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Field
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prototypes currently being developed within the consortium. In close collaboration with senior lab members, you will use our multi-scale computational fluid-structure interaction framework that describes
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-biology and biology-biology interfaces rely on lubricity, durability, and the fragility of near-interface structures. These parameters, along with cytotoxicity, influence MD performance and biological
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-qualified candidate will also possess one of more or the following Field geology mapping experience Interest in structural geology, tectonics, and economic mineralization for planetary exploration Ability
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an underlying foil structure which acts as a supporting spring. This project concerns journal AFBs and associated nonlinear vibration issues. As with all fluid bearings, rotor systems fitted with journal AFBs
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diffusion often deviates from ideal Fickian behaviour, following complex, system-dependent mechanisms that are poorly understood. These materials also undergo aging, which affects their structural and
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, and the potential for instabilities and vibrations in the mechanical design of the structure will be key. The project will also involve development of analytical models of the fluid-curtain interaction
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in control systems and fluid-structure interaction. The students will be supervised by Prof Khac Duc Do and the co-CIs of the project. Student type Future Students Faculties and centres Faculty
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control systems and fluid-structure interaction. The students will be supervised by Prof Khac Duc Do and the co-CIs of the project. Student type Future Students Faculties and centres Faculty of Science