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for solid-state batteries. Characterize mass transport phenomenon. Develop techniques and strategies for electrochemical measurements and post-mortem analysis. Write reports and high impact papers, and
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analysis. This position will support a project investigating low-dose radiation effects on tissue vascularization through advanced imaging techniques. The postdoctoral appointee will be responsible
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Energy Systems and Infrastructure Analysis Division. We are seeking applicants with a strong technical background and expertise in international trade modeling, particularly in the upstream automotive
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-ion battery chemistry. Hands-on experience: XRD & Refinement, SEM-EDX, TGA-MS, DSC, BET, coin-cell preparation and testing. Knowledge in electrochemical analysis techniques such as GC, CV, GITT and EIS
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structure-function analysis, and viral evolution Familiarity with deep mutational scanning datasets and methods for quantifying viral immune escape Strong publication record in relevant fields Ability to work
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properties Expertise in chemical synthesis and analysis methods including NMR, FTIR, Raman spectroscopy, GC-MS, SEM/EDS, etc. Demonstrated scientific productivity through peer-reviewed publications, patents
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Element Analysis for thermo-mechanical fluid-structure interaction analysis. Ability to demonstrate good collaborative skills, including the ability to work well with other divisions, laboratories, and
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The Advanced Grid Modeling group at Argonne National Laboratory's Center for Energy, Environmental, and Economic Systems Analysis (CEEESA) is seeking a highly motivated Postdoctoral Researcher
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Postdoctoral Appointee - Uncertainty Quantification and Modeling of Large-Scale Dynamics in Networks
, or Julia) Experience in statistical modeling and probabilistic analysis Ability to model Argonne’s core values of impact, safety, respect, impact and teamwork Preferred skills, abilities, and knowledge
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lithium-ion cathode material synthesis, electrochemical testing, and coin cell construction Experience with spectroscopic and microscopic techniques for structural analysis Solid understanding of lithium