The net ionic equation for an acid-base neutralization reaction shows the combination of a(n) ion with a hydronium ion to form water molecules.
Question
The net ionic equation for an acid-base neutralization reaction shows the combination of a(n) ion with a hydronium ion to form water molecules.
Solution
The net ionic equation for an acid-base neutralization reaction shows the combination of a hydroxide ion (OH-) with a hydronium ion (H3O+) to form water molecules (H2O).
Here are the steps:
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Write the balanced molecular equation. For example, if we consider the reaction between hydrochloric acid (HCl) and sodium hydroxide (NaOH), the balanced molecular equation would be: HCl + NaOH -> NaCl + H2O
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Write the total ionic equation. In this case, all strong electrolytes (compounds that dissociate completely into ions in solution) are written as ions: H+ + Cl- + Na+ + OH- -> Na+ + Cl- + H2O
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Write the net ionic equation. This is done by cancelling out the spectator ions that appear on both sides of the total ionic equation. In this case, Na+ and Cl- are spectator ions, so the net ionic equation is: H+ + OH- -> H2O
So, the net ionic equation for an acid-base neutralization reaction shows the combination of a hydroxide ion (OH-) with a hydronium ion (H3O+) to form water molecules (H2O).
Similar Questions
The process in which an acid-base neutralization reaction is used to determine the concentration of a solution is a(n)
An ionic compound made up of a cation from a base and an anion from an acid is a(n)
A reaction in which an acid and a base in an aqueous solution react to produce a salt and water is a(n)
When sodium hydroxide dissolves in water, it dissociates to form ions, which makes sodium hydroxide a(n) base.
Write down the general equation for neutralization, metals with acid and alkali metal. [3]
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