12 postdoctoral-soil-structure-interaction-fem-dynamics PhD positions at University of Cambridge
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                advance the use of low-carbon cements in precast concrete in aggressive ground for a range of buried structures. Precast concrete involves various types of concrete and offers a controlled environment for 
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                formation, dynamics and functions of four-stranded DNA G-quadruplex structures and modified DNA bases in the genome (e.g. see Genome Biology, 2025 25, 155; Nature Chemistry, 2025, 17, 875; PNAS, 2024, 12(7 
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                and Technology (CST) at the University of Cambridge. The goal of this PhD programme is to launch one "deceptive by design" project that combines the perspectives of human-computer interaction (HCI) and 
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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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                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 diverse and dynamic 
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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 diverse 
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                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 diverse and dynamic 
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                biology, molecular biophysics, structural biology and particularly genomics. Students will contribute to one or more of our primary research areas below: Our main area of interest is on the structure and 
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                dynamics of chromatin modifications required for transposon silencing. Project details This project aims to advance our understanding of small RNA-mediated chromatin silencing using advanced genomics and 
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                Ascl1 are important. We have undertaken a comprehensive discovery experiment to identify all the proteins that can physically interact with Ascl1, using a method we developed called RIME (Rapid