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micromagnetic simulations. You will also study surface acoustic wave driven FMR in various other systems. This post-doc position is part of a 4-year PEPR SPIN ACOUSKYR project, in collaboration with LAF, SPINTEC
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the study of nucleation mechanisms, the analysis of out-of-equilibrium energy and thermodynamic balances, and the validation of results by comparison with experimental data and atomistic simulations
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will focus on diffuse interface models based on the Navier–Stokes–Korteweg equations. Activities include the study of droplet and bubble dynamics in multiphase flows. Numerical simulations will be
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be required to submit employment verification documents on their first day of work. For a list of acceptable documentation, follow this link: https://www.indstate.edu/sites/default/files/media
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with the Agroecosystems Modeling Team to collect, simulate, and analyze agroecological data for peer-reviewed publication. Prospective applicants should demonstrate a strong history of publications and
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challenging for classical computing architectures. Some of your responsibilities will include: Design and develop mixed-signal circuits for implementing ONNs. Modeling, simulate and benchmark different
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analog circuits for implementing ONNs for computing. Modeling, simulate and benchmark different computing tasks such as sensor data processing. Explore ONN implementation topology and its energy efficiency
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for the simulation of microplastic transport in the Mediterranean Sea, with specific focus on the Central Mediterranean. The model, developed on the basis of a Lagrangian formulation, will be forced by ocean current
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of central London. For more information: https://www.kcl.ac.uk/engineering About the role This role will support the delivery of a mesh generation project, funded under a recent major £7m EPSRC Programme Grant
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thermodynamic simulations. The research findings of WERA can be transferred to many other fields of the circular economy. PhD study in WERA takes 4 years in a close cooperation between PhD students and