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propulsion systems. The candidate will conduct experimental research on hybrid/solid propulsion, payload deployment mechanisms, and micro-launcher development. Key qualifications: PhD in Aerospace; Physics
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qualifications: PhD in Telecommunications, Physics, Electrical or Aerospace Engineering Experience in RF front-end design, SDR, antennas, and optical links Understanding of satellite link budgets and LEO-specific
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development. Key qualifications: PhD in Aerospace, Physics or Mechanical Engineering Experience in propulsion system testing in vacuum environments Hands-on CubeSat or small satellite propulsion projects
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qualifications: PhD in Aerospace, Physics, Mechanical Engineering, or Physics Expertise in thermal-vacuum testing and radiation simulation Strong teaching record in reliability and space systems Experience in
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interdisciplinary teams that involve experimentalists and modelers Criteria of the candidates: PhD in Chemical/Mechanical Engineering, Applied Chemistry, Applied Mathematics, Physics, or related disciplines, with
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synthesis and characterization with a PhD and demonstrated experience in Materials Science, Materials Chemistry, Inorganic chemistry, catalysis, and related disciplines. The candidate should also have
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synthesis will involve wet chemistry and other well-established solid-state methods. Required qualifications: The candidate must hold a PhD degree in Materials Science, Materials Chemistry, Inorganic
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at scientific meetings and conferences. Co-supervise ungraduated, graduate and PhD students Participate in developing research proposals and programs in the area of collaboration with multidisciplinary
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is 100 hours. Supervise graduate students working on master's or PhD theses related to computational modeling and simulation-driven materials discovery Provide academic advising to students, guiding
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and during that time expanded quite substantially. The number of employees is around 42, including 13 professors, 24 guest professors, 15 post-Doctoral fellows, 40 PhD students, and 52 Executive Master