292 quantum-physics-"https:"-"https:"-"https:" Fellowship positions in United Kingdom
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industrial partners. The role will focus on developing advanced physics-based continuum models for sodium-ion batteries, with particular emphasis on hard carbon anodes and phase-changing layered oxide cathodes
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applicant must demonstrate experience in: Developing creative and rigorous solutions to meet complex technical objectives Designing and applying novel approaches for evaluating process technologies, including
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. Discover more about Diversity and Inclusion at UniMelb. We're committed to a barrier-free recruitment process and ongoing workplace support, providing adjustments throughout. We warmly encourage applications
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magnetic samples. This involves close collaboration between the Nanoscience and Spintronics groups in the School of Physics & Astronomy. The researcher is expected to actively contribute to the research
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running single-molecule measurements the next, and analysing stochastic signals or writing a paper the next day. We are looking for a motivated researcher with a background in physics, engineering
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the application process may be addressed to jobs@lshtm.ac.uk . Please quote reference ITD-DIB-2026-04. The supporting statement section should set out how your qualifications, experience and training meet each
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application of innovative Machine Learning (ML) frameworks to understand and predict the global hydrological cycle. The role will require bridging the gap between process-based physical modeling and scalable
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-free recruitment process and ongoing workplace support, providing adjustments throughout. We warmly encourage applications from people with disabilities. Learn more about how we support an accessible
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until 10pm of the closing date. Any queries regarding the application process may be addressed to jobs@lshtm.ac.uk . Please quote reference PHP-HSRP-2026-06. The supporting statement section should set
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You will join our team at the Optoelectronics Research Centre and work on the Engineering and Physical Sciences Research Council funded project HyMeta: Hyperuniform Disordered Metasurfaces