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Field
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Millimeter waves have high potential to be applied in future drones and satellite communications. To overcome the path loss, high gain and beam steerable antennas are required in these systems. Due
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second time, we will investigate the possibilities to control side beams for tracking or sensing purposes. The proposed study is on the border between antenna design and digital signal processing
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making use of well-known diversity techniques at the physical layer such as channel coding and multiple antennas, the project will investigate diversity techniques at the link and network layers. It is the
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. With this project we propose to design and investigate polyrylene-based antennae capable to perform singlet fission, and couple them to polypyridyl ruthenium catalysts, to tackle these challenges in
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stringent latency constraints. Besides making use of well-known diversity techniques at the physical layer such as channel coding and multiple antennas, the project will investigate diversity techniques
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alliance of 60 top-notch ICT companies, semiconductor firms, and research institutions has united to spearhead specific aspects of 6G: (1) software antennas, (2) AI-driven network software, and (3
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alliance of 60 top-notch ICT companies, semiconductor firms, and research institutions has united to spearhead specific aspects of 6G: (1) software antennas, (2) AI-driven network software, and (3
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alliance of 60 top-notch ICT companies, semiconductor firms, and research institutions has united to spearhead specific aspects of 6G: (1) software antennas, (2) AI-driven network software, and (3
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alliance of 60 top-notch ICT companies, semiconductor firms, and research institutions has united to spearhead specific aspects of 6G: (1) software antennas, (2) AI-driven network software, and (3
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. JOB DESCRIPTION AND POSITION REQUIREMENTS: The Antennas and Electromagnetics Department of the Applied Research Laboratory at Penn State University is seeking an entry level Research and Development