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Field
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Metamaterials have extraordinary properties and functionalities not typically found in conventional solids. Among metamaterials, 3DFMMs represent a groundbreaking innovation for systems requiring
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The primary task of the project is to unravel the atomic-scale mechanisms that underlie the high strength and ductility of Mg-rare earth (RE) based alloys. This will be achieved through a combination of
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coefficient of thermal expansion (CTE) mismatch than W/steel, the manufacturing readiness level remains low. Solid-state welding without interlayers may be viable due to closer CTE match, but their application
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Computational Fluid Dynamics (CFD) and Conjugate Heat Transfer (CHT) modelling, which captures both the fluid & solid domains, as required to develop this understanding for engine-representative geometries and
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the two leaflets. However, most studies to date have focused on symmetric bilayers. This project addresses this gap by integrating molecular dynamics simulations with experimental techniques such as solid
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science. A wide range of quantum theoretical methods shall be employed. A solid background in quantum mechanics and programming skills are prerequisite for this position, as is the readiness to learn and to
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Discipline: Engineering & Technology, Mechanical Engineering, Other Engineering University of Warwick – School of Engineering Scholarship Qualification: Doctor of Philosophy in Engineering (PhD
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sensors systems, which involves the characterisation and optimisation of near- and mid-infrared lasers, paired with work on the optical and mechanical packaging of these sources. Furthermore, DC7 will work
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research in mechanics of materials. Experience in theoretical solid mechanics and metallurgy is of benefit. Conditions of employment We offer you, in accordance with the Collective Labour Agreement for Dutch
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theoretical methods shall be employed. A solid background in quantum mechanics and programming skills are prerequisite for this position, as is the readiness to learn and to apply new methods. For an initial