Balance the following chemical equation (if necessary): Na*(aq) + CI-(aq) + Ag*(aq) + NO3 (aq) → Na*(aq) + AgCl(s) + N0: (aq)

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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**Balance the Following Chemical Equation:**

The task is to balance the given chemical equation if necessary. The equation is:

\[ \text{Na}^+(aq) + \text{Cl}^-(aq) + \text{Ag}^+(aq) + \text{NO}_3^-(aq) \rightarrow \text{Na}^+(aq) + \text{AgCl}(s) + \text{NO}_3^-(aq) \]

**Components:**

- **Reactants:** Na\(^+\)(aq), Cl\(^-\)(aq), Ag\(^+\)(aq), NO\(_3^-\)(aq)
- **Products:** Na\(^+\)(aq), AgCl(s), NO\(_3^-\)(aq)

**Balancing Tools Provided:**

- Options to adjust coefficients: boxes for negative and positive coefficients, numbers 0 to 9.
- Chemical symbols and states: Cl, Ag, NO, Na, Cr, Ar, O, N, with states in parentheses (s for solid, l for liquid, g for gas, aq for aqueous).
- Operation symbols: addition (+), and equilibrium arrow (⇌).

The reaction shows the formation of solid silver chloride (AgCl) from the aqueous ions. Balancing this equation involves ensuring the number of each type of atom on the reactant side is equal to the product side. The coefficients are adjusted accordingly using the provided tools.
Transcribed Image Text:**Balance the Following Chemical Equation:** The task is to balance the given chemical equation if necessary. The equation is: \[ \text{Na}^+(aq) + \text{Cl}^-(aq) + \text{Ag}^+(aq) + \text{NO}_3^-(aq) \rightarrow \text{Na}^+(aq) + \text{AgCl}(s) + \text{NO}_3^-(aq) \] **Components:** - **Reactants:** Na\(^+\)(aq), Cl\(^-\)(aq), Ag\(^+\)(aq), NO\(_3^-\)(aq) - **Products:** Na\(^+\)(aq), AgCl(s), NO\(_3^-\)(aq) **Balancing Tools Provided:** - Options to adjust coefficients: boxes for negative and positive coefficients, numbers 0 to 9. - Chemical symbols and states: Cl, Ag, NO, Na, Cr, Ar, O, N, with states in parentheses (s for solid, l for liquid, g for gas, aq for aqueous). - Operation symbols: addition (+), and equilibrium arrow (⇌). The reaction shows the formation of solid silver chloride (AgCl) from the aqueous ions. Balancing this equation involves ensuring the number of each type of atom on the reactant side is equal to the product side. The coefficients are adjusted accordingly using the provided tools.
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