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The RBS mapping and tomography images clearly show the three-dimensional fine structures of the sample.
The percolation threshold depends on pore structures of the sample and defines the smallest connected pore network that the flow of fluids can pass through.
The paper structures of the sample rag paper and Whatman no.1 paper were examined with FEI Inspect S50 SEM at 10 kV after approx. 15 nm of gold coating.
We demonstrate that knowing the underlying structures of the sample imaged is important for both two-layered model reconstruction and PCA based reconstruction.
However, these data have to be interpreted carefully since they spring from different structures of the sample populations and also vary in absolute terms.
By combining automated immunofluorescent staining and tried-and-true method of reconstructing adjacent sections, we were able to visualize, in detail, not only the geometric structures of the sample but also the presence and interactions of multiple proteins and molecules of interest within their 3-dimensional environment.
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The crystal structures of the samples were characterized by XRD.
Figure 1 The layer structures of the samples.
The structures of the samples are summarized in Table 1.
TEM was applied in the further study of the structures of the samples.
The results of pore structures of the samples are summarized in Table 1.
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CEO of Professional Science Editing for Scientists @ prosciediting.com