15 density-functional-theory-molecular-dynamics PhD positions at University of Sheffield
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PhD Opportunities in Molecular and Cellular Biology School of Biosciences PhD Opportunities Self Funded View DetailsApply Online
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January 2026 Details Quantum error correction by combating noise in quantum systems, is an enabler of various quantum technologies. For the purpose of near term application, there are several competitive
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always work well, and new solutions are very much needed. This PhD places you at the forefront of discovery, focusing on a key protein, ELAVL1, that controls inflammation at the molecular level. What makes
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Exciting Fully Funded PhD Opportunity: Drive Innovation in Hydrogen Technology. Project: High-Pressure Hydrogen Generation, Storage, and Use - Shape the Future of Clean Energy with Us! School of
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interaction (FSI) and dynamic response of seal rings under real-world conditions. Collaborate with the Leonardo Centre for Tribology: Work with top researchers on experimental and modelling techniques. Why
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to the renewable energy revolution. Work with Industry Leaders: Collaborate with John Crane, a $1B global technology company driving innovation in sealing technologies. Gain Hands-On Research and Industry Experience
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Students Dr Marco Colombo Application Deadline: 30 December 2025 Details Are you ready to shape the next generation of high-performance engineering systems? Join a cutting-edge, fully-funded PhD project
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-generation mechanical seals for high-pressure hydrogen systems—key to renewable energy. Work with Industry Leaders: Collaborate with John Crane, a $1B global technology company driving sealing innovation. Gain
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capture technologies. In this project, you will: Develop a 3D Digital Model: Create an advanced computational model of high-pressure mechanical seals. Apply Computational Fluid Dynamics (CFD): Simulate gas
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overcomes the geographic limitations of conventional systems, enabling global scalability and accessibility. Using advanced computational fluid dynamics (CFD) approaches, the project is aimed at advancing