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(C) Determination of the nucleus size and relative nucleation rates.
The nucleus size (n) was estimated as two times the slope of the linear fit.
Furthermore, a higher annealing temperature is expected to result in increased critical nucleus size.
The nucleus size becomes larger, until a saturation nucleation density causes the layers formation.
Central cell density and nucleus size were determined in NCI-H69 sections.
Deposition parameters such as number of active sites, critical nucleus size and average diffusivity were estimated.
After 20 days of treatment, the average nucleus size was nearly three times larger than that of untreated controls.
For all kerosenes, as pressure increases, the nucleus size rapidly decreases and is smallest at low temperatures.
In the forward simulation the impact of the influencing parameters including surface energy, nucleus size and distribution is investigated.
It should be noted that in the case of applying an external magnetic field, the critical nucleus size and the energy of its formation decreases.
Due to the excess volume of the c/a interface, an overall volume expansion is involved in the crystal nucleation process when the nucleus size is very small.
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