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for pathogenic microorganisms. Molecular biology skills sufficient to characterize the microbial community present in dynamic settings both qualitatively and quantitatively. Bioinformatic and genomic analysis
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» Combinatorial chemistry Chemistry » Combinatorial chemistry Chemistry » Inorganic chemistry Chemistry » Molecular chemistry Chemistry » Physical chemistry Chemistry » Reaction mechanisms and dynamics Chemistry
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the area of fundamental modelling with molecular dynamic and ice/substrate interface bonding analysis. The main aspects of the research fellow role include conducting icing experiments in the Cranfield Icing
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research ideas. Experience in conducting molecular dynamics simulations—including free energy calculations or advanced sampling techniques—is essential, ideally involving proteins, nucleic acids, or other
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group of A/Prof Patrick Burr, please visit https://www.patrickburr.com/group In your role you will be responsible for performing ab-initio and molecular dynamics simulations, and for developing inter
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: Quantum simulation with Rydberg atom arrays (theory) Research Area: Atomic, molecular, and optical physics (AMO), quantum control, quantum simulation Relevant Fields: Quantum information science, quantum
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simulations using DFT (particularly of surface processes); kinetic Monte Carlo simulations; molecular dynamics simulations; classical and machine-learned force fields. Highly developed skills in scientific
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: Quantum Simulation with Rydberg Atom Arrays (Experiment) Research Area: Atomic, molecular, and optical physics (AMO), quantum control, quantum simulation Relevant Fields: Quantum information science
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simulation or machine learning of soft and biological matter, e.g. Monte Carlo, molecular dynamics and finite element computer simulations. Origins of life research involving topology and chirality
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discovery and chemical biology. Our lab is working to understand the molecular mechanisms leading to efficient elicitation of tumor vulnerability for potent cancer targeting. We develop Targeted Protein