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Synthesis Science program in which the postdoc will combine literature data extraction, LLM reasoning, and theoretical materials science to guide synthesis protocols for automated sol-gel and solid-state
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for binding critical minerals and materials. The postdoc will be part of a collaborative team of researchers in the Molecular Foundry from the Biological Nanostructures, Data Science and Infrastructure, Imaging
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organic spin systems for quantum information science (QIS). The primary purpose of this project is to establish chemically tunable organic radicals as a new materials platform for quantum spin qubits
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to write codes to reduce and analyze data. Experience in synchrotron-based x-ray science. Ability to perform independent hands-on work in an experimental endstation. Desired skills/knowledge: Experience of X
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to the Quantum Defect Genome effort to discover and validate novel emitters for quantum information science. What You Will Do: Perform advanced optical measurements, including cryogenic and magneto-optical
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the fundamental mechanisms of mineral interfacial chemistry, element and isotope partitioning, crystal growth, dissolution, and phase transformation. The project team uses state-of-the-art computational and