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We are seeking a postdoc to co-design efficient and realistic simulation algorithms for noisy quantum circuits in superconducting hardware, combining quantum modeling with hardware-aware performance
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focused on modeling and simulations of turbulent mixed-phase clouds. This interdisciplinary project encourages collaboration with experts in atmospheric physics. The successful candidate will contribute
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, fatigue, creep etc.), other AM technologies (PBF-EB, DED), in-situ process monitoring during PBF-LB (optical tomography, melt pool monitoring, etc.), thermodynamic simulations, advanced materials
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of cell factory engineering. Develop software tools that enable programmatic interaction between large language model agents and metabolic models, enabling automated simulation, interpretation, and
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plan (e.g., microfluidic channel optimization, polarization-dependent scattering studies, spectral imaging implementation, or algorithm development). Planning experimental campaigns, simulations, and
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., microfluidic channel optimization, polarization-dependent scattering studies, spectral imaging implementation, or algorithm development). Planning experimental campaigns, simulations, and modeling efforts
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verbal communication skills in English. Experience with cycle-level architectural simulation. You are expected to be somewhat accustomed to teaching, and to demonstrate good potential within research and
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. This eligibility requirement must be met no later than the time the employment decision is made. Strong written and verbal communication skills in English. Experience with cycle-level architectural simulation. You
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, creep etc.), other AM technologies (PBF-EB, DED), in-situ process monitoring during PBF-LB (optical tomography, melt pool monitoring, etc.), thermodynamic simulations, advanced materials characterisation
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. A copy of your PhD thesis Use the button at the foot of the page to reach the application form. A background check may be conducted as part of the application process. Please note: The applicant is