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, involving, amongst many, the transport of liquid and gas fuels, irrigation and water-distribution systems. The flow in these systems is often turbulent and it is estimated that around 20% of the global
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GIF CDT: A Novel Gas/Liquid contactor for Direct Air Capture and industrial CO2 capture technologies
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to these simulations is the crystal plasticity finite-element method (CPFEM). These models encode analytical representations of a wide variety of features of real and complex systems, treating, for example, various
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deep-learning methods. These descriptors will then become the basis of surrogate models that you will use to explore high-dose damage in Fe. You will consider not only damage in perfect crystal bulk Fe
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low neutron cross section (reducing radiation heating and embrittlement due to helium generation), high thermal conductivity and low thermal expansion, and low reactivity with the liquid lithium used in
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Neutrino (SBN) programme located along the Booster Neutrino Beamline at Fermilab, USA. Each detector in the SBN programme utilises the liquid argon time projection chamber (LArTPC) technology. The main goal
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high throughput equipment, including high content microscopy and liquid handling robotics. Methods will include the drug inhibition and stimulation of receptor internalisation. The project will use RNAi
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together with automated high content microscopy and will use liquid handling robotics. Methods will include ligand / receptor interactions and the stimulation of receptor internalisation. The project will
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extent relies on the amount of the gas-liquid inter-facial area or films generated over the packing materials. This project will employ Computational Fluid Dynamics (CFD) Techniques to simulate
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, together with sophisticated optimisation and control algorithms, including machine learning methods. Sensors that will be developed will include those based optical microscopy, which can observe the crystal