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Field
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profoundly affect their mechanical properties and overall performance. Therefore, understanding the temperature field and developing effective thermal control techniques are vital to ensuring a high-quality WA
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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 advanced microstructural characterization
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ground-breaking research in the field of shock-physics, involving elements of materials science, mechanics, and ultrafast diagnostics. You will be based at Begbroke Science Park as part of the Impact and
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of deformation and stress in the elements. In this DPhil project, you will develop and implement novel, NURBS based, element formulations and validate the application of IGA to mechanical problems with complex
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Apply now Job no:534070 Work type:Faculty - Pro Tempore Location:Eugene, OR Categories:Research/Scientific/Grants, Earth Science, Physics Department: CAS Earth Sciences Rank: Research Assistant
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Applications are invited to undertake a 3.5 year PhD programme to explore new laser surface engineering methods for functionalising the electrochemical performance of solid-state batteries. In
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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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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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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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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