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and machine learning, digital health, and advanced signal processing, with applications in healthcare, autonomous systems, industry, and energy. Through interdisciplinary research, we contribute
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dynamics simulations and machine learning methods to study the structure and electrochemistry of disordered materials are also encouraged to apply. The project primarily aims to understand the complex
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. The successful candidate will also contribute to the development of teaching and learning within the subject area. The research can be based on controlled experiments as well as production data from commercial
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, ability to quickly learn new techniques, and strong time management skills. Strong collaboration and communication skills. Meritorious for the position: • Proven ability to collaborate with researchers from
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an integral part of KTH’s core values as a university and public authority. Learn more about our benefits and what it's like to work and grow at KTH. Trade union representatives Contact information to trade
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benefits. Equality, diversity and equal opportunities are essential to quality and form an integral part of KTH’s core values as a university and public authority. Learn more about our benefits and what it's
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to quality and form an integral part of KTH’s core values as a university and public authority. Learn more about our benefits and what it's like to work and grow at KTH. Trade union representatives Contact
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collaborative and comfortable working as part of a team, while also being able to work independently and take initiative. You are curious, eager to learn, and have a genuine interest in technology. What we offer
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of engagement. Read more at: Department of Computing Science Project description and working tasks The project will develop privacy-aware machine learning (ML) models. We are interested in data-driven
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of the central challenges on the path toward large-scale quantum computing. In this PhD project, you will investigate how machine learning can enable faster, more scalable QEC decoding. The goal is to develop new