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The coil size is believed to be an important parameter for the crosslinking behaviour, as a large coil size facilitates interconnections between adjacent polymer coils.
The thickest interface is several times the coil size of the component polymer.
The particle swarm optimization is used for solving the optimal parameters at each coil size automatically.
The larger coil size of high Mw polyelectrolyte could enable the surpassing of multilayer thickness compared with low Mw polyelectrolyte.
Simulation studies in the two-area four-machine interconnected power system show the superior robustness of the proposed robust SMES with the smallest coil size under various operating conditions over the non-robust SMES with large coil size.
This incompatibility is analyzed in terms of the coil size reduction with concentration in the dilute region.
Similar(19)
The ability of a Bi-2212 coil to follow the prescribed recipe decreases with increasing coil sizes.
Coil design techniques take advantage of computer simulations in dependence on the magnetic field wavelength and coil sizes.
This mechanism produces an intrinsic amorphous layer between two crystals, with its thickness comparable with coil sizes of single polymers.
Coils, sized appropriately, offer a more controlled embolisation.
The thickness of the foils is 0.0254 mm, and the coils sized 0.036 mm × 0.1016 mm (W × H) are array arranged with a 0.15-mm interval.
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