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builds upon our group's expertise in magnetically levitating superconducting microparticles on a chip. The research is placed in the vibrant research environment at Chalmers, encompassing the Quantum
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Fusion energy is one of very few long-term solutions for a sustainable base load electricity production with negligible environmental impact and minimal security and safety concern. We are now
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impact on the environment originating from this enormous energy consumption. Phosphor-converted LEDs have become mainstream for many lighting applications. Commercially used LED phosphors are inorganic
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flow control. The candidate will work within a dynamic and collaborative research environment, gaining invaluable experience in developing innovative solutions that have tangible impacts on data security
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of cybersecurity and privacy, addressing real-world challenges in data protection and information flow control. The candidate will work within a dynamic and collaborative research environment, gaining invaluable
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-film technology, and microwave engineering. This multidisciplinary approach allows us to create advanced instruments for radio astronomy and environmental sciences. GARD, recognized internationally
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for radio astronomy and environmental sciences. GARD, recognized internationally for its Terahertz instrumentation, has significantly contributed to projects like Herschel HIFI, ALMA, and APEX. As part of
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innovative methodologies while contributing to real-world imaging applications. Moreover, you will enjoy working in a diverse, collaborative, supportive and internationally recognized environment. The PhD
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, you will enjoy working in a diverse, collaborative, supportive and internationally recognized environment. The PhD project centers on understanding and improving deep learning methods for 3D scene
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embedded into an interdisciplinary environment between the Chalmers departments of Computer Science and Engineering as well as Chemistry and Chemical engineering , and the Wallenberg Centre for Quantum