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Field
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characterisation of fluorescent diamond particles, their integration into glasses and polymers, the fabrication of hybrid functional materials like glass and polymer fibres, the characterisation of the created
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I supervise projects in particle physics. My main emphasis is on phenomenology, comparison of predictions with experimental measurements. I follow developments in flavour physics: weak decays
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their volumetric changes in a typical automotive battery in operation. The model will incorporate anisotropy effects at the active material level by extending particle-level models, and will combine it with
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, involving both phase change, particle collision and mechanical action. From a fundamental scientific standpoint, there is still a great deal to understand about this process, despite its common use in
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the observed pattern of fundamental particles and forces emerged, using information carried by gravitational waves originating from the earliest times. To this end, with members of the Global And Modular BSM
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I am an experimental particle physicist that works on the search for phenomena that are beyond our current theoretical understanding in terms of the Standard Model of Particle Physics. The research
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centres pool joint research activities across disciplines. These include the following: energy; information/systems/technologies; mobility systems; elementary particle and astroparticle physics; climate and
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funded innovation resilience programmes are also implementing these systems at scale. However, there is very limited consistent research evidence on the efficacy of different engineered filter media and
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aviation applications. This project will deliver novel methods to perform velocity measurements in confined flow domains. These methods will combine advanced machine vision methods with conventional particle
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into molecules cooled down to near absolute zero. He himself studies these ultracold molecules at a temperature of around 1 nanokelvin. At nanokelvin temperatures, particles in a substance move so slowly