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high-value industrial facilities. This role places you at the forefront of research that tackles scientific challenges and fosters innovation in manipulating continuum robots across industrial
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has driven strains to adapt to specific media and fermentation conditions and then use this information to build, design and test appropriate engineering strategies for the development and construction
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will be involved in high-throughput X-ray crystallography, fragment-based screening and structure-based drug design and will be responsible for crystallisation, structure determination, structural and
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nanoparticles and programmed nanoscale 3D printing. The successful candidate will play a significant role in the design, simulation, and fabrication of novel nanocomposite photonic arrays, will report directly to
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(Innovation in Dynamic Cables for Offshore Renewable Energy) project. Power export cables for floating offshore wind turbines, termed ‘Dynamic Cables’ are required to move with the floating device
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for the application of condition monitoring. Successful candidates will engage in internationally recognized multidisciplinary research. The project involves the innovation of new optical fibre, specifically designed
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, as matching their interest and expertise, in aspects of design, fabrication or characterisation of novel electronic devices, circuits and applications. The work builds on the ALPACA - A new low
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Appleton Laboratories. The project will design and construct a lab-scale soft X-ray microscope for biological imaging using soft X-rays generated using ultrafast lasers and applying coherent diffractive
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Rosalind Franklin Institute (RFI), and the Central Laser Facility (CLF) at the Rutherford Appleton Laboratories. The project will design and construct a lab-scale soft X-ray microscope for biological imaging
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cognitive psychology, and experience in experimental design and statistical methods and their application is essential. You will have knowledge of a wide range of quantitative and qualitative research