Examples of 'high molecular weight polymers' in a sentence
Meaning of "high molecular weight polymers"
High molecular weight polymers: Large molecules composed of repeating structural units called monomers. These polymers are used in various industrial and scientific applications due to their unique properties
How to use "high molecular weight polymers" in a sentence
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high molecular weight polymers
These are high molecular weight polymers.
Polymers of the present invention are high molecular weight polymers.
High molecular weight polymers and tannins are removed.
Such carbomers are typically high molecular weight polymers.
Nonionic high molecular weight polymers may also be utilized.
Preferred embodiments would include high molecular weight polymers of acrylamide.
New high molecular weight polymers from waste raw materials.
This may make processing of high molecular weight polymers difficult.
Organic high molecular weight polymers act as flocculants to achieve the same goal.
In solid organic concentrates the high molecular weight polymers are preferred.
They are high molecular weight polymers that have a wide range of viscosity.
Preferred impact modifiers comprise rubbery high molecular weight polymers.
Very high molecular weight polymers may present a problem with respect to elimination.
As fillers or binders starch or polyhydroxy high molecular weight polymers can be used.
Conventional high molecular weight polymers used in encapsulation procedures have a number of other disadvantages.
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Solid state polymerization is particularly useful in making high molecular weight polymers.
These shearing constraints on the high molecular weight polymers lead to macromolecular chain cleavages.
Polymers prepared according to this invention are preferably high molecular weight polymers.
The second utilizes high molecular weight polymers which do not enter the cells.
Use of too small an amount of initiator would result in high molecular weight polymers.
The description of the high molecular weight polymers indicates that they are linear polymers.
Such gels are used for the size exclusion chromatography of high molecular weight polymers.
Solvent dispersions of high molecular weight polymers have lower viscosities for easier application.
Natural rubbers suitable in the present invention include high molecular weight polymers of isoprene.
Too low or too high molecular weight polymers create difficulties in forming normal coating films.
Other thermoplastic materials and other high molecular weight polymers can be used.
DNA and RNA are high molecular weight polymers formed from many nucleotide building blocks.
Emulsion polymerization allows the preparation of high molecular weight polymers at low viscosity.
Structured, high molecular weight polymers have been previously disclosed.
The hydrogen generated in a gas phase process limits the production of high molecular weight polymers.
Thermoplastic coating compositions utilize high molecular weight polymers dispersed in an organic or aqueous solvent.
Vis-breaking is particularly useful in reducing the viscosity of high molecular weight polymers.
High molecular weight and ultra high molecular weight polymers are preferred in various embodiments.
Alginates are typically isolated from natural sources as large high molecular weight polymers e . g.
Such foam applications require high molecular weight polymers having a high storage modulus.
High molecular weight polymers may contribute to the viscosity build-up of inks in uncapped nozzles.
A pharmaceutical composition may comprise a stabiliser selected from high molecular weight polymers or low molecular compounds.
In some embodiments, high molecular weight polymers are preferred for the diffusion controller.
Laminarin and curdlan are typically found in nature as high molecular weight polymers e . g.
Generally, these were high molecular weight polymers and were crosslinked into tires with reduced hysteresis.
This approach, however, usually does not produce high molecular weight polymers.
They are high molecular weight polymers ( e.g. due to heavy crosslinking ).
A co-catalyst of water appears necessary and high molecular weight polymers can be obtained.
High molecular weight polymers have been achieved with 5 % and 10 % amide functionality.
To overcome this problem, high molecular weight polymers are added to the water.
These steps can be repeated multiple times, potentially leading to high molecular weight polymers.
However, it is difficult to obtain high molecular weight polymers with this catalyst system.
Such polymers are needed in sealing applications which require tough, high molecular weight polymers.
Additionally, it has less than about 5 % high molecular weight polymers of a hemoglobin based composition.
They catalyze alpha-olefin polymerization at low reaction temperature to produce high molecular weight polymers.
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