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Field
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nanocellulose and graphene suspensions, polymer nanocomposites, hydrogels, adhesives, and various biomaterials (e.g. biofilms, tissues). Dynamics of complex fluids – Our work examines thixotropic yield stress
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, lipid vesicles, polymer physics, active materials, single molecule biophysics, biomaterials, materials chemistry, fluid mechanics, rheology, and computational modeling. Candidates should apply at https
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Job reference: SAE-028389 Salary: £37,174 - £45,413 per annum depending on experience Faculty/Organisational Unit: Science and Engineering Location: Oxford Road Employment type: Fixed Term Division
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the development of this technology and ensuring adequate shelf life for the fluid produced, we must evaluate the microbiological performance and the effectiveness of integrated disinfection controls. In
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, running fluid codes, undertaking experiments with high-power lasers, developing code for experiment control or feedback, or of supervising undergraduate or graduate students will be an advantage. Candidates
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of the solution in 2L bags. Each “batch” produces 25 bags. As part of the development of this technology and ensuring adequate shelf life for the fluid produced, we must evaluate the microbiological performance and
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(assessment of membrane processes and water quality analysis) are required. Experience in computational fluid dynamics modelling of water treatment and desalination processes is an advantage. Willingness
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related field is required, along with a solid understanding of Geophysical Fluid Dynamics. ABD will be considered in a related field. Preferred Qualifications: Experience in numerical ocean modeling is
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candidate will play a key role in developing and advancing new models and simulations for Computational Fluid Dynamics (CFD) hypersonic codes. Specific tasks include developing new turbulence and transition
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cohorts of neurodegenerative disorders, which include clinical, neuroimaging, and fluid biomarker phenotypes. Characterization of the genetic topography of Alzheimer's disease (AD) provides a unique