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Dasatinib Impurity 55

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For Research Use Only | Not For Clinical Use
CATAPB04895
Synonyms2-amino-N-(2,6-dichlorophenyl)thiazole-5-carboxamide
Molecular Weight288.15
Molecular FormulaC10H7Cl2N3OS

What is the specific name for Dasatinib Impurity 55?

The specific name for Dasatinib Impurity 55 is 2-amino-N-(2,6-dichlorophenyl)thiazole-5-carboxamide.

What is the molecular weight of Dasatinib Impurity 55?

The molecular weight of Dasatinib Impurity 55 is 288.15.

What is the molecular formula of Dasatinib Impurity 55?

The molecular formula of Dasatinib Impurity 55 is C10H7Cl2N3OS.

How many carbon atoms are present in the molecular formula of Dasatinib Impurity 55?

There are 10 carbon atoms present in the molecular formula of Dasatinib Impurity 55.

What are the chemical elements present in the molecular formula of Dasatinib Impurity 55?

The chemical elements present in the molecular formula of Dasatinib Impurity 55 are carbon, hydrogen, chlorine, nitrogen, and sulfur.

How many hydrogen atoms are present in the molecular formula of Dasatinib Impurity 55?

There are 7 hydrogen atoms present in the molecular formula of Dasatinib Impurity 55.

What is the chemical structure of Dasatinib Impurity 55 based on its molecular formula?

The chemical structure of Dasatinib Impurity 55 features a thiazole ring with a dichlorophenyl group attached to an amino group and a carboxamide group.

What is the significance of identifying impurities like Dasatinib Impurity 55 in pharmaceutical products?

Identifying impurities like Dasatinib Impurity 55 is important in ensuring the safety, efficacy, and quality of pharmaceutical products.

What role does Dasatinib Impurity 55 play in the synthesis or production of Dasatinib?

Dasatinib Impurity 55 is a specific impurity that may be present during the synthesis or production of Dasatinib, a drug used in cancer treatment.

How can laboratories analyze or detect Dasatinib Impurity 55 in pharmaceutical samples?

Laboratories can analyze or detect Dasatinib Impurity 55 in pharmaceutical samples using techniques such as chromatography, mass spectrometry, and spectroscopy.

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