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The aggregation follows a bottom up approach and can be easily controlled.
Aggregation follows an Avrami Evans type formalism and suggests that clusters of a lyotropic liquid crystalline phase of the polymer are formed of the same type as observed in the melt.
A brief description of inclusion of magnetic forces into the model of aggregation follows.
Once a critical concentration is surpassed, the aggregation follows a nucleation-dependent polymerization process to form mature fibrils with various oligomeric intermediates along the way [ 8, 9].
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The hematite formation process begins with ferrihydrite particle aggregation, followed by recrystallization within the aggregate via dissolution and reprecipitation processes that occur at the nanoscale.
At lower concentrations of soluble phospholipid complexes, fibril formation by apoC-II was only partially inhibited, and under these conditions, aggregation followed a two-phase process.
In the time range of about one week, the complexation of both DNA samples underwent three stages: formation of preliminary complex, further aggregation, followed by precipitation.
The huntingtin exon 1 aggregation followed a pathway from exclusively spherical or globular species of ∼80 nm to fibers ∼1 μm in length that increased in width, but not length, over time with the addition of more huntingtin monomers.
In an attempt to circumvent this disadvantage of using the direct formulation especially for larger problems, we propose a Hierarchical Approach that is aimed at solving the problem in two stages using partial demand aggregation followed by a disaggregation scheme.
Based on the mathematical modelling results and evidence from scanning electron micrographs, the spherically shaped nickel powder particles were proposed to be formed through the formation of a pre-cursor by secondary aggregation followed by spherulitic growth.
An early foraging dive was followed by steady travel to the big aggregation, followed by long dives of 10-15 minutes in duration and to 400 m in depth, interspersed with resting periods at the surface.
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