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will be combined with theoretical modelling, statistical data analysis, and numerical simulations to identify the governing mechanisms and to determine whether and how proximity to a phase transition
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that harness mechanics and geometry. As a PhD candidate, you will adopt and extend in-house homogenized constrained-mixture (finite element) models for cardiovascular tissues towards simulating cartilage G&R
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second PhD candidate focused on molecular simulation, and with project partners at UvA and TNO. Your experiments will connect molecular-level reaction mechanisms to materials performance. This is what you
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. Additionally, you will investigate the coexistence of classical telecom traffic and quantum signals, effect of impairments, such noise, crosstalk, etc. The project will combine theoretical and simulation studies
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; a copy of your Master's thesis, or a draft if the thesis has not yet been completed; if applicable, a list of publications or other relevant scientific work. Applications can be sent up to and
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relevant skills. Academic transcripts of both your BSc and MSc degrees. A digital copy of your MSc thesis (if applicable). The contact information for two references (letters not required at this stage
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to ease the packaging and minimize interface losses. As PICs scale in complexity and packaging becomes a bottleneck, relying on purely theoretical simulations for these interfaces is insufficient; there is
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report the skills that are relevant for the PhD positions you are applying): o continuum mechanics for large deformations o numerical mechanics and analysis (FEM simulations, meshing, etc.) o programming
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(decoder design, simulation, performance evaluation). You will not do this alone. This position is part of QuBriC, the first pan-European doctoral network dedicated entirely to quantum error correction
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, interviews, backcasting, transition pathways, policy mixes, social simulation modelling, and possibly participatory value evaluation or gamification. You will collaborate with other early-career and senior