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Febuxostat Impurity 32

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For Research Use Only | Not For Clinical Use
CATAPB06173
Synonyms2-(4-hydroxy-3-((hydroxyimino)methyl)phenyl)-4-methylthiazole-5-carboxylic acid
Molecular Weight278.04
Molecular FormulaC12H10N2O4S

What is the chemical name of Febuxostat Impurity 32?

The chemical name of Febuxostat Impurity 32 is 2-(4-hydroxy-3-((hydroxyimino)methyl)phenyl)-4-methylthiazole-5-carboxylic acid.

What is the molecular weight of Febuxostat Impurity 32?

The molecular weight of Febuxostat Impurity 32 is 278.04.

What is the molecular formula of Febuxostat Impurity 32?

The molecular formula of Febuxostat Impurity 32 is C12H10N2O4S.

How many oxygen atoms are present in the molecular formula of Febuxostat Impurity 32?

There are four oxygen atoms present in the molecular formula of Febuxostat Impurity 32.

What is the composition of Febuxostat Impurity 32 in terms of carbon, hydrogen, nitrogen, and sulfur atoms?

Febuxostat Impurity 32 contains 12 carbon atoms, 10 hydrogen atoms, 2 nitrogen atoms, and 1 sulfur atom.

What functional groups are present in the chemical structure of Febuxostat Impurity 32?

The chemical structure of Febuxostat Impurity 32 contains a hydroxyl group, an imine group, a methyl group, a thiazole ring, and a carboxylic acid group.

Is Febuxostat Impurity 32 a commonly used pharmaceutical compound?

Febuxostat Impurity 32 is not a commonly used pharmaceutical compound, but ra- Ther an impurity of the drug Febuxostat.

How is Febuxostat Impurity 32 related to the drug Febuxostat?

Febuxostat Impurity 32 is a related chemical compound that may be present as an impurity in the manufacturing or storage of the drug Febuxostat.

What role does Febuxostat Impurity 32 play in the pharmaceutical industry?

Febuxostat Impurity 32 is important in pharmaceutical analysis and quality control, as it is necessary to identify and quantify impurities in drug formulations.

How can Febuxostat Impurity 32 be detected and analyzed in pharmaceutical samples?

Febuxostat Impurity 32 can be detected and analyzed using analytical techniques such as HPLC (High Performance Liquid Chromatography) or spectroscopy methods.

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