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of leaves as organic antennas, roots as microbial growth stimulators for energy production, and plants as biosensors. Study of the electromagnetic properties of plant organs in relation to their functional
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High-Frequency Electronics in one or several of the following fields: "Radiofrequency (RF) Circuit and Complex Antenna Systems", "Reconfigurable Intelligent Surfaces (RIS)", "Advanced Design Methods" - 1
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group, Division of Communication Systems, Antennas and Optical Networks, Departmet of Electrical Engineering. We pride ourselves on fostering scientific excellence, innovation, and collaboration with
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-Frequency Electronics in one or several of the following fields: "Radiofrequency (RF) Circuit and Complex Antenna Systems", "Reconfigurable Intelligent Surfaces (RIS)", "Advanced Design Methods" - 1 Associate
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within a Research Infrastructure? No Offer Description The Institute for Communication Systems (ICS) home of the 5G/6G Innovation Centre (5G/6GIC) is seeking to appoint a Research Fellow in Antennas and
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an electromagnetic wave, i.e., to behave like a real (organic) antenna. The objective of the project is to understand the electrical properties of plant cells, tissues, and organs. Where to apply Website https
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on novel antennas, waveguides, and transmission lines. You will work in a large team to integrate novel wireless frontends with RF power transfer and RF sensing circuits, and demonstrate them in practical e
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together with functional 5G antennas. The research to be performed will require the synthesis of chiral materials, both based on Tellurium and on artificial 2D heterostructures. It will also involve
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) along with adjustment of their composition and optimisation of printing parameters. Design of antennas, matching circuits and rectifiers for RFEH structures, as well as design and supervision
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also foresees the integration of optimal working materials together with functional 5G antennas. The research to be performed will require the synthesis of chiral materials, both based on Tellurium and