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Although we minimize the particle numbers by ignoring sub-optimal particles, this scheme cuts across the principle of diversity of particles in particle filters.
Depending on different applications, properly surface engineering could minimize the particle deposition effect yet still contribute to the modification of heat transfer through the second mechanism.
The potential advantage for such an arrangement is to minimize the particle noise by using δf in the linear stage of the simulation, while retaining the flexibility of a full-F capability in the fully nonlinear stage of the development when signals associated with plasma turbulence are at a much higher level than those from the intrinsic particle noise.
The results obtained suggest that the nature of the spike preparation is an important factor in evaluating the ability of filters to remove prions, and that procedures designed to minimize the particle size distribution of the prion spike, such as the "super-sonication" or detergent treatments described herein, should be used for the preparation of the spike materials.
The formulation optimization was performed using three factor two level full factorial design so as to minimize the particle size and zeta potential, maximize the entrapment efficiency as well as maximize the concentration of drug in brain with maximized brain/plasma ratio of the drug.
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This preliminary experiment was performed to select the accurate PVA molecular weight and concentration with the goal of minimizing the particle size.
The carbon coating network not only facilitates the electron and Li+ ion transportation, but also offers good mechanical support minimizing the particle pulverization that is associated with the large volume change of Si during lithiation/delithiation.
Optimization of response factors was performed for minimizing the particle size while maximizing the absolute value of zeta potential, loading efficiency, and RE300.
Particles of the same charge repel each other minimizing the particle-particle interactions that strongly affect viscosity [24, 26, 33].
In this study, a parallel plate geometry was adopted to minimize the effects of the particle settling of particles during the measurements.
The samples were agitated directly in their cuvettes multiple times with a 1000 μL pipet immediately before analysis in an effort to minimize the effect of particle settling.
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