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- FUNDACION DE INVESTIGACION BIOMEDICA HOSPITAL 12 DE OCTUBRE
- FUNDACIÓN PARA LA INVESTIGACIÓN MÉDICA APLICADA
- Faculdade de Medicina da Universidade do Porto
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experimental structural / aerodynamic testing - Experience with wind turbine analysis and modelling methods Funding: 3.5 year Scholarship - minimum tax-free stipend at the current UKRI rate (for 2025/26
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flow characterisation Nanoparticle synthesis and drug delivery systems Cell culturing and in vitro biofilm modelling Collaborative research across engineering, chemistry, dentistry, and microbiology
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of the modern age. What if there was another way? What if we could utilise the very land that lies at the foot of wind or solar farms? By pumping water into a sealed flexible membrane under a mass of soil we can
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during continuous shearing, which impacts wind turbine foundations, underground pipelines, pharmaceutical manufacture, among others. Sand is the most ubiquitous engineering material on earth, yet research
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composites To propagate uncertainty in material behaviour through these models using uncertainty quantification/machine-learning (UQ/ML) algorithms To optimise the manufacturing process with the help
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their operational reliability. The PhD student will combine mathematical models, in-house laboratory tests in a wind-wave-current flume (https://research.ncl.ac.uk/amh/ ) and numerical methodology to quantify
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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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: An stipend for 3.5 years (currently £20,780 p.a. for 2026/27) in line with UK Research and Innovation rates Payment of university tuition fees The budget for project costs is £9,000 which can be used
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application! Your work assignments The primary focus of this PhD position will consist in generating bioengineered models of human trigeminal pain, implement them in organ-on-a-chip systems emulating trigeminal
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small code development will be necessary to implement actuator disc/line wind-turbine models. This approach facilitates a deep understanding of the flow physics surrounding MS formation. You will develop