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Field
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blood flow and oxygenation. This will require surgical induction of chronic hypoxia in mice, and electrophysiological and imaging techniques and analysis. You will be expected to design and perform your
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will be further developed by the successful candidate in collaboration with the supervisory team. Main tasks The successful candidate will: develop and evaluate image-classification workflows
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marine vehicle systems for marine survey. We also explore tools for the visualisation, clustering and classification of extensive marine-based image archives, characterisation of change in multi-year
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reticulum is cleared by a pathway known as "ER-phagy", yet it remains unclear how ER-phagy dysregulation contributes to cancer progression. Using image-based siRNA screens, we have identified novel regulators
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responsibility for courses covering the fundamentals of environmental remote sensing, remote sensing methods, geospatial data analysis, and image processing. Supervising practical exercises and projects involving
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will be experimentally tested, with an analysis of the resulting fatigue life and crack trajectory. The tests will be monitored using a Digital Image Correlation (DIC) system, enabling the determination
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-based techniques into an existing heterogeneous computing paradigm, and evaluate their solution e.g. on the automated guided vehicles at a partner institution. Their secondary objective will be to develop
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of maturity, this technology requires to experiment a change of paradigm to guarantee a sustainable development for the years to come. One pathway to achieve this paradigm shift relies on the development
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authorization or notification; template document provided. signed NOMIS code of conduct; template document provided. two external letters of reference for the candidate, to be e-mailed by the author
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completion of all pre-employment or background checks required for the role in terms satisfactory to the University. Also, to meet the University’s obligations under the National Higher Education Code