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Present study deals with fabrication of an aligned carbon nanotube reinforced polymer matrix composite and effect of the methods of alignment on anisotropic properties of the composite.
We also employed "Multiple Alignment Using Fast Fourier Transform" (Katoh and Kuma 2002) as an alternative method of alignment, but found no difference in our findings from implementing the "classic" methods of alignment (data not shown).
This intraspecific variation, combined with the generally short length of the trnH-psbA region, suggests that typical methods of alignment of these sequences could result in misassignment of conspecific sequences that show different forms of the inversion.
Methods of alignment, averaging, and reconstruction usually result in overweighting of the low-resolution information.
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The use of these methods instead of alignment methods or the classic known clustering methods by biologists can improve the clustering sensitivity and specificity and reduce significantly the computational time.
Therefore, this method of alignment is undesirable owing to the uncertainty in obtaining the cleaving along the precise crystal direction.
This method of alignment has been accurate in determining the crystallographic directions precisely with an accuracy as high as 0.01°.
The first method of alignment of the molecules was based on the binding information sourced from the crystallographic study, from which CoMFA Model 1 was derived.
The frequent fusion points between melt electrospun fibers, and a reduction in diameter for the gap method of alignment, indicated that the melt electrospun fibers are still slightly molten at collection.
Our goal was to evaluate whether a novel method of alignment, combining a multilayered electrospinning technique with a hybrid of several electrospinning alignment techniques, would permit cell infiltration and collagen deposition through the thickness of poly(ε-caprolactone) scaffolds following seeding with human adipose-derived stem cells.
Melt electrospun blends of poly ethylene glycol -block-poly(ɛ-caprolactone) (PEglycol -block-polyoly(ɛ-caprolactone) (PCL) produced fibers with micron-scale diameters (2.0 ± 0.3 μm); this was lowered to 270 ± 100 nm by usinglycol -block-polyf alignment for collection.
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