Sentence examples for broad polymer from inspiring English sources

Exact(3)

With a proper dimensioning of the two zones, it is thus possible to get a broad polymer molecular weight distribution, even starting from a catalyst able to develop only a limited molecular weight distribution.

A range of well characterized broad polymer standards has been analysed using size exclusion chromatography (s.e.c)., with differential refractive index, low angle laser light scattering (LALLS) and differential viscometry (DV) as on-line detection methods.

In the case of PEGMA-3, it is hard to determine if there is unconjugated polymer, as the broad polymer band overlaps with the molecular weight assigned to the bioconjugate.

Similar(57)

Uniform fiber formation was observed at c/c*∼6 for all the narrow MWD polymers (Mw of 12,470 205,800 g/mol) but for the relatively broad MWD polymers (Mw of 34,070 and 95,800 g/mol), uniform fibers were not formed until higher concentrations, c/c*∼10, were utilized.

Typically fractions with a polydispersity index (PDI) of 1.4 2 were generated from broad-distribution polymers (PDI∼5) in significant quantities from a single separation.

Both applications of the method are likely to have broad applications in polymer and (bio material science.

It is also shown that a broad range of polymer properties can be obtained by judiciously choosing the reactor operating conditions with the bifunctional initiator.

A series of discrete complexes of the cSCKs with plasmid DNA (pDNA) was able to be formed over a broad range of polymer amine:pDNA phosphate ratios (N/P ratio), 2 1 20 1.

The fourth generation of a hydroxylated dendritic hyperbranched polyester (HBP) was combined with sodium montmorillonite clay (Na+MMT) using water to generate a broad range of polymer clay nanocomposites from 0 to 100% wt/wt Na+MMT.

Second and fourth generations of hydroxylated dendritic polyesters based on 2,2-bis-methylopropionic acid (bis-MPA) with an ethoxylated pentaerytriol (PP50) core were combined with unmodified sodium montmorillonite clay (Na+MMT) in water to generate a broad range of polymer clay nanocomposite films from 0 to 100% wt/wt.

Functionalizations such as these can be applied across a broad spectrum of polymer solutions for tissue engineering and materials-based therapies and will continue to tap into the near limitless mechanical, chemical, and biological potentials of engineered polymers for translational applications.

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