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Sciences Posting Number R260124 Posting Link https://www.ubjobs.buffalo.edu/postings/63883 Employer Research Foundation Position Type RF Professional Job Type Full-Time Appointment Term Salary Grade E.89
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Simons collaborations on superconductivity. Develop and apply theoretical and/or computational methods for correlated quantum materials, including Keldysh formalism to nonequilibrium steady-state and rf
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-deposited oxide films, and covalent or electrostatic functionalization (30%); 3. Build and optimize experimental hardware, including optical excitation and collection paths, microwave and RF delivery (30%); 4
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record in MEMS, resonators, piezoelectric devices, RF systems, or related areas Demonstrated ability to conduct independent research while contributing effectively within a collaborative team environment
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Link https://www.ubjobs.buffalo.edu/postings/63868 Employer Research Foundation Position Type RF Professional Job Type Full-Time Appointment Term Salary Grade E.89 Posting Detail Information Position
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, knowledge, and interest in the design and implementation of high-field radio-frequency (RF) structures and electron guns. • Direct experience in accelerator physics/engineering and/or medical physics
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, knowledge, and interest in the design and implementation of high-field radio-frequency (RF) structures and electron guns. • Direct experience in accelerator physics/engineering and/or medical physics
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with RF experimentation or wireless testbeds. • Experience contributing to research proposals. • Prior experience mentoring graduate or undergraduate students. • Proficiency in MATLAB, Python, and/or C
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nonlinear MEMS-based oscillators driven by storage-ring radio-frequency (RF) signals to enable advanced manipulation of X-ray pulses. Background information on the project can be found in the publications
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Link https://www.ubjobs.buffalo.edu/postings/63869 Employer Research Foundation Position Type RF Professional Job Type Full-Time Appointment Term Salary Grade E.89 Posting Detail Information Position