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Name: |
Professor S Harris |
Organisation: |
University of Sheffield |
Department: |
Physics and Astronomy |
Current EPSRC-Supported Research
Topics: |
Biophysics
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Drug Formulation & Delivery
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New & Emerging Comp. Paradigms
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Quantum Optics & Information
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Software Engineering
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Synthetic biology
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Current EPSRC Support |
EP/Z53318X/1 | Hub for Quantum Computing via Integrated and Interconnected Implementations (QCI3) | (C) |
EP/T026308/2 | CCPBioSim: Biomolecular Simulation at the Life Science Interface | (P) |
EP/V027395/2 | EPSRC-SFI: Supercoiling-driven gene control in synthetic DNA circuits | (P) |
EP/Y008693/2 | Establishing the Accessible Computational Regimes for Biomolecular Simulations at Exascale | (P) |
EP/T026715/2 | CCP-QC: Collaborative Computational Project - Quantum Computing | (C) |
EP/T022205/1 | JADE: Joint Academic Data science Endeavour - 2 | (C) |
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Previous EPSRC Support |
EP/Y008693/1 | Establishing the Accessible Computational Regimes for Biomolecular Simulations at Exascale | (P) |
EP/V027395/1 | EPSRC-SFI: Supercoiling-driven gene control in synthetic DNA circuits | (P) |
EP/T026308/1 | CCPBioSim: Biomolecular Simulation at the Life Science Interface | (P) |
EP/T026715/1 | CCP-QC: Collaborative Computational Project - Quantum Computinge- | (C) |
EP/S030697/1 | Mesoscale modelling with Fluctuating Finite Element Analysis (FFEA) | (P) |
EP/J001325/1 | Functionalisable metallo-cages as nano-vessels | (C) |
EP/D053102/1 | A multi-scale model of charge transport through melted, stretched and in vacuo DNA structures | (P) |
EP/E015018/1 | Calculation of Protein Dielectric Constants using Molecular Dynamics Simulation | (P) |
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Key: (P)=Principal Investigator, (C)=Co-Investigator, (R)=Researcher Co-Investigator
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