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During ontogeny, epiphytes are expected to grow towards the adaxial surface of the branch, as plants are increasingly relieved from water stress due to their larger size (Zotz and Vollrath 2002).
Computing the point of branch emergence corresponds closely to measurements that can be obtained manually on the real plant, e.g., with a measuring tape, when measuring along the surface of the branch from the start of a branch on the trunk surface to the tip.
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Under these conditions, the negatively charged DNA interacts with the cationic surface of the Branched Amphiphilic Peptide Capsules (BAPCs) through numerous electrostatic interactions generating peptide-DNA complexes with sizes ranging from 50 to 250 nm.
In mass, the spores (produced on the surface of the branches) are white.
Spores are produced by basidia on the outer surface of the branches.
The water injection experiments were conducted in the 1800-m borehole, which was drilled from a site east of the surface trace of the branch fault.
Only the EW on the surfaces of the branches of E. sylvaticum consisted of more than 49%% primary alcohols; this could be related to the platelet type.
The product's hydrophobic N-hexanoyl chain makes nonspecific interactions along the surface of the largest branch of the active-site cavity, which points toward the enzyme's surface.
The lower dark current density in the tree-like ZnO nanostructure photoelectrode is caused by efficient dye coverage on the surface of the ZnO branches, as well as proper electrolyte penetration.
The melt-out surface of the small branches means that the temperature was too high that AlN crystals began to melt. Figure 2 Typical SEM images of the coral-like AlN nanostructures: a a low-magnification SEM image of high-density as-grown coral-like products; b shows a clear dendritic structure; c a close view of fine branches with melt-out surface.
The surface layer of the branches impedes the access of H2O and H2SO4 to their interior thus reducing the utilisation of the PAM.
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