57 algorithm-development-"University-of-Surrey" positions at Chalmers University of Technology
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University of Technology , where you will develop explainable AI models for personalized treatment planning in sports medicine and orthopaedics. You will work in a highly interdisciplinary environment
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staff position within a Research Infrastructure? No Offer Description Would you like to contribute to the development of sustainable Zinc ion batteries for stationary energy storage applications? Are you
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Are you passionate about artificial intelligence and its potential to transform healthcare? Join us as a postdoctoral researcher at Chalmers University of Technology , where you will develop
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photonics by developing and implementing experimental methods, maintaining and improving laboratory facilities, and collaborating closely with researchers, PhD students, and external partners. As a Research
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of artificial intelligence, cloud systems, and next-generation communication infrastructures. In this position, you will develop agentic AI solutions that can autonomously configure and deploy 6G and edge-cloud
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you pursue. Project overview Dahlin's research group works with chemically modified nanostructures for various applications. We are interested in developing a new kind of platform for trapping single
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this position, you will develop agentic AI solutions that can autonomously configure and deploy 6G and edge-cloud functions, using digital twins and advanced validation techniques. You will work closely with
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systems against network-based threats. The research will explore network attack surfaces in distributed AI, assess their impact on system reliability and trustworthiness, and develop cross-layer defenses
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their impact on system reliability and trustworthiness, and develop cross-layer defenses that ensure both scalable efficiency and robust security in next-generation AI infrastructures. About us The department of
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Doctoral student in Materials Chemistry of Doped Organic Semiconductors in EU Training Network FADOS
is to achieve targeted modification of semiconductor properties through doping. The goal of the project is to develop fundamental understanding and innovative fabrication processes to solve urgent