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-term to the 30th June 2027. We are seeking a highly motivated postdoctoral researcher to investigate the safety, security, control, and capabilities of advanced AI systems, with a particular focus on
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conditions, helping to improve design, control, performance, and reliability. What you would be doing: You will focus on developing nonlinear dynamic models of fuel cell electrochemistry and on identifying
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and is fixed-term to the 30th June 2027. We are seeking a highly motivated postdoctoral researcher to investigate the safety, security, control, and capabilities of advanced AI systems, with a
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and how these interactions are regulated to control cellular function, with particular relevance to human disease, including amyotrophic lateral sclerosis (ALS). The lab is located at King’s College
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across Africa and Europe, with opportunities for international travel. About you You will hold a PhD (or equivalent) in microbiology, virology, immunology or a related discipline and have experience
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years. The project involves the synthesis and characterisation of molecular lanthanide complexes to develop physical inorganic principles for controlling optical linewidths and oscillator strengths in
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and how these interactions are regulated to control cellular function, with particular relevance to human disease, including amyotrophic lateral sclerosis (ALS). The lab is located at King’s College
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, implementation and evaluation of multi-robot scouting methods suitable for wheeled-legged systems in physically-realistic simulated environments and on real robots. You will hold or be close to completion of a PhD
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Oxford. The principal objective of the project is to investigate the mechanisms controlling cardiac pericyte tone under normal and ischaemic conditions. In particular, the project aims to identify and
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Humour in Primary Open-Angle Glaucoma’, will examine molecular differences between aqueous humour samples from patients with primary open-angle glaucoma and age-matched cataract controls. You will work