-based magnetic monitoring activities in case-study regions. You will manage
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external funding bodies and project partners), ability to independently plan and manage a research project (including a research budget), and act as a source of information and advice to other members
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contribute to pioneering research on plasma-based Power-to-X technologies for the sustainable production of fuels and chemicals. You will be involved in the design, development, and optimisation of plasma
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involve developing a cryogenic optical setup to study Rydberg exciton states, designing and fabricating devices as well as testing and characterising these devices. The aim is to explore the use
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assistance towards visa renewal fees. These activities are designed to promote physical and mental wellbeing among staff members. Please visit our website to find out more about the Department. About you You
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of the literature and working closely with a multidisciplinary team to interpret findings alongside analyses of routine healthcare data. You will also support the design and delivery of a stakeholder workshop
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ingestion and the unsteady flow phenomena within turbine rim-seal cavities. You will contribute to the design, commissioning and operation of experiments on a bespoke high-pressure rotating facility and use
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to address important public health issues. Key responsibilities will include: Apply evolutionary genetic approaches to the study of disease vectors Design, develop, and implement genomic-based tools and
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. This will involve various practical tasks to install design and install the station. There is significant freedom to develop and then test future turbulence mitigation or characterisation techniques using