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experimental observations of fatigue and corrosion fatigue failure in AM samples. The goal is to establish causal pathways for understanding failure in AM components. The position will involve development
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to characterize individual tumour cells isolated from patient blood samples. The project builds on molecularly imprinted polymer (MIP)-based probes developed by MIPrecise partners to selectively capture and
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robustness Integrate the developed process with existing PFAS treatment technologies Analyze samples using advanced chemical and spectroscopic techniques (e.g., LC-MS, IC, TOC) Disseminate findings through
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students. In the project you will: Perform longitudinal proteomic and degradomic analyses of wound healing models and clinical samples. Identify proteolytic cleavage sites and post-translational
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around public transport stations, travel survey data, and satisfaction survey data. Further data is expected to be collected during the project. The focus will be on analysing and modelling the factors
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directly identify and characterize bacterial pathogens, such as Listeria monocytogenes , from enrichment samples without the need for further culturing within one day. The new food safety tool will leverage
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: Develop your own PhD plan outlining experimental trials. Design and conduct in vivo trials with salmonids. Collect biological samples and observational data from lab-based studies and at real fish farming
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international research experience. Responsibilities and qualifications You will develop sampling and characterization methods to analyze the composition of current footwear. This includes applying advanced
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at different life-stages in an aquaculture environment. Your responsibilities are expected to include: Designing and conducting fish experiments in aquaculture facilities Collecting biological samples and
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samples, generating robust insights into evolutionary history, population dynamics, and extinction processes. Your primary tasks will be to: Develop bioinformatics pipelines for assembling genomes from