Examples of 'separated by fractional' in a sentence

Meaning of "separated by fractional"

separated by fractional: to have a small amount of something as a separation or gap

How to use "separated by fractional" in a sentence

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separated by fractional
They may also be separated by fractional condensation.
Separated by fractional distillation.
These diastereomers may be separated by fractional crystallization.
They are separated by fractional precipitation from protein-free extracts using ethanol.
Methylglutaronitrile can be separated by fractional distillation.
The reaction products ( predominantly tetrahydrofuran or tetrahydrofuran and gamma-butyrolactone ) are advantageously separated by fractional distillation.
This mixture can again be separated by fractional distillation.
The reaction products ( predominantly tetrahydrofuran and gamma-butyrolactone ) are advantageously separated by fractional distillation.
The isomers may then be separated by fractional crystallization.
The reaction products, 1,4-butanediol, tetrahydrofuran, gamma-butyrolactone or mixtures thereof, are advantageously separated by fractional distillation.
The mixture was separated by fractional crystallisation.
The constituents of an azeotropic mixture can not be separated by fractional distillation.
Air is traditionally separated by fractional distillation at cryogenic temperatures.
The two diastereoisomeric salts thus obtained are then separated by fractional crystallisation.
These can be separated by fractional distillation.

See also

The salts of the two diastereoisomers thus obtained are separated by fractional crystallization.
They may then be separated by fractional distillation in a deethanizer column.
For example, refinery streams are usually separated by fractional distillation.
Ortho-xylene may be separated by fractional distillation, and it is so produced commercially.
A process according to claim 1, wherein the product is separated by fractional distillation.
Thus the compounds may be separated by fractional crystallisation and or column chromatography.
Diastereomeric adducts may also, in some circumstances, be separated by fractional crystallization.
The fluorinated products may be separated by fractional distillation or by crystallisation from a suitable solvent.
The mixture is feedstock and temperature dependent, and separated by fractional distillation.
This anomeric mixture is then separated by fractional crystallization into the two configurational isomers.
The resulting residue consisting mainly of an a, B anomeric nucleoside mixture was separated by fractional recrystallization.
These isomers were separated by fractional recrystallisation.
Next, the diastereomers VIIIa and VIIIb were separated by fractional crystallization.
Ethylbenzene may be separated by fractional distillation, although this is a costly operation.
The resulting diastereomers of formula ( VI ) are easily separated by fractional crystallization.
Azeotropic mixtures can not be separated by fractional distillation either and typically require other approaches.
In this connection, a mixture of diastereomers can be separated by fractional crystalization or chromatography.
D2O can be separated by fractional distillation or electrolysis.
The two isomers of 1,2-dichloroethylene can be separated by fractional distillation.
Ortho - xylene may be separated by fractional distillation, and it is so produced commercially.
Two mixed diastereoisomers can be separated by fractional crystallization.
These isomers were separated by fractional recrystallisation, and were identical to those prepared in Example 18.
Azeotropic mixtures can not be separated by fractional distillation.
Azeotrope cannot be separated by fractional distillation.
Immunoglobulin polymers are then separated by fractional precipitation using polyethylene glycol.
Mixtures of liquids and gases are separated by fractional distillation by difference in boiling point.
Each of the diastereomers can be separated by fractional recrystallization and column chromatography.
Then the reaction products are separated by fractional distillation with a plate column at reduced pressure.
In a batchwise operation, the products are separated by fractional distillation using distillation columns.
Individual diastereomers can be separated by fractional crystallization, chromatography and the like.
The ethylbenzene may be separated by fractional distillation, although this may be costly.
Also, a diastereomer mixture can be separated by fractional crystallization, chromatography and the like.
Finally, the various isomers may be separated by fractional distillation or other suitable separation techniques.
In some embodiments, the product mixture can be separated by fractional distillation under subatmospheric pressures.
The a / B mixture can be separated by fractional crystallization.

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