20 phd-position-in-computer-vision PhD positions at University of East Anglia in United-States
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. Communication of scientific findings through publications and conferences. Person Specification A highly motivated candidate with: A degree or equivalent in numerate, computational, or environmental subject areas
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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
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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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have recently identified a set of five anaerobic bacteria, known as the Anaerobic Bacteria Biomarker Set (ABBS), that, when present, are associated with the development of aggressive prostate cancer [1
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lead to the allocation of energy and nutrients towards AMR instead of biomass growth. This PhD project will unravel the mechanisms driving AMR in pioneer and extreme soil environments in the Arctic
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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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Primary Supervisor - Prof Ian Renfrew Scientific background Arctic climate change and the associated sea-ice retreat are having significant impacts on both the atmosphere, the ocean and their interactions. Atmosphere-ocean surface heat exchange is highest during cold-air outbreaks and high...
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Primary Supervisor - Dr Tiziana Luisetti Scientific background Climate change related tipping points (e.g. a slowdown in the North Atlantic ocean currents) may pose risks to marine resources (e.g
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supervision across the Schools of Chemistry, Pharmacy & Pharmacology and of Environmental Sciences, gaining experience in both laboratory and computational approaches. You will benefit from two 3-months
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, the race is on to understand how these DNA changes affect disease progression and post-operative recurrence risk. This PhD project uses CRISPR/Cas9 to examine risk variants in patient-derived cells and