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Knowledge, Skills, and Abilities: PhD in Chemistry, Physics, Biophysics, Biology, Biochemistry or Structural Biology. Proven ability to optimize peptide, protein or nucleic acid crystallization systems. Basic
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. The EIC will be a discovery machine for unlocking the secrets of the “glue” that binds the building blocks of visible matter in the universe. The machine design is based on the existing and highly optimized
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. The EIC will be a discovery machine for unlocking the secrets of the “glue” that binds the building blocks of visible matter in the universe. The machine design is based on the existing and highly optimized
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computing and data sciences. The ALD will be a member of the Lab’s Senior Leadership Council and will be an integral member of the Lab’s leadership team to optimize both the CDS Directorate’s and the
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. The EIC will be a discovery machine for unlocking the secrets of the “glue” that binds the building blocks of visible matter in the universe. The machine design is based on the existing and highly optimized
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simulation, AI based detector design optimization, streaming computing model development, production, distributed computing and workflow management, software infrastructure, particle ID, tracking
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of the DOE Office of Science and other national needs. Essential Duties and Responsibilities: Help develop and execute a vision for IO that makes optimal use of our facilities and expertise and is aligned with
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Tool 5 (MET5)—a 0.55 NA EUV lithography patterning beamline—at Advanced Light Source of the Lawrence Berkeley National Laboraotry. You have experience in optimizing the patterning performance of hybrid
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for neuromorphic computing applications and pulse-based electrical measurements. You have experience in optimizing 2D materials device performance via engineering materials and device physics, including contact
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lipid accumulation in plants. This evaluation involves the application of systems biology tools and isotope tracer studies to comprehensively understand and optimize lipid biosynthesis pathways