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Using optical microscopy, we determined porosity, cementation, grain size, and mineralogical composition.
Using crosslinking-mass spectrometry and electron microscopy, we determined the architecture of TORC2.
Using nonlinear optical microscopy, we determined the microstructure of collagen and elastin fibers of the aortic valve cusps.
By polarized optical microscopy, we determined that the anisotropic texture of the fibers was indicative of parallel alignment of the molecular chains to the fiber axis.
We have, through experimental data and observations, a good handle on three of the parameters: (1) we have measured the UCS of 22 samples (Table 3), (2) μ rarely deviates from 0.6 to 0.7 (Byerlee [1978]), and (3) c can be determined from optical microscopy (we determined c by measuring the approximate average length of the microcracks under the microscope).
Using α-tubulin immunofluorescence microscopy, we determined the fraction of cells in metaphase after exposure to ICRF-193.
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Here, using atomic force microscopy, we determine the architecture of these complexes as single-layered ringlike structures with a diameter of 18 22 nm and a height of 2.0 ± 0.4 nm, which consist of several (n = 6 8) distinct protein granules.
By using a combination of LabDCT, attenuation-based tomography, and electron microscopy, we determine that the location of the impurity particles is non-random in the bulk and strongly dependent on grain boundary character.
Using transmission electron microscopy (TEM), we determined that the lamella thickness in this material is between 10 and 20 nm [24].
Using transmission electron microscopy images, we determined the spatial distribution of clusters as a function of Xe thickness and applied the scaling concepts of cluster cluster aggregation to better understand processes associated with growth.
Based on atomic force microscopy measurements, we determined that the mean HT4 cell volume is in the order of 1 pl (not shown).
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microscopy we demonstrated
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microscopy we identified
microscopy we visualized
microscopy we showed
microscopy we fixed
microscopy we performed
microscopy we used
microscopy we found
microscopy we were
microscopy we assessed
microscopy we observed
microscopy we recorded
microscopy we investigated
microscopy we analyzed
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