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lead the development and application of advanced microscopy techniques, microfluidic approaches, and single-cell analysis methods to investigate quiescence at individual cell and population levels. Where
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their structural and optical characterization by using atomic force microscopy (AFM), scanning electron microscopy (SEM), x-ray diffraction (XRD), and photoluminescence spectroscopy (PL). The research will be
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project of studying nanoplastic generation and release via nanoscale abrasive wear using advanced atomic force microscopy (AFM) tools. This work will be supported through the NSF CAREER award. The project
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CORE A*/A conference paper. Ensuring the safety and longevity of nuclear reactors requires structural materials that can maintain integrity under extreme thermal, mechanical, and irradiation environments
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Department is developing and applying electron microscopy methodologies for nanoscale and atomic-resolution characterization of soft functional materials and their interfaces using a synergy of materials
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determined by rank and step at appointment. See the following table(s) for the current salary scale(s) for this position: https://www.ucop.edu/academic-personnel-programs/_files/2025-26/represented-july-2025
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liquid phases have been predicted. It can be realized using atoms with two valence electrons, such as ytterbium or strontium. To investigate such SU(N) physics, our group has developed a quantum-gas
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variations in this rapidly changing planet. More information can be found on the lab’s website: https://www.janelia.org/lab/vale-lab . About the role: Our lab is seeking an experienced Research Specialist
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new piece of equipment installed in the BMBI laboratory platform: an atomic force microscope coupled with a fluorescence microscope. The postdoctoral researcher will contribute to various aspects
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://ccr.wsu.edu/notice-of-nondiscrimination/ To apply, visit https://wsu.wd5.myworkdayjobs.com/en-US/WSU_Jobs/job/Pullman-WA/Postdoctoral-Research-Associate_R-14155 Washington State University is an Equal