which equation represents the total ionic equation for the reaction of hno₃ and naoh?\n○ h⁺ + oh⁻ → h₂o\n○…

which equation represents the total ionic equation for the reaction of hno₃ and naoh?\n○ h⁺ + oh⁻ → h₂o\n○ hno₃ + naoh → nano₃ + h₂o\n○ h⁺ + no₃⁻ + na⁺ + oh⁻ → na⁺ + no₃⁻ + h₂o\n○ h⁺ + no₃⁻ + oh⁻ → no₃⁻ + h₂o

which equation represents the total ionic equation for the reaction of hno₃ and naoh?\n○ h⁺ + oh⁻ → h₂o\n○ hno₃ + naoh → nano₃ + h₂o\n○ h⁺ + no₃⁻ + na⁺ + oh⁻ → na⁺ + no₃⁻ + h₂o\n○ h⁺ + no₃⁻ + oh⁻ → no₃⁻ + h₂o

Answer

Explanation:

Step1: Identify reactants dissociation

$HNO_3$ is a strong acid and dissociates completely into $H^+$ and $NO_3^-$ ions in solution. $NaOH$ is a strong - base and dissociates completely into $Na^+$ and $OH^-$ ions in solution.

Step2: Write products dissociation

The product $NaNO_3$ is a soluble salt and dissociates into $Na^+$ and $NO_3^-$ ions in solution, and $H_2O$ remains in molecular form as it is a weak - electrolyte.

Step3: Write total ionic equation

The total ionic equation shows all the ions present in the solution during the reaction. So the reaction $HNO_3(aq)+NaOH(aq)\rightarrow NaNO_3(aq) + H_2O(l)$ in total ionic form is $H^+(aq)+NO_3^-(aq)+Na^+(aq)+OH^-(aq)\rightarrow Na^+(aq)+NO_3^-(aq)+H_2O(l)$.

Answer:

$H^+(aq)+NO_3^-(aq)+Na^+(aq)+OH^-(aq)\rightarrow Na^+(aq)+NO_3^-(aq)+H_2O(l)$