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C9H11NO3

C9H11NO3 is a chemical formula representing several different organic compounds, each possessing a molecular structure composed of 9 carbon atoms, 11 hydrogen atoms, 1 nitrogen atom, and 3 oxygen atoms. The specific arrangement of these atoms dictates the compound's identity and its chemical and physical properties. This chemical formula is not specific enough to identify a single compound; rather, it represents a class of isomers.

Different isomers sharing the C9H11NO3 formula can exhibit significant variations in their characteristics, including melting point, boiling point, solubility, and reactivity. The specific arrangement of functional groups, such as hydroxyl (-OH), amino (-NH2), carbonyl (C=O), or ether (-O-) groups, plays a crucial role in defining the properties of each isomer.

Examples of possible compounds represented by the formula C9H11NO3 include derivatives of phenylalanines, tyrosines, or other aromatic amino acids, where the specific substitution on the aromatic ring and the arrangement of the amino and carboxylic acid groups account for the varying structural configurations. These compounds could also include esters, amides, or ethers containing a benzene ring and the appropriate combination of carbon, hydrogen, nitrogen, and oxygen atoms.

Due to the potential for multiple isomers and functional group arrangements, further information about the compound's specific structure is required to accurately identify the specific molecule represented by C9H11NO3. This would typically involve spectroscopic techniques (e.g., NMR, IR, mass spectrometry) or knowledge of its synthetic origin and reaction history.