Examples of 'polymerization rate' in a sentence

Meaning of "polymerization rate"

The speed at which monomers form a polymer, often influenced by factors like temperature, pressure, and catalysts

How to use "polymerization rate" in a sentence

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polymerization rate
This equilibrium determines the polymerization rate.
The polymerization rate is controlled by the concentration of catalyst.
Arrange the solvents in the order of increasing polymerization rate.
The polymerization rate is controlled by the rate of catalyst addition.
The rate of catalyst addition controls the polymerization rate.
The polymerization rate decreases as the functional groups are consumed.
A polymerization catalyst may be used to accelerate the polymerization rate.
The polymerization rate is followed by recording the ethylene consumption.
Enough of the catalyst mixture is used to provide a reasonable polymerization rate.
The polymerization rate remains constant until the monomer is depleted.
Both of these characteristics can negatively impact polymerization rate and efficiency.
The polymerization rate is adjusted by suitable choice of temperature and type of peroxide.
Various techniques have been provided with the aim of accelerating the polymerization rate.
The upper limit of the polymerization rate is not particularly limited.
They are also unsuitable for automated coating cycles because of their relatively low polymerization rate.

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This is because a proper polymerization rate is obtainable under these conditions.
Further the mixed solvent should provide some degree of polarity to maintain the polymerization rate.
The presence of SEM clearly accelerates the polymerization rate for polymerizations without initiator.
Similarly, polymerization rate modifiers are catalyzed by small amounts of moisture.
Monomer conversions were then calculated from the polymerization rate and polymer composition data.
The polymer produced was removed from the reactor discontinuously, depending on the polymerization rate.
A significant increase in polymerization rate was observed, allowing shorter reactor times.
In fact, the polymerization temperature affects essentially the polymerization rate.
As discussed above, controlling the polymerization rate of previously-known bioadhesives has been difficult.
The smaller the difference, the higher the polymerization rate.
The polymerization rate immediately dropped to zero suggesting that the Ziegler-Natta catalyst activity was suppressed.
If added before polymerization or during polymerization, the polymerization rate may be reduced.
Polymerization rate is measured as rate at which intrinsic viscosity ( IV ) increases during reaction.
However, by such conventional methods, the polymerization rate can not be satisfactorily increased.
In addition, a moisture content of the composition plays an important role in the polymerization rate.
This preparation was, however, unreliable and the polymerization rate varied in an unacceptable manner.
In the ester-exchange method, a polymerization catalyst can be used for increasing the polymerization rate.
The feed temperature was varied, depending on the polymerization rate to maintain a constant reactor temperature.
The polymerization rate did not increase but remained at the value of 32 kg / h.
The polymerization time was, therefore, prolonged when the polymerization rate was not sufficient.
The data relating to MFI, polymerization rate and chemical stability are reported in Table 1.
In fact, they can have very different, effects on polymerization rate.
Thus, the polymerization rate depends on the initiation rate to the ½ power.
It has also been surprisingly found that 152a has a limited effect on the polymerization rate.
Adhesive resins were characterized by polymerization rate and conversion degree ( n 3 ) and solvent degradation assays.
Therefore, the higher the ratio S1/S0, the higher the polymerization rate becomes.
Figure 2 shows polymerization rate profiles for bulk radical polymerization ( a ) and living polymerization ( b ).
When the temperature is lower than 0°C, a sufficient polymerization rate may not be obtained.
The polymerization rate according to the bulk polymerization without using any polymerization initiator was 32 %.
The catalyst exhibits a propylene oxide polymerization rate of 3.50 g propylene oxide / min.
Thus, the polymerization rate depends on the initiation rate to the ½ power . EPMATHMARKEREP EPMATHMARKEREP.
The suspending agent is entirely added while the polymerization rate is in the range of 5-50 %.
A 100 % reduction in the polymerization rate means that no polymerization is occurring within the reactor.
When the quantity is less than 0.01 % by weight, the polymerization rate becomes extremely low.
The polymerization rate was 40 g copolymer / g palladium / hour.

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