50 geographic-information-system-policy-strategy PhD positions at University of Nottingham in Uk
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manufacturing (CfAM) and advanced bio-printing (Additive BioFabrication Laboratory), and will provide experience with new and advanced 3D-printing equipment not available elsewhere. This project is aligned with
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Research Centre, School of Medicine. The PhD project is clinically focused towards improving the recovery of patients who survive an episode of pneumonia. Pneumonia is a common illness that results in over
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(CfAM) and advanced bio-printing (Additive BioFabrication Laboratory), and will provide experience with new and advanced 3D-printing equipment not available elsewhere. This project is aligned with
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Health economic evaluation of community acquired pneumonia in the UK Pneumonia is a common illness that results in over 100,000 hospital admissions per year in the UK. Following hospital treatment
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(Additive BioFabrication Laboratory), and will provide experience with new and advanced 3D-printing equipment not available elsewhere. This project is aligned with the “Dialling up Performance for on Demand
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will provide experience with new and advanced 3D-printing equipment not available elsewhere. This project is aligned with the “Dialling up Performance for on Demand Manufacturing” Programme Grant, which
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field. A background in organic chemistry, and/or high-throughput experimentation is desirable. Proficiency in programming languages (Python/MATLAB) commonly used in machine learning applications is
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, an innovative low-pressure airtightness testing technology co-developed by the University of Nottingham and Build Test Solutions Ltd (BTS). This is a fantastic opportunity to work towards a PhD whilst working
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-sponsored by UK’s leading semiconductor manufacturer Dynex Semiconductor for an exciting research project below: Vehicle electrification is urgently needed to reduce the CO2 emissions of conventional vehicles
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sectors such as motorsport and aerospace is pushing electric motors to operate at ever increasing speeds. This demands smarter and more efficient motor winding technologies capable of handling high