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of magmatism and serpentinization during the onset of seafloor spreading”, funded by the UK Natural Environment Research Council and the US National Science Foundation. The overall aim of this project is to
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-constrained environment, where they face difficult choices of what data to analyse first, and whether to gather additional intelligence, potentially at the cost of delay or increased risk. Addressing this
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a thriving, multidisciplinary environment where collaboration across structural biology, computation, and translational research is strongly encouraged. You will contribute to initiating new funding
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, to identify indicators and warnings of hostile or malicious activities. Analysts must make these assessments rapidly in a highly-pressured and resource-constrained environment, where they face difficult choices
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environment through activities such as delivering invited guest lectures, participating in seminars, workshops, and early career researcher forums. Furthermore, you will play a key role in cascading
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some flexibility on exact start time. What we can offer you You will be part of a world-class research environment within the Geology and Geophysics Research group in the School of Ocean and Earth
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-solving, and organisational skills are essential. What we can offer you The University of Southampton provides a world-class research environment, with REF 2021 demonstrating that 92% of our research is
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for infection control in future hospital environments. The project adapts space technologies originally designed for propulsion and in-situ resource utilisation (ISRU) to healthcare applications. You will work
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an international reputation for its research, teaching and enterprise activities. Electronics and Computer Science provides a unique, friendly and supportive environment that facilitates use-inspired and multi
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will join an international team in the project “Quantifying evolution of magmatism and serpentinization during the onset of seafloor spreading”, funded by the UK Natural Environment Research Council and