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their quantum behavior, materials properties, and microfabrication processes.2 This collaborative project bridges the Advanced Microwave Photonics Group, who are experts in design, growth and measurement of state
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microscopy or magnetic instrument design to help develop this magnetic scanning microscope to quantitatively measure temperature throughout the volume of solid state, chemical, or biological samples. A
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. Available analytical instrumentation includes, but is not limited to, a variety of hyphenated GC and LC instrumentation (e.g., LC/DAD-MS, GC-GC/TOFMS, GC-MS/MS, LC-LC/MS-MS), FTIR, FT-Raman, Raman microscope
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optical microscopes to provide physical measurements (e.g. mass, size, concentration, composition) of individual nanoparticles. We are seeking candidates with backgrounds in optics, microscopy
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975 3675 Description In the last few decades, the basic nanoscale three-dimensional (3D) surface profiling of the atomic force microscope (AFM) has been augmented by a variety of property
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NIST only participates in the February and August reviews. The modern transmission electron microscope (TEM) is capable of atomic-resolution structural and chemical imaging. However, such data
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methods for electronic-based manipulation and measurements of cells and their environment in well-controlled microsystems. This research opportunity focuses on the design, fabrication, and assessment of new
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-scale) elastic and inelastic mean free paths and because electromagnetic fields can be used as electron optical lens elements for image formation. Recent breakthroughs in electron optical design and