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/Responsibilities: Perform composites manufacturing using a variety of techniques including compression and/or injection molding, and additive manufacturing Operate characterization techniques such as DSC, FTIR, TGA
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, and metal matrices. Design and optimize composite fabrication routes using densification techniques such as high-temperature sintering and spark plasma sintering. Investigate processing-structure
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. Advanced data interpretation using electron diffraction, dendritic growth modeling, and REE behavior in Fe-rich matrices. Competences & Personal Qualities Excellent English communication skills (oral and
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. Hands-on experience of LC-MS and tandem MS for untargeted and/or targeted analysis. Experience developing or optimising sample-preparation methods for biological matrices. Desirable Criteria: Experience
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computing, dynamical systems, and applied mathematics to develop new mathematical frameworks for representing, compressing, and computing with complex physical systems. The project is carried out in close
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in matrices, compartments, or culture configurations relevant to implantable systems. Develop assays to evaluate stimulation-response behavior, secreted therapeutic output, optical reporter performance
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to implant-relevant materials, compartments, matrices, and culture configurations. Evaluate long-term cell viability, proliferation, stability, reporter output, and functional response under controlled
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analytical methods at the TC and validate new methods for PFAS in matrices of emerging interest. You will conduct research and publish your results to disseminate scientific insights. You will contribute
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optical communication networks and systems, as well as machine learning, computer vision and compressing digital videos. Become a part of our team and join us on our journey of research and innovation! Be
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National Energy Technology Laboratory (NETL) | Albany, New York | United States | about 18 hours ago
, to investigate dislocation core structures, dislocation mobility, and dislocation-driven mechanical behavior such as tension, compression, creep, and fatigue as functions of compositions, temperature, stress, time