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for antenna cooperation and beamforming in satellite constellations to achieve high performance with low energy consumption. The second will address terrestrial–non-terrestrial (TN–NTN) integration and network
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applications in the frequency range from 1 GHz to 500 GHz. Our facilities include a uniquely well-equipped laboratory for advanced millimeter wave measurements and a state-of-the art cleanroom facility. About
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of components with nanofabrication techniques at the AlbaNova NanoFabLab clean room and experimental low temperature measurements in the EKMF lab at Fysikum. Qualification requirements In order to be admitted
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projects from low level hardware interfaces to high level optimized applications mainly in Python and under Linux Increasing the functionality and reliability of the beamlines in order to realize
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Doctoral student in materials chemistry with focus on electrolyte design for Mn-based flow batteries
, you will be guided by supervisors. Doctoral studies end with a thesis and a doctoral degree. More about being a doctoral student at LTH on lth.se. https://www.lth.se/english/study-at-lth/phd-studies
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interested in continuing your academic journey and simultaneously contribute to the development of high- performance low light photovoltaics, leading to a better world? In collaboration with FADOS and Chalmer
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full range of equipment for semiconductor nanofabrication at Lund Nano Lab , a central key facility for fabrication of materials and devices on the nanoscale. The environment also hosts the Swedish Chips
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. The physical layer of 5G and 6G networks revolves around the multi-antenna MIMO technology. 5G uses 64 antennas in each base station and 4 antennas in devices, which might grow by 5-10 times in 6G
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and cost-effective solutions integrating renewable energy sources, electrification of heat, and energy storage are deemed. We aim to design and prototype different technologies, including low and high
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internationally leading expertise in the synthesis, processing and characterization of III-V and III-Nitride materials. This includes access to a full range of equipment for semiconductor nanofabrication at Lund