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Globular clusters had a mean size ranging between 100 and 200 nm which in turn aggregated and built complex structures.
TEM analysis revealed that nanocrystals had a narrow size distribution with mean size ranging from 22.5 to 45.5 nm, varying with Ga/ Ga + In) molar ratio.
The coated polymer avoid the growth of quercetin crystals, thus amorphous particles in the submicron range (mean size ranging between 150 and 350 nm) were formed.
The alloy was casted into flat plates and homogenized at 450°C to 500°C and the SiC preforms (mean size ranging from 5 to 300 μm), prepared by cold pressing, followed by a heat treatment at 1,200°C to 1,400°C.
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Homogeneous particles with mean size ranged from 400 to 500 nm were observed.
Used nanoparticles presented mean sizes ranging from 2 to 20 nm, with a lognormal distribution.
Specimens containing SiC particles with mean sizes ranging from 3 to 23 μm were fabricated and examined using SEM.
The metal particle size distributions corresponding to the reduced catalysts show that metal sintering is slight up to 973 K, with mean sizes ranging from 3.5 to 3.7 nm, and much stronger when the catalysts are reduced at 1173 K, mean size: 6.7 nm.
In brief, genomic DNA was fragmented using Covaris system for a mean size range of 300 350 bp.
In brief, 3-5 μg DNA was nebulized to a mean size range of 40-800 bp, followed by size selection of fragments >300 bp by column exclusion and Ampure™ (Agencourt Bioscience) isolation.
3-5ug of isolated DNA was nebulized to a mean size range of 3-500 bp, followed by a size selection of fragments >300 bp by column exclusion and Ampure™ (Agencourt Bioscience, Danvers, MA) isolation.
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CEO of Professional Science Editing for Scientists @ prosciediting.com