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Field
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simulation models do not fully capture the complex, temperature-dependent, anisotropic, and evolving optical and thermal properties of thermoplastic composite materials. In addition, the desired prediction
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a function of variables such as composition, temperature, pressure and oxygen fugacity. The candidate will focus on understanding and quantifying controls on the mobilisation, concentration and
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the rheological characterization and constitutive modelling of molten unidirectionally reinforced thermoplastic composites. Position 1 – Ply and blank bending during hot press forming Wrinkling is one
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candidates to tackle the rheological characterization and constitutive modelling of molten unidirectionally reinforced thermoplastic composites. Position 1 – Ply and blank bending during hot press forming
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diagrams generated by such models, can be used to explore equilibrium assemblages with respect to the proportion and composition of mineral, melt and fluid phases across a range of geologically-relevant
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the Earth's crust as a function of variables such as composition, temperature, pressure and oxygen fugacity. The candidate will focus on understanding and quantifying controls on the mobilisation, concentration
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requirements, resulting in organ- and tissue-specific vasculature, such as their size, vascular wall composition, blood flow rate, mechanical properties and stresses, hemodynamics, and permeability. Efforts
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operational performance. Based on feedwater composition (salinity, monovalent/divalent ion ratios, and valuable elements), you will model and design ED configurations that produce tailored concentrate streams
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composition, blood flow rate, mechanical properties and stresses, hemodynamics, and permeability. Efforts to engineer or regenerate vessels, as well as to vascularize tissues and organ(oid)s, should therefore
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Vacancies PhD position on the design and fabrication of MEMS drag force-based flow and fluid composition sensors Key takeaways In this project, we will combine well-known thermal flow sensing