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Qualifications Minimum and Preferred Qualifications for these positions are: (1) a PhD or its equivalent in the Mathematical Sciences, granted not more than 5 years prior the start of the appointment; (2
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The primary function of Chemical and Biomolecular Engineering Department is to provide educational programs leading to BS, MS and PhD degrees in Chemical Engineering. The administrative unit provides support to
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, you will investigate the following points in your PhD: New frequency bands are opened towards 6G, e.g., FR3 (7 - 24 GHz). This comes with new transceiver architectures and technologies, but also
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request letters of support. Review of applications will begin on January 15th, 2026. This search will continue until the position is filled. Required Qualifications PhD in computing or closely related field
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Nanotech Complex, home to NY CREATES - The Future of Innovation . This environment provides the successful candidate with access to CNSE's state-of-the-art semiconductor fabrication facilities, as
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engineering. Areas of interest include, but are not limited to: Low-power microelectronics Wide-bandgap semiconductors RF, millimeter-wave, analog, mixed-signal, and digital integrated circuits Optoelectronics
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: Basic research in (quantum) optoelectronics: novel semiconductor lasers, nanophotonic devices Integrated waveguides, couplers, switches, modulators. On-chip solutions, e.g., photon emitters in dielectric
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engineering. Areas of interest include, but are not limited to: Low-power microelectronics Wide-bandgap semiconductors RF, millimeter-wave, analog, mixed-signal, and digital integrated circuits Optoelectronics
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semiconductor technology have enabled the production of low-cost, high-performance radar sensors, paving the way for new applications in healthcare, security, and transportation. Radar is already a key component
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multiple-antenna communication schemes and related architectures. Analog components also differ in performance over the FR3 band. For instance, different types of power amplifiers and related semiconductor