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requirements. Lifting up to 25 lbs. WORK ENVIRONMENT: Laboratory environment. Moderate noise. Exposure to blood, excrement, antineoplastic drugs, and possible exposure to infectious and communicable diseases
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to 25 lbs. WORK ENVIRONMENT: Lab environment with moderate noise. Exposure to blood, excrement, antineoplastic drugs and possible exposure to infectious and communicable diseases. Universal precautions
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DEMANDS: Standing, sitting, walking, talking and hearing. No special vision requirements. Lifting up to 25 lbs. WORK ENVIRONMENT: Laboratory environment. Moderate noise. Exposure to blood, excrement
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: Standing, sitting, walking, talking and hearing. No special vision requirements. Lifting up to 25 lbs. WORK ENVIRONMENT: Lab environment with moderate noise. Exposure to blood, excrement, antineoplastic
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step-change in organic semiconductor material design by directly harnessing the power of vibrational modes to improve their functionality in optoelectronic applications. This will be achieved by
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at deep cryogenic temperatures in dilution refrigerators. Notably, we have demonstrated quantum entanglement between two micromechanical oscillators realized as vibrating aluminum drumheads [Nature 556, 478
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an efficient goods movement system. At the same time, goods movement generates serious externalities in the form of air pollution, greenhouse gas (GHG) emissions, congestion, crashes, and noise. Urban freight
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ultrahigh vacuum (UHV) surface science facilities enable: (i) measurements of surface composition, structure, and thermal stability using AES, LEIS, XPS, and vibrational spectroscopy; (ii) quantitative
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team members. Surface science experiments will utilize a range of surface analytical techniques, such as HRXPS, UPS, LEIS, AFM, and STM, with an emphasis on vibrational spectroscopy using IR spectroscopy
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optimizing the squeezing of the vacuum to minimize quantum noise, a prototype cryogenic interferometer, using machine learning for nonlinear feedback control, devising techniques to quell opto-mechanical