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Requirements: Applications are welcome from highly motivated candidates with a background in: Civil Engineering, Materials Science, or related disciplines. Experience or interest in Applied Rheology, Concrete
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(e.g., academia, pharmaceuticals/materials industry, data science). Additionally, you will gain research and communication skills, including a strong emphasis on integrating computational and
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of up to 50% between individually measured species and the total concentration known to be present! This matters because BVOC loading determines the pool of reactive organic material available to form
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architected materials or metamaterials (MTM) that can undergo targeted non-linear response. You will develop a computational framework that can reveal novel Multiphysics (thermo-mechanical) MTM solutions
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matter, such as how droplets form, merge, and stay apart. This research not only deepens our understanding of chemistry but also supports the development of new materials, medicines, and environmentally
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scientists. Applicants should have completed (or closer to completion) their undergraduate degree in Physics, Material Science, Physical Chemistry or related Physical Sciences (preferably with first-class
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The PhD studentship will be based at the University of Cambridge in the Department of Materials Science and Metallurgy as part of the Structural Materials Group. The Structural Materials Group is a
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This is an exciting opportunity to undertake industrially linked research with the Laser Processing Group at the Manufacturing Technology Centre (MTC) and the Advanced Materials Research Group
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A funded PhD studentship is available to join the Professor Josette Camilleri, Clinical Professor of Endodontics and Applied Materials in a research project focused on the microstructural, chemical
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-efficient and high-performance photonic devices have been driven by the quantum revolution. This PhD studentship aims to develop novel materials and components that facilitate strong light-matter interactions