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Qualifications: Bachelors's degree in Materials Science/Engineering, Mechanical Engineering, Electrical Engineering, Physics, or a related field. 3+ years of hands-on experience in microfluidics Strong knowledge
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accepted trade practices. Knowledge and experience regarding occupational hazards of the electrical and mechanical trades, related safety precautions and considerable skill required for the installation
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wiring problems. Evaluate, diagnose, and repair access control door hardware, intrusion detection systems, and monitoring devices such as: Von Duprin electro-mechanical exit devices Electrified mortise
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! Responsibilities Core Duties: Tasks include developing in-house test instruments to continuously measure and evaluate superconducting tapes within a cryogenic setting; support installation of a new winding machinery
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& Perception Laboratory (NA&P Lab), led by Dr. Sabine Kastner at the Princeton Neuroscience Institute. The lab studies neural mechanisms of cognition in the primate brain. Intracranial recordings from human
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setting; support installation of a new winding machinery for superconducting coils, ensuring precise control over tape/wire alignment, winding tension, and winding velocity, and scrutinize the performance
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on emerging trends, materials, and fabrication techniques in MEMS and microfluidics. Qualifications Essential Qualifications: Bachelors's degree in Materials Science/Engineering, Mechanical Engineering
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: 271405687 Position: Tenured Associate or Full Professor Description: The Department of Mechanical and Aerospace Engineering (MAE) at Princeton University invites applications for a tenured Associate or Full
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-disciplinary seven-week program for entering Princeton students, and the Scholars Institute Fellows Program (SIFP), a four-year mentorship program for FLi Princeton students. In addition, the Associate Director
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simulations, statistical mechanics, computer programming (e.g., C++, Python), polymer theory, molecular modeling (e.g., of proteins, nucleic acids, ligands), coarse-grain and polymer model development