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However, clustering decreases substantially with increasing threshold and time scale.
Flame instability increased substantially with increasing water mist density especially with lean hydrogen mixtures.
The ultimate load and ductility decreased substantially with increasing notch depth.
Both composite strength and composite modulus are found to decrease substantially with increasing waviness ratio.
Building stiffness was found to degrade substantially with increasing lateral drifts and relate to prior deformation history.
The oxygen contents of the Zr(N,O) coatings increased, but not substantially, with increasing oxygen flow rate.
The results show that the values of GF decrease substantially with increasing coarseness of aggregate grain structure, λ.
The compression strength of the sandwich specimens containing a debond decreased quite substantially with increasing debond size.
Finally, PBDD/F formation was enhanced substantially with increasing amounts of KBr suggesting that their formation mechanism was similar to that of PCDD/Fs via de novo synthesis.
For the shorter rigid surfactants one observes gradual tilting during their self-assembly into bundles whereby the tilt angle increases substantially with increasing coverage.
The adsorbed nanocomposites coating is a hierarchical three-dimensional interpenetrating network structure, and the surface coverage and density increase substantially with increasing repeated immersing cycles.
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