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, demonstrating strong proficiency in electronic structure calculations, high-performance computing (HPC), and code development for molecular spectroscopy. This full-time, 3-year position supports the STFC-funded
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vapour-processing approaches. These films will be characterised through a variety of high-resolution electron microscopy techniques to determine both structure and composition at the nanoscale. This will
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, fellow anthropologists and sustainability experts on structural power composites (SPCs). These transformative materials can do two things at once: store electrical energy whilst carrying mechanical loads
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the field of non-thermal chemistries is a positive. Additionally, we seek those with exceptional interpersonal skills (ability to work in a cross-disciplinary team and build collaborative relationships with
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solving problems under uncertainty, from either an AI, robotics, or verification perspective, and an ability to manage own academic research and associated activities. Informal enquiries may be addressed
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Applications are invited for the above research position to join the Power Electronics, Machines and Drives Research Group at the University of Nottingham. The PEMC group has undergone a
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defined PAHs, nanographenes, and molecular semiconductors with tailored electronic and photophysical properties. The employment duration is 3 years. Your future tasks: The selected candidate will work
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of the electron gun and waveguide required to produce the high-intensity electron beams required for delivering photons in FLASH mode. • Develop and apply advanced numerical simulation and/or optimisation tools
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fixed-term duration of 24 months with the possibility of extension. The successful candidate will: • Conduct in-depth simulations and analysis to model and understand the performance of the electron gun
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expression and purification, together with expertise in at least one of the following areas: in vitro biochemistry, genome biology, or cryo-electron microscopy. We are looking for a proactive and collaborative