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Polymer manufacturing is highly energy intensive, and achieving net zero requires more than fuel switching. This project focuses on process systems engineering for industrial decarbonisation
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and Astronomy at the Streatham campus in Exeter. The UK Government has undertaken a assessment of the potential of metamaterials science and technology, which is available here . Due to the nature
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We are working on creating a new type of Radio-Frequency Integrated Circuit technology based on optically induced plasmas in silicon to create photo-conductive switches. This combines low-cost
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the specific engineering details of the contact layer created during the Linear Friction Welding (LFW) of Titanium alloys. The successful candidate will have a first-class or upper second-class honours degree in
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experience in cleanroom microfabrication, actuator design and characterisation, finite element modelling, rheology, ex vivo tissue methods and cell culture. You will work across engineering and life sciences
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the specific engineering details of the contact layer created during the Linear Friction Welding (LFW) of Titanium alloys. The successful candidate will have a first-class or upper second-class honours degree in
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of Mechanical Engineering at Imperial. The project is a collaboration between engineering scientists at Imperial College London and medical scientists at the Technical University of Munich, Germany. Within
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future career in healthcare technology. The University emphasises the clinical translation of innovative research to ensure real-world impact through the Healthcare Technologies Institute and the Precision
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the aim is to establish fully integrated motor drives as a key enabling technology for sustainable electricity generation, high-efficiency industrial systems, lightweight transport applications, and
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We are seeking a full time Senior Researcher to join Technical Safety and Governance (TSG) lab at the Department of Engineering Science in central Oxford. The post is funded by the Oxford Martin AI