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Field
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Your position Biomolecular dynamics, such as conformational changes, are the understudied link between biomolecular structure and function. Single-molecule FRET is an established technique, unique
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focus on understanding how axons maintain their structure and function, and how these processes break down in disease. You will have the opportunity to contribute to one of our ongoing projects addressing
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Your Job: Develop AI pipelines that translate -omic signatures into dynamic model parameters Implement reinforcement-learning agents that optimise model performance Collaborate closely with
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link structure-property relationships from DFT, MD, phase-field, TEM/SEM, and other multimodal datasets from simulation and experiment Develop benchmarking protocols and toolkits to evaluate AI models
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Engineering, or related fields. Solid background in geotechnical earthquake engineering, structural dynamics, and finite element modelling Experience in multi-hazard risk assessment is desirable. Experience in
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‘Integrated Structural Dynamics’ led by Dr. Sigrid Milles. The successful candidate will study the conformational dynamics of intrinsically disordered proteins involved in clathrin mediated endocytosis
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intelligence, epidemiology, health economics, molecular diagnostics, and public health. It is structured around six scientific work packages and three real-world use cases (UCs), with continuous input from a
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sciences and public health. It is structured around six scientific work packages and three real-world use cases (UCs), with continuous input from hospitals, government agencies and healthcare organizations
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the structure and function of chromatin-associated complexes involved in gene repression. About Us: We are a dynamic and international team working within the South Australian immunoGENomics Cancer Institute
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& Emergent Behaviour in Complex Networks“. Here, we intend to investigate how structural properties of complex networks influence information and opinion dynamics. Our goal is to gain a deeper understanding of