Examples of using The particle size in English and their translations into Hebrew
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extrinsic properties of TiO2, such as the particle size, surface area,
Pohl compared the particle size reduction of Aerosil 90(2%wt)
it was also found that the particle size could be controlled by varying the reaction temperature.
This is due to the particle size being related to nucleation
as well as the particle size of biomass, affect the ultrasonic release of AX from biomass significantly.
Below about 1000 kJ/kgFe3O4 the mixing is controlled by the hydrodynamic effect. The particle size amounts to about 40-50 nm. Above 1000 kJ/kg the effect of the ultrasonic mixing becomes visible. The particle size decreases below 10 nm. With further increase of the specific power input the particle size remains in the same order of magnitude.
With increase of ultrasound energy, the particles size of the HAp crystallites decreased.
The particle sizes of the beads vary,
do not let the particle sizes for flow-through dangerous parts of the pump and the formative elements fountain.
This happens because of a difference in the particle size;
By the particle size reduction, the surface area of the material is increased.
This figure shows the mean values for the impact velocity depending on the particle size.
In order to maximize the pigment performance good control over the particle size is needed.
Reaction rate is depending on the concentration of reactants, the particle size, temperature, catalyst and further factors.
Based on the particle size, atmospheric saturation,
Figure 6 shows the mean values as well as the maximum and minimum values for the COR depending on the particle size for atmospheric pressure and vacuum.