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Can you use an immersion blender in a ceramic pot? 

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As a first approximation, plastic ceramic materials can be treated as ordinary concentrated suspensions.
These studies reveal that POT and PVC form an immiscible blend which can be co-continuous even with a relatively low content of POT.
The results help in understanding the evolution of the apatite surface layer with respect to immersion time in SBF and composition of the glass-ceramic samples.
The temporary immersion technique can profitably replace costly biofermentors in both research and mass production.
The ceramic films can prevent solvent evaporation and maintain conductivity.
This research shows that lipid analysis can be a valuable contribution to classify different ceramic pots.
The conductivity values of POT(70)-PSt(30) and POT(90)-PSt(10) blends are almost the same ($ 1.1 * 10^{-2} and 1.3 * 10^{-2} S {cm}^{-1} $, respectively) and these values are very close to that of pure POT salt, suggesting that POT can be blended with up to 30% wt/wt of PSt to improve its mechanical properties without a significant drop in its conductivity.
The ceramic materials studied can be used as solid-electrolyte sensors.
The result is a fast, economic, and efficient way to fabricate highly differentiated ceramic components with the use of robotic technologies.
Mechanical stirring of the immersion water leads to erosion of the ceramic body and does not seem to have much effect on the total amount of salts removed except during the initial period.
In principle, this process can be applied to fabricate any other high-performance ceramic.
Since interesting performances were observed, the potential of the use of wastes in ceramic formulations of industrial interest was confirmed.
The results obtained showed that a pit can be formed on any ceramic and the pit depth apparently varies with the ceramic material.

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