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, single crystal diffraction, and optical spectroscopy • Experience in femtosecond laser operation and laser pumping experiments. • Good programming skills in Python or similar languages MQ: Requires
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coefficient modeling. Experience in integrating modeling with leaching and separation processes for scale-up. Advanced data interpretation using electron diffraction, dendritic growth modeling, and REE behavior
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of employment experience with expertise in coherent X-ray scattering and imaging. Expertise in surface X-ray scattering is required. Understanding coherent diffractive imaging and ptychography is strongly
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microcrack detection, Raman spectroscopy and X-ray diffraction (XRD) for assessing graphitization and crystalline structure, Thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC
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and Raman spectroscopy as well as X-ray diffraction. Study their adsorptive response towards dissolved methane in water, with and without competing species, to establish sensitivity, response rate and
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situ/operando experiments and associated cell design is desirable. Familiarity with one or more of the following techniques is highly desirable: X-ray and neutron diffraction, computational chemistry
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situ/operando experiments and associated cell design is desirable. Familiarity with one or more of the following techniques is highly desirable: X-ray and neutron diffraction, computational chemistry
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performance metrics such as absorption and diffraction across a large design and material space. Curate and format large datasets of simulated nanostructures and their optical properties in close collaboration
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. Evaluate optical performance metrics such as absorption and diffraction across a large design and material space. Curate and format large datasets of simulated nanostructures and their optical properties in
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diffraction characterization and related structural characterization techniques. Strong teamwork skills with a demonstrated history of effectively collaborating with team members and internal and external