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The molecular formula for acetone is CH3COCH3. There are 3 carbons with 4 valence electrons each, 1 oxygen with 6 valence electrons and 6 hydrogens with 1 valence each. This means that there are 24 valence electrons in acetone.

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16y ago

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What is in a white vinegar molecule?

Acetic acid: CH3CO2H (also written as CH3COOH)


What is the name of CH3CO2H?

The name of CH3CO2H is acetic acid.


Is CH3CO2H strong acid?

No, CH3CO2H (acetic acid) is a weak acid. It only partially dissociates in water to form H+ ions.


How many valence electrons does CH3CO-OH have?

CH3CO-OH (acetic acid) has 10 valence electrons. The carbon atom contributes 4 valence electrons, each hydrogen atom contributes 1 valence electron, and the oxygen atom contributes 6 valence electrons.


What is the compound of vinegar?

Vinegar contains water (H2O) and acetic acid (CH3CO2H)


What is the formula of Acidic Acid?

If you mean acetic acid, the formula is CH3CO2H


What is the Lewis dot structure for Vinegar?

The Lewis dot structure for vinegar, which is a molecule of acetic acid (CH3COOH), consists of carbon with four valence electrons (C), two hydrogens with one valence electron each (H), one oxygen with six valence electrons (O), and one more oxygen with six valence electrons. Each hydrogen bonds with the carbon, the oxygen atoms form double bonds with the carbon, and the remaining oxygen accepts a lone pair from carbon.


What is the chemical formula for vinger?

Vinegar is (dilute) acetic acid. CH3CO2H (also written as CH3COOH) + Water H2O


Is nitrite vinegar?

No, a a nitrite is a substance containing the nitrite ion NO2- Vinegar is a solution of acetic acid (CH3CO2H) in water.


Are hydrogen atoms in vinegar?

Yes. Vinegar is a mixture of water (H2O) ad acetic acid (CH3CO2H), both of which contain hydrogen.


Why is vinegar acidic?

Vinegar is an acid because it contains acetic acid, which produces hydrogen ions when dissolved in water. CH3CO2H --> CH3CO2- + H+


Is CH3CO2H polar or non-polar?

CH3CO2H, also known as acetic acid, is a polar molecule. This is due to the presence of the carbonyl functional group, which leads to an unequal sharing of electrons and gives the molecule a dipole moment.