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electromagnetic interference; ii) Design of printing patterns for conductive (electromagnetic) inks; iii) Printing of substrates with varying printing parameters; iv) Electromagnetic shielding test; v) and
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; Familiarity with high-power amplifier systems is a plus. Has relevant experience in the areas of Digital Signal Processing (DSP) design and implementation is a plus. Experience in electromagnetic simulation
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. Experience in electromagnetics, plasma modelling, or kinetic modelling. Familiarity with optimisation methods or reduced-order modelling. Demonstrably high level of: analytical capability; ability
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required. Experience in nanofabrication and computational multi-physics or electromagnetics modelling would be advantageous. The successful candidate will join an interdisciplinary nanophotonics research
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required. Experience in nanofabrication and computational multi-physics or electromagnetics modelling would be advantageous. The successful candidate will join an interdisciplinary nanophotonics research
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seismic, controlled source electromagnetic (CSEM) and magnetotelluric (MT) dataset. We are particularly looking for someone with skills in the application of rock physics models to seismic and/or
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seismic, controlled source electromagnetic (CSEM) and magnetotelluric (MT) dataset. We are particularly looking for someone with skills in the application of rock physics models to seismic and/or
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graduate students. It has research programs in Communications and Signal Processing; Computer Engineering; Lasers, Optics, and Applications; Controls and Robotics; and Electromagnetics and Remote Sensing
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up expertise on Rydberg electromagnetically induced transparency (EIT) in room-temperature vapour cells. This project will combine our optical tweezer capabilities with Rydberg EIT to study how
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a plus. Has relevant experience in the areas of Digital Signal Processing (DSP) design and implementation is a plus. Experience in electromagnetic simulation using CST Studio Suite and circuit