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Carbidopa EP Impurity C (Hydrochloride)

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For Research Use Only | Not For Clinical Use
CATAPB01132
Synonyms(S)-2-hydrazinyl-3-(4-hydroxy-3-methoxyphenyl)-2-methylpropanoic acid hydrochloride
Molecular Weight276.72
Molecular FormulaC11H16N2O4·HCl

What is the molecular weight of Carbidopa EP Impurity C (Hydrochloride)?

The molecular weight of Carbidopa EP Impurity C (Hydrochloride) is 276.72.

What is the molecular formula of Carbidopa EP Impurity C (Hydrochloride)?

The molecular formula of Carbidopa EP Impurity C (Hydrochloride) is C11H16N2O4·HCl.

What is the synonym of Carbidopa EP Impurity C (Hydrochloride)?

The synonym of Carbidopa EP Impurity C (Hydrochloride) is (S)-2-hydrazinyl-3-(4-hydroxy-3-methoxyphenyl)-2-methylpropanoic acid hydrochloride.

How many hydrogen atoms are present in the molecular formula of Carbidopa EP Impurity C (Hydrochloride)?

There are 16 hydrogen atoms present in the molecular formula of Carbidopa EP Impurity C (Hydrochloride).

What is the chemical structure of Carbidopa EP Impurity C (Hydrochloride)?

The chemical structure of Carbidopa EP Impurity C (Hydrochloride) consists of a hydrazinyl group attached to a methylpropanoic acid with a hydroxy-methoxyphenyl group.

What is the official name of Carbidopa EP Impurity C (Hydrochloride)?

The official name of Carbidopa EP Impurity C (Hydrochloride) is (S)-2-hydrazinyl-3-(4-hydroxy-3-methoxyphenyl)-2-methylpropanoic acid hydrochloride.

Does Carbidopa EP Impurity C (Hydrochloride) have any stereoisomers?

Yes, Carbidopa EP Impurity C (Hydrochloride) has a stereoisomer due to its hydrazinyl group.

How is Carbidopa EP Impurity C (Hydrochloride) typically used in pharmaceutical research?

Carbidopa EP Impurity C (Hydrochloride) is used as a reference standard in pharmaceutical research to identify and quantify impurities in Carbidopa.

Is Carbidopa EP Impurity C (Hydrochloride) considered safe for human consumption?

Carbidopa EP Impurity C (Hydrochloride) is not intended for human consumption and is mainly used in research and quality control purposes.

What is the significance of studying impurities like Carbidopa EP Impurity C (Hydrochloride) in pharmaceuticals?

Studying impurities like Carbidopa EP Impurity C (Hydrochloride) is crucial for ensuring the quality, safety, and efficacy of pharmaceutical products, as impurities can affect the stability and potency of the drugs.

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