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. The work will be carried out within the Endomembrane Structure and Function Research Lab https://www.brookes.ac.uk/research/units/hls/groups/endomembrane-structure-and-function) in the School
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to experimental campaigns and will use image-derived structures (including XCT images where available) to develop mechanistic, validated mathematical multiscale models. We are recruiting a Postdoctoral Research
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, i.e., model-based studies of complex, dynamic systems. The group hosts two core educational programs, M.Phil. and PhD in System Dynamics, which are among the leading programs in the field worldwide. In
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structural applications due to their low weight, good strength, high recyclability, and ability to enable cost-efficient manufacturing of complex-shaped components. However, due to the interplay between
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transfer, fluid–solid interactions, and pressure drop in complex thermal structures. Design and train physics-guided surrogate models (e.g. neural networks with embedded physical constraints) for rapid
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is subject to internal financing. About the project/work tasks: The System Dynamics Group provides education and conducts research in System Dynamics, i.e., model-based studies of complex, dynamic
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, or computational modelling of complex systems. Proficiency with simulation software (e.g., ANSYS, COMSOL, MATLAB) and numerical analysis methods. Experience in acoustic, structural, and fluid-structure interaction
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” tab as needed. Skills and Knowledge: Experience with synthesis of complex inorganic and materials, structural characterization, and quantitative thermodynamic and thermophysical analysis and process
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Technologies, ORCID: https://orcid.org/my-orcid?orcid=0000-0001-7930-1751 Topic Description: Smart textile technologies are rapidly advancing, making the formation of conductive tracks directly on textile
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at the University of Birmingham. Our group specialises in advanced native mass spectrometry, HDX‑MS, cross‑linking mass spectrometry, and structural proteomics for interrogating protein complexes and assemblies. We