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Applicants should hold a degree-level qualification in a relevant discipline such as: Electrical or Electronic Engineering; RF or Microwave Engineering; Applied Physics; Microsystems or Microengineering
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profile for PhD 1: An MSc degree in electrical engineering or a closely related field, with strong experimental academic results. A solid foundation in analogue electronics, RF or microwave engineering
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. Python, MATLAB, or similar); excellent written and spoken English. Prior experience with superconducting circuits, low-temperature physics, optics, microwave engineering, or nanofabrication is welcome but
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desirable: microwave engineering, confocal microscopy, scanning probe microscopy, magnetic resonance spectroscopy, and scientific programming in Python. Prior experience with hardware electronics such as
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academic record, interested in doing scientific research towards a PhD degree. A solid background in RF/microwave engineering is required, including familiarity with concepts such as S-parameters, nonlinear
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technologies. The institute places particular emphasis on micro- and nanotechnologies, including nanostructures and nanoelectronics, microelectronics, microwave engineering, and microsystems. PhLAM is a Joint
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candidate will have an interest in one or more of the following areas: Wireless Communication Systems RF and Microwave Engineering 5G and 6G Technologies Digital Signal Processing (DSP) Artificial
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(340 engineers, technicians and administrators and 220 researchers and teacher-researchers) and approximately 200 non-permanent including 120 doctoral students. The research themes of the laboratory
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and industry and contributes to the prosperity of society. The THz-Electronics Group of the Institute of Electrodynamics, Microwave and Circuit Engineering, TU Wien is offering a position (all genders