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This may be a result from the higher degree of polymerization.
Free radical polymerization has many uses in research as well.
Rates of polymerization can range from many minutes to just a few seconds.
What has been missing is some force that drives polymerization.
He also contributed to the development of so-called "living polymerization".
Therefore, the maximum rate of polymerization is somewhere in the middle.
An explanation therefore might be the increased degree of polymerization.
The process, known as polymerization, is usually carried out by applying heat or another form of energy.
This is where controlled (or living) radical polymerization comes into play.
There is an increasing interest in polymerization as a continuous flow process.
Such materials are not commercially produced because the polymerization is slow.
He also produced some important work on "living polymerization".
The catalyst must be activated in order for polymerization to occur.
This polymerization heat reaches temperatures of around 82-86 C in the body.
It also houses facilities for polymerization from small to pilot scale.
Polymerization rates also depend on the type of apparatus used for the process.
A vacuum system is required for the polymerization, significantly increasing the set up price.
During the polymerization process, some chemical groups may be lost from each monomer.
Initiation is the first step of the polymerization process.
In addition, even small amounts of sulfur will assist polymerization.
There are two important aspects with regard to the control of molecular weight in polymerization.
There are many forms of polymerization and different systems exist to categorize them.
About half of all commercial polymers are produced by radical polymerization.
Each step produces additional free radicals, which then engage in further polymerization.
The polymerization stops with the addition of an alcohol.