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There needs to be a provocative point called a nucleation site.
The reason is entirely in the number of nucleation sites.
His most significant contributions to science were within studies of crystal growth and nucleation.
In addition you must prevent other things from providing nucleation sites.
Also the effects of strong ground motion make it very difficult to record information close to a nucleation zone.
Where I is the rate calculated from the classical nucleation theory.
This nucleation occurs on a synthetic surface with some success.
The process of nucleation and growth generally occurs in two different stages.
Nucleation points are anything that have a high surface to volume ratio.
So, in order for crystals to start forming, there has to be a nucleation site.
In the nucleation stage solid particles form within the liquid.
Here is where the nucleation phase of the solidification process takes place.
The nucleation phase took 2-4 times as long as in the control groups.
Nucleation and size of crystals are difficult to control.
It can be used for both homogeneous and heterogeneous nucleation.
In a vessel with lots of nucleation points, bubbles will form and grow quickly.
Lots of factors affect boiling point, including pressure and nucleation.
In general, the number of nucleation sites are increased by an increasing surface temperature.
The purpose is to control nucleation and understand the parameters that make crystals grow.
If you want lots of small crystals, then the "assisted" nucleation is better.
Impurities play an important role in the nucleation of other phase transitions.
Generally, the nucleation density decreases as the temperature is increased.
Nucleation occurs due to fluctuations in the properties of the material.
Or if there were no nucleation points for bubbles, it might not happen till above the boiling point.
These are known as nucleation centers, not to be confused with atomic nucleus.