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technology transfer and an insilico approach to the development of continuous processes based. The project will use as a baseline the mAb solutions platform process and standard downstream operations as
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structural systems integrated into various robotic systems. This project will explore innovative design and manufacturing methods, and develop novel structural/material systems, in the context of sustainable
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materials. The project will be carried out in collaboration with the Rutherford Appleton Laboratory (RAL) of the UKRI Science & Technology Facilities Council (STFC). Scintillators are a class of luminescent
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particle size changes due to breakage and agglomeration. The rates are dependent on process parameters (e.g., impeller speed and operation) and material properties (e.g., hardness and flowability
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are eligible to apply. This project aims to develop a measurement technology (pressure sensitive paint) to work in an industrial blast range. The technique has been demonstrated at small scales and in University
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needs and individual circumstances. Entry requirements: Applicants should have, or expect to achieve, at least a 2:1 Honours degree (or equivalent) in Mathematics, Physics, Chemistry, Materials Science or
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electrochemistry, material characterisation and interfacial science. As part of the project, the researcher will use bespoke corrosion test cells and implement electrochemical measurements to understand corrosion
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from the School of Mechanical, Materials, Mechatronic and Biomedical Engineering and the Sustainable Buildings Research Centre at UOW and the Centre for Engineering Materials and Structures at UoS
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Funding providers: EPSRC iCASE and Airbus Operations Limited Subject areas: Experimental Mechanics, Digital Image Correlation (DIC), Mechanical Engineering, Aerospace Engineering, Materials
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Prospective candidates will be judged according to how well they meet the following criteria: A first-class honours degree (or equivalent) in Engineering, Physics or Materials Science Excellent written and