Examples of 'properties of the polymer' in a sentence

Meaning of "properties of the polymer"

Properties of the polymer refer to the characteristics, traits, or attributes exhibited by a polymer material. These properties can include mechanical properties (such as strength, elasticity, and hardness), thermal properties (such as melting point and heat resistance), and chemical properties (such as reactivity and resistance to chemicals). Understanding the properties of a polymer is essential in its application and usage in various industries

How to use "properties of the polymer" in a sentence

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properties of the polymer
The physical properties of the polymer were measured.
Not significantly alter the mechanical properties of the polymer.
When the properties of the polymer medium is changed.
It has little effect on the antifoam properties of the polymer.
Mechanical properties of the polymer are measured on thin films.
This in turn changes the mechanical properties of the polymer.
The mechanical properties of the polymer are influenced by these as well.
This results in disadvantageous changes in the properties of the polymer.
Analysis of the properties of the polymer will be described first.
These properties may conflict with the properties of the polymer.
The final properties of the polymer depend on their structure.
Its degree of crosslinking is determinative for the properties of the polymer.
Consequently the end properties of the polymer are totally different.
The various formulations change the physical properties of the polymer.
The properties of the polymer depend on its molecular weight.

See also

Fines can adversely affect properties of the polymer product.
The properties of the polymer obtained are given in the table below.
Components which modify the properties of the polymer may also be added.
The properties of the polymer were evaluated in accordance with the following methods.
Reliable results require a fine knowledge of the thermophysical properties of the polymer.
The mechanical properties of the polymer of the invention are also excellent.
The temperature required to do this is dependent on the intrinsic properties of the polymer.
The mechanical properties of the polymer plaque produced are shown below.
The base substrate will be endowed with the properties of the polymer.
The physical properties of the polymer were measured by methods described below.
The present invention utilizes the above properties of the polymer suture.
The unique properties of the polymer membranes have unlocked unprecedented possibilities.
These reactions may be desired to enhance various properties of the polymer system.
Moreover handling properties of the polymer dispersions according to the invention were found superior.
All variations improved several of the properties of the polymer end product.
The mechanical properties of the polymer polypropylene used are listed in the Table.
Also the use of titaniumoxide improves the properties of the polymer composition.
The mechanical properties of the polymer polymethyl pentene used are listed in the Table.
It should be inert and not influence the properties of the polymer product produced.
Properties of the Polymer.
Different options for producing the desired properties of the polymer have been discovered.
The main properties of the polymer are as follows,.
It is the structure of these side chains that influences the properties of the polymer.
By controlling specific surface properties of the polymer lower probabilities of detachment can be achieved.
Reactive extrusion is a process used for enhancing the properties of the polymer material.
By controlling specific surface properties of the polymer high probabilities of attachment can be achieved.
This procedure will significantly affect the physical properties of the polymer particles.
The physical properties of the polymer are recorded in Table I.
These changes affect both the electrical and optical properties of the polymer.
Crimping operation can alter properties of the polymer and hence the properties of the stent.
Above this temperature there is a drastic deterioration of the mechanical properties of the polymer.
The polymerization variables and the properties of the polymer compositions are summarized in Table II.
Flame retardant does not damage the physical and mechanical properties of the polymer.
The reaction parameters and the properties of the polymer are summarized in the following Table I.
The optimal substitution patterns are determined by the conformational properties of the polymer backbone.

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