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, and simple: key goals for future 6G networks and the Internet of Things. Using mathematical modeling, computer simulations, and practical experiments with software-defined radios, the research will
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Destination Earth Climate Change Adaptation Digital Twin Project, Phase 3 (https://destine.ecmwf.int /), where INAR is a contributing member. The Climate DT project is setting up an operational simulation
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: http://www.utu.fi/cyber For further information about the position, please contact: Associate Professor Kaitai Liang, [email protected] . With questions about the application process, please contact
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, omics and genetics. Collaborate closely with other team members, and national/ international collaborators. Assist other team members in experiment planning, data processing and interpretation of results
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interest and expertise, the work will include: Develop laser-cooling techniques for trapped ions including the setup and operation of laser systems Optimize the laser-cooling trap built by our collaboration
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aggregate societal impacts and equity implications affecting different groups of people, as well as on how to integrate this assessment into existing local governance processes. The PhD project should focus
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that the position may remain unfilled if no suitable candidate is identified. For more information about the role or application process, please contact: Professor Simo Hostikka ([email protected]
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application domains: bioinformatics, breeding, biomaterial synthesis, and cellulose‑processing enzyme design. You will develop hybrid quantum‑classical algorithms to tackle domain‑specific, computationally
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computing and quantum advantage is a prospective topic across four application domains: bioinformatics, breeding, biomaterial synthesis, and cellulose‑processing enzyme design. You will develop hybrid quantum
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, cybersecurity, and optimization to develop next-generation methods for monitoring, decision-making, and resilient operation of safety-critical cyber-physical systems. We combine fundamental research with