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the project. Preferred: Skills and experience in molecular spectral analysis. Knowledge of molecular theory and spectral modeling. Excellent problem-solving and communication skills. Excellent written, oral
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Polymers using a combination of quantum and force field-based simulations that will be further integrated into a force field-based Molecular Dynamics (MD) approaches to assess the permeability and
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. In this role, you will help build a systems-level understanding of human biology by developing computational approaches to model the dynamic regulatory programs of cells and tissues. By combining
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and optimising its application to identify new ATXN3-binding molecules (warheads) for experimental evaluation. The plan will involve: a) Model Preparation, Molecular Dynamics Simulations and
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) points; b) Experience in molecular simulation methods, such as molecular dynamics, molecular docking, virtual screenig, and free energy calculations; c) Experience with molecular-based artificial
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molecular dynamics; and enhanced-sampling free-energy methods (e.g., metadynamics and thermodynamic integration) to quantify adsorption and interfacial reaction processes. The research also includes method
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atomistic simulations to overcome the limitations of traditional molecular dynamics approaches, which struggle to capture the experimentally relevant size (20–100 nm) and molecular complexity of LNPs. ML
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modeling. For more details, please view https://www.ntu.edu.sg/cee. We are looking for a Postdoctoral Researcher to advance innovative research in multiscale clay science and geotechnical engineering. The
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experience on geotechnical engineering Relevant research experience in molecular dynamics simulations and computational fluid dynamics will be preferred. Excellent proposal writing and report writing skill
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technology. Development of cutting edge foundation models for protein design, small molecule property prediction, or protein function prediction Data generation and curation, including molecular simulation and