14 postdoc-molecular-dynamics-simulation PhD positions at The University of Manchester
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allowed computational fluid dynamics (CFD) to flourish, becoming an indispensable for many industries. Simulating the full Navier-Stokes equations is computationally prohibitive for most applications, so
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at the molecular scale, even breaking covalent bonds. Indeed, mechanical force is a formidable source of energy that, with its ability to distort, bend and stretch chemical bonds, is unique in its ability to promote
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scattering with computer modelling such as molecular dynamics simulations and AI-assisted data mining. The new technical capabilities will help bridge the current gap in biocide development, i.e., to link
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missions such as search-and-rescue or large-scale surveillance—where environments are unknown, dynamic, and unstructured—robotic swarms must adapt, select appropriate actions, and respond to changing
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(£20,780 for 2025/26) and tuition fees will be paid. The offshore environment is characterised by complex and highly dynamic turbulent flows that define the performance and design of renewable energy systems
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pigmented and non-pigmented silicone elastomers developed within AMFaces. The successful candidate will simulate aging through cellular senescence and ECM modifications, incorporate immune cells to reflect
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receive training in organic synthesis, chemoenzymatic synthesis and molecular biology, all geared towards the design and development of in vitro translation of non-canonical amino acids. Transferable skills
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engineering wake models to mesoscale simulations with wind-farm parametrisation, when predicting wake effects and thus annual energy production. The student will improve current models used by industry such as
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in synthetic organic chemistry are particularly encouraged to apply. Any experience in biochemistry will be beneficial, however full training will be provided for the necessary molecular biology and
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automation, and mission-critical communications. A key challenge in cell-free massive MIMO is maintaining high performance under dynamic channel conditions, hardware imperfections, and potential adversarial