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characterization measurements and non-destructive data acquisition on superconducting cables fabricated at LBNL. Prepare metallographic samples and acquire cross-section images using optical and electron microscopy
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Research (AMCR ) Division and the Center for Advanced Mathematics for Energy Research Applications (CAMERA ). In this role, you will develop new mathematical approaches and advanced computational algorithms
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objectives. The position will provide technical guidance and support to staff and may also supervise staff. What You Will Do: Develop and direct advanced research projects on electric distribution system
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. In LBNL’s Building Technology and Urban Systems Division we work closely with industry, government and policy makers to inform and develop solutions to increase energy efficiency, reduce emissions
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. What You Will Do: Develop control algorithms that respond to price signals, carbon emission signals and occupant behavior to minimize operation impacts. Perform a combination of simulations, lab tests
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of researchers, you will gather and process data, perform analyses and develop appropriate methods to satisfy technical objectives. You will conduct research, provide technical assistance to government decision
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and scattering techniques, and Lorentz transmission electron microscopy at large scale user facilities. Prepare manuscripts and reports. Publish research findings in high-impact peer reviewed technical
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partners to develop and utilize novel characterization and diagnostic methods to identify critical performance and durability barriers and provide and validate strategies to overcome them. In
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that informs the development of energy policies. Identify and define research needs and develop short- and long-term research priorities. Prepare proposals and budgets to secure funding from DOE and other
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. Develop additional data and scenarios for total cost of ownership modeling. Work closely with LBNL researchers, research partners, and industry partners in developing and modeling offsite construction