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internationally leading programme of research. You should possess significant knowledge in physical acoustics in the ultrasonic regime, cavitation physics, the design and construction of high-powered ultrasound
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leveraging the combined power of multi-modal X-ray imaging and in-line artificial intelligence (AI). The project also involves the Detector Development Group at the Science and Technology Facilities Council
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for 2 years You will lead and manage your own research within the project, developing and applying advanced electronic structure and molecular simulation methods. The work will involve transition-metal
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using optics rather than electronics. Optical neural networks would enable us to enhance both the power efficiency and speed of neural networks by several orders of magnitude. The specific aim is to
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expertise in a range of synthesis techniques and advanced materials characterisation tools such as X-ray, electron and neutron scattering techniques, spectroscopy, and crystallography. You will be able
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dichroism, negative stain electron microscopy, and nano differential scanning fluorimetry, alongside experience in biochemical studies of enzymes and molecular cloning techniques. The ability to manage
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literature in the field of inequality, in particular income and wealth concentration. Excellent communications skills are essential, along with the ability to contribute ideas for new research projects and
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) in materials or chemistry and experience in battery research. You will have expertise in a range of synthesis techniques and advanced materials characterisation tools such as X-ray, electron and
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computational fluid dynamics and wind turbine fluid mechanics together with the ability to understand the aerodynamics of wind energy generation and floating body dynamics is essential. Informal enquiries may be
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• Excellent project‑management skills and the ability to work independently • Outstanding interpersonal skills and the ability to collaborate across disciplines and with external partners Informal enquiries may