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analysis of such data will thus be a core activity in the doctoral program. Furthermore, performing flow cytometry analyses and cell sorting will be central and also immunological assays will be used
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and Alice Wallenberg (KAW) Foundation. The DDLS program funds 50 high-profile young group leaders (“Fellows”), over 210 postdoctoral positions and has established a research school for 260 PhDs
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of new high-performance materials. Who we are looking forThe following requirements are mandatory: To qualify as a Doctoral student, you must have a Master's degree (masterexamen) of 120 credits or a
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existing activities at the international forefront. The department’s research programmes are: Applied Nuclear Physics, Chemical and Biomolecular Physics, Condensed Matter Physics of Energy Materials, High
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- 21:59 (UTC) Country Sweden Type of Contract Not Applicable Job Status Full-time Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff
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is on developing high-performance metallic materials that are resistant to burning or combustion in high-pressure, high-purity Oxygen environments. The target products include components for space
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several industrial and academic partners. The candidate will work with high-performance computing resources (NAISS) and advanced CFD tools, primarily OpenFOAM, with the possibility to use Nek5000 or LBM
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Doctoral student in development of nanowire devices for photonic neuromorphic computing (PA2026/472)
of writing a doctoral thesis. You are expected to participate in a research project, doctoral courses, seminars and conferences. The project takes its starting point in high performance nanostructures
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(UTC) Country Sweden Type of Contract Temporary Job Status Full-time Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position
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of the largest pan-cancer signaling models in the literature. SPARCED is compatible with high-performance and cloud computing, can simulate thousands to millions of single-cell trajectories, is easily expandable