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Field
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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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, this project will address major environmental and technological challenges associated with future mobility, including tyre-wear particle emissions, emerging Euro 7 requirements, lower embodied carbon, extended
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computing and GPU infrastructure for the development and evaluation of LLM-, VLM-, and agentic AI solutions Research across the entire automotive software development lifecycle, from requirements and software
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mass ejections, and the rapid expansion of research into exoplanetary radio emissions using large radio telescopes (NenuFAR, LOFAR). Methods Use and processing of space-based (radio, particle, magnetic
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, micro-CT, particle size analysis, calorimetry, and synchrotron experimental measurement techniques. Knowledge of AI-based and machine-learning methods is also beneficial. For further information about a
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particular focus on particle therapy, and radiation oncology. Clinical Cancer Research – Addressing cancer diagnostics, treatment, and clinical research across a broad spectrum of tumor entities
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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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, particle image velocimetry and quantitative image-based analysis of aerosol transport. Design, fabrication and bench-top validation of an adaptive soft-mist inhaler research prototype. Low-inspiratory-flow
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I specialise in the numerical modelling of high-energy particle collisions , such as those occurring at the Large Hadron Collider. Accordingly, most projects I offer straddle the intersection
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. The energy is continuously injected at the level of the individual particles or agents, keeping the system out of equilibrium. Examples of active matter include bacterial colonies, cytoskeleton formed by