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, and how these processes will play out differently in different communities and amidst existing sets of social relations. This PhD will advance this work by developing and evaluating a set of diverse
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degree. Mode of Study Full-time Start Date 1 October 2026 Funding Information: This PhD project is in a competition for a Faculty of Science funded studentship. Funding is available to UK applicants and
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papers. Attendance at summer schools, such as the National Centre for Atmospheric Science summer school , will provide additional networking opportunities. This PhD project is in a competition for a
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Primary Supervisor -Prof Michal Mackiewicz Scientific background Marine litter is a key threat to the oceans health and the livelihoods. Hence, new scalable automated methods to collect and analyse data are needed to enhance our understanding of sources, pathways and impact of litter. Cefas is...
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Primary Supervisor - Dr Stefan Bidula Scientific background Dimethylsulfoniopropionate (DMSP) is a stress molecule produced by marine organisms such as phytoplankton, algae, corals, and some plants. It is broken down to the gas dimethyl sulphide (DMS) by marine bacteria, providing the...
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]. This PhD is about investigating whether the presence of the ABBS bacteria is directly causing prostate cancer development. Seven potential ways in which specific anaerobic bacteria could result in cancer
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International Partnering Award, offering travel and training opportunities in Brazil. For information on eligibility and how to apply: http://www.uea.ac.uk/phd/mmbdtp Entry requirements At least UK equivalence
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. The programme offers postgraduates the opportunity to undertake a 4-year PhD research project whilst enhancing professional development and research skills through a comprehensive training programme. You will
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. The aim of this project is to determine how ppRHOs underpin this ecosystem service. Thus, the PhD candidate will physiologically characterise ppRHO knock-in diatom cell lines and investigate how those
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atmosphere (1). Research Methodology: The primary objective of this PhD studentship is to develop near real-time capability for top-down ffCO2 quantification, based on synchronous changes in atmospheric CO2