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to harness quantum speed gains now within sight after researchers solve massive simulation problem in a heartbeat, https://www.aalto.fi/en/news/ability-to-harness-quantum-speed-gains-now-within-sight-after
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the key electromagnetic coupling effects between layers and enables fast prediction of their tunable response without relying solely on full-wave simulations. To create efficient adjoint-based optimization
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and time-varying performance through quantitative comparison with analytical modeling and full-wave simulation results. This position is part of the MetaTune Doctoral Network "Reconfigurability using
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for multilayer tunable metasurfaces that captures the key electromagnetic coupling effects between layers and enables fast prediction of their tunable response without relying solely on full-wave simulations
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other projects ongoing in the group: a laboratory simulator of the neutron star dynamics in rotating superfluid helium-3 and studies of vortex dynamics in superfluid helium-4 using nanomechanical sensors
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comparison with analytical modeling and full-wave simulation results. This position is part of the MetaTune Doctoral Network "Reconfigurability using inversely designed metasurfaces", which has been funded
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facilities in the School of Chemical Engineering (https://www.aalto.fi/en/school-of-chemical-engineering/research-infrastructure ), Micronova, and Otanano, training your experimental skills on infrastructure
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. The PDF should include: Curriculum vitae (CV) Motivation letter Contact information for two referees Copy of your Master’s degree certificate Transcript of records for the Master’s degree Applicants who
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for impacts assessments, system dynamics, simulations etc. The researcher is also expected to carry out collaborative work with external stakeholders such as industry partners, depending on the project needs
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! This position combines both practical acoustics measurements with simulations and finite-element modelling, and will allow a candidate to gain experience across the fields of architecture, engineering, and