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materials are well-studied, little is known about systems where the host and dopants are small organic molecules (MoSS). There is huge potential of utilising MoSS for changing and modulating materials
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(both nanosecond and femtosecond), to perform photoelectron imaging of the anions, to analyse and interpret the results, and to disseminate the results as needed. This project builds on and extends recent
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Innovation (UKRI). The research builds upon our expertise in understanding and predicting novel magnetostructural coupling schemes in quantum materials. We employ theoretical analyses of crystal and magnetic
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Ultracold Polar Molecules" funded by UK Research and Innovation (UKRI). The research builds upon our expertise in creating ultracold RbCs molecules in the rovibrational ground state and trapping them in
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environment in terms of appropriate chemical descriptors (e.g. polarity, cavity shape, pH) Perform molecular dynamics simulations to sample a dynamic range of protein-pigment conformations Construct a series of
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events, and PhD supervision within university research centres, including Quantitative Research in Financial Economics which maintains strong links with industry, policy and national and international
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) Support the development of CPD strategies based on our PAR training and toolkits. Key responsibilities: To understand and convey material of a specialist or highly technical nature to the team or group
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. This is a unique opportunity to work at the forefront of hydrogen technologies and their integration to the energy systems. The successful candidate will hold a PhD degree (or close to completion) in
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subject. A PhD (or be close to submission) in a topic relevant to heritage and green corridors. Experience Experience in conducting high quality academic research. Demonstrable ability to write material
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PhD (or be close to submission) in Archaeology or a related subject. Experience Experience in conducting high quality academic research. Demonstrable ability to write material of a quality commensurate