What is the chemical formula for acetic acid?

Is the chemical formula for dilute acetic acid different then regular acetic acid?

  • Answer:

    NO, the dilution of an acid does not alter the chemical composition of the acid itself. Dilution only reduces the ratio of moles (the unit measurement of chemistry) of acid relative to the moles of the solvent. In other words, there are less moles of acid per each mole of solvent. In the case of acetic acid, the solvent usually is water and dilution of acetic acid means adding more water to the acid, making the overall solution less acidic.

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NO, the dilution of an acid does not alter the chemical composition of the acid itself. Dilution only reduces the ratio of moles (the unit measurement of chemistry) of acid relative to the moles of the solvent. In other words, there are less moles of acid per each mole of solvent. In the case of acetic acid, the solvent usually is water and dilution of acetic acid means adding more water to the acid, making the overall solution less acidic.

Electron...

The formula of Acetic Acid is CH3COOH. When you dilute acetic acid in water it divided into CH3COO- and H+ ions. It mean that in dilution acetic acid lost it existence as CH3COOH.

Munshi Ashraf

This Site Might Help You. RE: is the chemical formula for dilute acetic acid different then regular acetic acid? and what is the correct formula

Angele

Acetic acid has the empirical formula CH2O and the molecular formula C2H4O2. The latter is often written as CH3-COOH, CH3COOH, or CH3CO2H to better reflect its structure. The ion resulting from loss of H+ from acetic acid is the acetate anion. The name acetate can also refer to a salt containing this anion or an ester of acetic acid.

Paula

For the best answers, search on this site https://shorturl.im/awpSl (m) 1. Chemical Formula CH3COOH (Acetic Acid)

Rebecca

The formula of Acetic Acid is CH3COOH. When you dilute acetic acid in water it divided into CH3COO- and H+ ions. It mean that in dilution acetic acid lost it existence as CH3COOH.

Munshi Ashraf

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