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innovative solutions for future communication networks and sensing-enabled services. Job description The successful candidate will contribute to research on energy-efficient network design, optimization, and
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or communications venues. Interest in mission-critical and critical infrastructure scenarios. What you will do Develop models, algorithms and optimization methods for resilient 6G transport networks, using machine
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or communications venues. Interest in mission-critical and critical infrastructure scenarios. What you will do Develop models, algorithms and optimization methods for resilient 6G transport networks, using machine
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or AI-based decision support good ability to communicate verbally and in writing in English good collaboration skills and the ability to build relationships and research networks. We will also evaluate
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in large pre-trained models (vision-language models), generative models (flow matching, diffusion), simulation-based inference, and robust and active learning. The group has a wide network of
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-bandgap-key-future-green-electronics, https://c3nit.se/ Subject description The purpose of this project is to develop a data-driven approach for optimizing the growth of semiconductor materials by combining
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indirect links across several layers - competition, facilitation, soil microbes, pollinators, herbivores - shape which plant species coexist in species-rich communities. Develop new higher-order network-flow
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must be met no later than the time the employment decision is made. At least three of: (stochastic) partial differential equations ((S)PDEs) graph theory/network science stochastic optimization and
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partners. Therefore, the applicant needs to have good collaboration skills. The researcher also needs to be able to disseminate and communicate scientific results and knowledge within existing and new