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variable acceleration fields. Working alongside leading experts and key collaborators at the University of Newcastle, you will bridge the gap between fundamental fluid dynamics and real-world separation
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interdisciplinary teams and communicate effectively, with preferred experience in microfluidic fabrication techniques, fluid dynamics, manufacturability, and scale-up considerations. We regret to inform that only
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will contribute to a dynamic research program focused on the design, development and optimisation of innovative therapeutic delivery systems. Working alongside a multidisciplinary team of researchers
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propagation, storm surge modelling, and coastal dynamics. Building up of a database of sea level anomaly with extreme weather conditions: Utilize the developed numerical model to build a database of sea level
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We are seeking one highly motivated and creative postdoctoral researcher to join our dynamic team at the Synthetic Biology for Clinical and Technological Innovation (SynCTI), Synthetic Biology
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computing models (non-von Neumann architectures) as a Methode for quantifying computational properties based on emergence and complex dynamics in nanomagnet systems. Nanomagnet metamaterials, Artificial Spin
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: Biochemistry Microbiome ecology Metabolic modelling Python and/or R Microbiome bioinformatics Longitudinal or temporal data analysis Microbial ecology and community dynamics This profile would suit someone with
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-compatible materials, including graphene, silicon nitride, or other functional layers for electrical transduction. • Device modelling and simulation: Model carrier transport, charge-state dynamics
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vanadium-containing electrolytes. Design and optimise novel flow field architectures using bio-inspired and hybrid design approaches, and perform computational fluid dynamics (CFD) simulations using tools
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-threshold, limit of detection, sensitivity, specificity, selectivity, false-positive rate, reproducibility, dynamic range and receiver-operating-characteristic analysis. Investigate reaction failure modes