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utilise (where necessary), radioactive materials handling facilities, advanced materials characterisation techniques such as scanning electron microscopy (SEM), Transmission electron microscopy (TEM) and X
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validation using advanced experimental techniques (such as mass spectrometry, electron microscopy, radiochemistry and radiobiology experiments with biomolecular and biological systems such as oligonucleotides
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transmission. (5) Connectomics & Computational Modeling – Generating high‑throughput electron‑microscopy connectomes and in silico circuit models to understand how networks of thousands of neurons produce robust
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(CAMCOR), which provides advanced materials characterization and electron microscopy for both academic and industrial users, Genomics and Cell Characterization Core Facility (GC3F), which provides cutting
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, crystallography, scanning electron microscopy, and guest adsorption/ exchange. Applicants should have, or expect to achieve, at least a 2.1 honours degree or a master’s (or international equivalent) in a relevant
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . The School of Materials Science & Engineering is seeking to hire a Senior
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Lake City, UT 84112 801-581-8365 oeo@utah.edu Online reports may be submitted at oeo.utah.edu For more information: https://www.utah.edu/nondiscrimination/ To inquire about this posting, email
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office address, electronic mail address, and telephone number can be located at: https://www.utah.edu/nondiscrimination/ Online reports may be submitted at oeo.utah.edu https://safety.utah.edu
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contact and thus minimize friction and damage to the surfaces for improved energy efficiency [5,6]. To characterize these different polymer brushes, atomic force microscopy (AFM) is used, which in its
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for finalist(s) may be contacted by phone/email after interviews. Apply link: https://recruit.ap.ucsb.edu/JPF03009 Help contact: shayna@ucsb.edu About UC Santa Barbara As a condition of employment, the finalist