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The receptaculum is typically 1.5 3.5 cm in diameter and forms a red or orange lattice, or mesh.
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This paper presents results of research on the impact of the incomplete contour length on a diameter and form deviations.
Transmission electron microscopy (TEM) studies showed that CNTs grown on the catalyst calcined at 700 °C were of uniform diameter and formed a dense interwoven covering.
The colonies in fact, grew in diameter and formed cell clusters often resembling the plated EBs (Fig. 1A, B; arrowhead).
The bases of the invaginations were broad, typically greater than 2 µm in diameter and formed a cone about 1 2 µm deep (fig. 1B).
Those so-called muscularis mucosae varied considerably in diameter and formed a discontinuous layer of cells, densely surrounded and traversed by N-cadherin+ structures.
Scanning transmission electron microscopy revealed the nanoparticles were 5 20 nm in diameter and formed small, loosely packed aggregates no more than 100 nm in size.
High-resolution hydrodynamic data were gathered using acoustic equipments and by measuring sediment properties (grain-size diameter and bed form dimensions) under fair-weather conditions.
As expected, the addition of CaCl2 can decrease the fiber diameter and also forming ultrafine mesh shaped nanofibers in between the main fibers.
Polyps are usually a few millimeters in diameter, and are formed by a layer of outer epithelium and inner jellylike tissue known as the mesoglea.
Scanning electron microscopy and transmission electron microscopy showed that SWCNTs of 2 4 nm in diameter grew and formed vertically aligned arrays of 0.5 mm in height.
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