36 structures "https:" "https:" "https:" "https:" "https:" "https:" "Birmingham Newman University" research jobs at UNIVERSITY OF SOUTHAMPTON in United Kingdom
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to experimental campaigns and will use image-derived structures (including XCT images where available) to develop mechanistic, validated mathematical multiscale models. We are recruiting a Postdoctoral Research
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emissions under controlled stress conditions. Undertake acoustic and vibroacoustic measurements including airborne acoustics, air-coupled ultrasonics, structural vibration/waves. Work in specialist facilities
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candidates will engage in cutting-edge research under the mentorship of leading experts in one of the following priority research areas: Research area 1: Intelligent Structural Optimization using Physics
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, recognizing our continued commitment to promoting equality for women in science and engineering. Our Faculty offers exceptional research facilities in fluid dynamics, structures, and their interactions
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per cent of world universities and one of the UK’s top 15 research-intensive Universities (https://www.southampton.ac.uk/ ). We have an international reputation for research, teaching and enterprise
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balance. The University of Southampton is committed to sustainability and has been awarded the Platinum EcoAward. Where to apply Website https://www.timeshighereducation.com/unijobs/listing/409216/research
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representations and translated into written language. Your work will sit at the interface between sensor data, sign language structure, and NLP, enabling end-to-end sign language translation that goes beyond simple
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-intensive Universities (https://www.southampton.ac.uk/ ). We have an international reputation for research, teaching and enterprise activities. The job This is a part time (0.6 FTE) fixed appointment for a
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of Southampton! Applicants should provide: A CV A cover letter outlining suitability for the role Contact details for at least two recent referees Where to apply Website https://www.timeshighereducation.com
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, metallic and particulate contamination in optical silica Understanding how the glass structure, impurities and interfaces set optical loss Fabrication of waveguides and ring resonators from these glass