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: This work is on the frontier of experimental condensed matter physics, and combines several experimental modalities, including scanning tunneling microscopy, atomic force microscopy, electron transport, and
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profiles, and by electron microscopies (SEM, TEM) to observe the precipitation and the matrix (martensite, retained austenite) microstructures • Establishing prior austenite grain sizes by crystallographic
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Director's office can be found here: https://www.ornl.gov/content/research-integrity . Basic Qualifications: A PhD in physics, chemistry, biochemistry or a related field completed within the last five years
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19 Mar 2026 Job Information Organisation/Company Institute of materials and machine mechanics Slovak academy of sciences Research Field Engineering » Materials engineering Engineering » Computer
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of a vision transformer, U-Net architecture, or Diffusion model that you trained yourself. Projects in computer vision for microscopy image analysis are especially relevant. Include a link to a code
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applications of multiphoton spectroscopy and a range of microscopic techniques (fluorescence microscopy, atomic force microscopy, multiphoton microscopy). Preparing research grant applications, Supervising
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opportunities WHAT WE CAN OFFER YOU The PhD-candidate will be trained in analytical techniques including optical microscopy, scanning electron microscopy, and geochemical analyses. In addition to analytical
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, purification and reconstitution Targeted mutagenesis and protein structure analysis Biochemical characterization of ATPase and phosphorylation activity Cellular imaging/staining (fluorescence and electron
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University of California, Los Angeles | Los Angeles, California | United States | about 12 hours ago
fibrils associated with the onset of neurodegenerative conditions including Alzheimer’s, Parkinson’s and ALS. Methods include x-ray diffraction, electron microscopy, and cellular and animal assays Job
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Master Thesis in Physics or Materials Science: Remanent phase shifter based on memristive technology
Your Job: At Peter Grünberg Institute - Electronic Materials (PGI-7), we have extensive expertise in the design, fabrication, and characterization of area-dependent memristive devices. The project