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of this position is to exploit Rydberg-atom quantum sensors to probe the near field of THz metamaterials and to image electromagnetic fields in the vicinity of subwavelength resonators. As a first step toward this
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, non-dissipative media, such as electromagnetic, elastic, or acoustic waves in metamaterials. In the present context, it will be applied to investigate the non-modal amplification of flow perturbations
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encouraged to apply. Candidates with particular research emphasis and interests in the areas of power and energy systems, electromagnetics, or radar signal processing are of particular interest and thus
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, Electromagnetics/Antennas, Integrated Circuits, Optics, Physical Electronics Devices, Physical Electronics/MEMS, Optoelectronics, Energy, Robotics, Signal Processing for Image & Video, Signal Processing for Speech
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Lexington, KY Grade Level 10 Salary Range $30.48-39.10/hour Type of Position Staff Position Time Status Full-Time Required Education AS Click here for more information about equivalencies: https://hr.uky.edu
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Location Lexington, KY Grade Level 10 Salary Range $30.48-39.10/hour Type of Position Staff Position Time Status Full-Time Required Education AS Click here for more information about equivalencies: https
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Location Lexington, KY Grade Level 10 Salary Range $30.48-39.10/hour Type of Position Staff Position Time Status Full-Time Required Education AS Click here for more information about equivalencies: https
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software tools for the study of electromagnetic problems at the nanoscale. Where to apply Website https://aunicalogin.polimi.it/aunicalogin/getservizio.xml?id_servizio=1079 Requirements Additional
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. Ability to work in a dusty, dirty, and odorous environment. WORKING CONDITIONS: May be exposed to high voltage electricity, radiation or electromagnetic fields, lasers, noise > 80dB TWA, Allergens
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propagation in spatially periodic, non-dissipative media, such as electromagnetic, elastic, or acoustic waves in metamaterials. This decomposition can also be applied to analyse the growth or decay of flow