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study of some of Egypt's earliest metal objects found in funerary contexts. Using advanced non-invasive analytical techniques, the research will evaluate manufacturing methods, technological choices, and
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encourage applications from underrepresented groups in STEM. How to apply (note there are 2 elements to the process): Please apply though the official University process. Instructions for applying through
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the project element or equivalent with a minimum 60% overall module average. PLUS The potential to engage in innovative research and to complete the PhD within 3.5 years. A minimum of English
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to applicants who are eligible for UK fee status (see https://www.lancaster.ac.uk/study/fees-and-funding/fee-status/ for further details). How to apply (there are 2 elements to the process): Please apply though
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changing the physical parameters of the sensing element (e.g. atomic density, dimensions). Other OPM types and configurations will be explored (scalar, vector, gradiometers) to design the next generation of
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). Qualifications: Applicants must hold or expect to hold a first or upper second-class honours degree (or equivalent), or a Master’s degree from a relevant discipline with a substantial quantitative component (such
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wall elements of aerostructures are essentially made from high-strength foils in Titanium or Nickel alloys for reducing weight and improving engine fuel consumption. Limited studies exist on hot forming
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of thousands of potential materials. A key component of the project is the creation of a high-quality defect database for functional mixed-anion semiconductors, which will be used to train the machine learning
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block diagrams, the high-level layout of component arrangements or source code. Supervisory Team: The candidate will be supervised within the Cybersecurity and Computing by Dr Abdul Razaq and Dr Sanaz
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Solubility, and dissolution dynamics, are key physico-chemical properties of active ingredient solid forms and are required across the chemical industry, however their determination remains a