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helium holder designed for the TEAM I aberration-corrected transmission electron microscope. The project aims to investigate the properties of nanomaterials at very low temperatures through techniques
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design, implementation, and analysis of aqueous chemostatic mineral-fluid reactions using autonomous and automated reactors in the Living Minerals Laboratory and through a joint appointment in the
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the designed control system. What You Will Do: Participate in the continued development testing and performance improvement of the quantum bit control system (QubiC). Contribute to the design and implementation
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-doctoral Scholar to advance the validation of quantum computers operating in the classical-hardness regime. You will design and execute state-of-the-art experiments on superconducting quantum processors
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research hypotheses and design efficient experiments to validate for electrochemical devices including membrane-based water/CO2 electrolyzers and/or electrosynthesis devices. Assemble and test membrane
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), including economic modeling of large-scale Marine Protected Area (MPA) designation in ABNJ. The modeling exercises will include such activities as simulating the impacts of MPA designation on economic outputs
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(MEMS), with prior design and nanofabrication experiences Optoelectronics and optical engineering, with experience in lasers and cryogenic experiments Chemical vapor deposition (CVD) or MOCVD of 2D
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information science, and applied social science research. This position is well-suited for someone interested in research design and the application of geographic principles and methods to policy analysis and
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scholar positions. The group plays leading roles in developing reconfigurable nanophotonic devices, MEMS-based instrumentation for precision control, and advanced nanophotonics theory and design. The
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Stewardship Values: Team Science, Service, Trust, Innovation, and Respect; and we strive to build community with these shared values and commitments. Berkeley Lab is an Equal Opportunity Employer. We heartily