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suspension pipe flow by 30–40% across different flow rates. This makes designing and controlling these flows difficult. The difficulty arises partly because these flows do not fit the conventional ‘laminar
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project autonomy, and strategic intent and operational use. The research is planned to use a comparative multiple-case study design. You will conduct in-depth empirical research with construction firms
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multiple-case study design. You will conduct in-depth empirical research with construction firms undergoing digital transformation. This will include interviews with executives, IT leaders, digital
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era. This (fully funded) PhD studentship focuses on provable security. Information You will develop the next generation of post-quantum cryptographic schemes that are designed with implementation
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nephrology. What will you do? Design and optimise a transcutaneous vascular access port Develop and test biomaterials and surface coatings with a focus on hemocompatibility Perform in vitro experiments
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qualifications: Knowledge of polymer processing and statistical experimental design (DoE) Collaborative mindset and enthusiasm for working in interdisciplinary teams Strong organizational skills and a structured
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utility to more complex-shaped multi-layered structures is limited. In this project you will design and construct advanced DH systems to visualize complex optical samples comprising of multiple layers
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: • To design and optimize an electrolyzer that simultaneously promotes mass transfer, contaminant degradation, and gas recovery; • Study the influence of operating parameters (current density, reactor geometry
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advanced biomaterials, medical technology and clinical nephrology. What will you do? Design and optimise a transcutaneous vascular access port Develop and test biomaterials and surface coatings with a focus
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passionate about building an entanglement-based quantum internet? In this PhD project, you will design an entanglement source, a routing architecture, protocols, and set up a testbed that distributes and