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4.26 write balanced net ionic equations for the reactions that occur in…

Question

4.26 write balanced net ionic equations for the reactions that occur in each of the following cases. identify the spectator ion or ions in each reaction.
(a) cr₂(so₄)₃(aq) + (nh₄)₂co₃(aq) →
(b) ba(no₃)₂(aq) + k₂so₄(aq) →
(c) fe(no₃)₂(aq) + koh(aq) →

Explanation:

Step1: Write total ionic equations

(a) The total ionic equation for $\mathrm{Cr}_{2}(\mathrm{SO}_{4})_{3}(aq)+3(\mathrm{NH}_{4})_{2}\mathrm{CO}_{3}(aq)\to \mathrm{Cr}_{2}(\mathrm{CO}_{3})_{3}(s)+3(\mathrm{NH}_{4})_{2}\mathrm{SO}_{4}(aq)$ is $2\mathrm{Cr}^{3 +}(aq)+3\mathrm{SO}_{4}^{2 -}(aq)+6\mathrm{NH}_{4}^{+}(aq)+3\mathrm{CO}_{3}^{2 -}(aq)\to\mathrm{Cr}_{2}(\mathrm{CO}_{3})_{3}(s)+6\mathrm{NH}_{4}^{+}(aq)+3\mathrm{SO}_{4}^{2 -}(aq)$.
(b) The total ionic equation for $\mathrm{Ba}(\mathrm{NO}_{3})_{2}(aq)+\mathrm{K}_{2}\mathrm{SO}_{4}(aq)\to\mathrm{BaSO}_{4}(s)+2\mathrm{KNO}_{3}(aq)$ is $\mathrm{Ba}^{2 +}(aq)+2\mathrm{NO}_{3}^{-}(aq)+2\mathrm{K}^{+}(aq)+\mathrm{SO}_{4}^{2 -}(aq)\to\mathrm{BaSO}_{4}(s)+2\mathrm{K}^{+}(aq)+2\mathrm{NO}_{3}^{-}(aq)$.
(c) The total ionic equation for $\mathrm{Fe}(\mathrm{NO}_{3})_{2}(aq)+2\mathrm{KOH}(aq)\to\mathrm{Fe}(\mathrm{OH})_{2}(s)+2\mathrm{KNO}_{3}(aq)$ is $\mathrm{Fe}^{2 +}(aq)+2\mathrm{NO}_{3}^{-}(aq)+2\mathrm{K}^{+}(aq)+2\mathrm{OH}^{-}(aq)\to\mathrm{Fe}(\mathrm{OH})_{2}(s)+2\mathrm{K}^{+}(aq)+2\mathrm{NO}_{3}^{-}(aq)$.

Step2: Cancel out spectator ions to get net - ionic equations

(a) Canceling out $6\mathrm{NH}_{4}^{+}(aq)$ and $3\mathrm{SO}_{4}^{2 -}(aq)$ on both sides, the net - ionic equation is $2\mathrm{Cr}^{3 +}(aq)+3\mathrm{CO}_{3}^{2 -}(aq)\to\mathrm{Cr}_{2}(\mathrm{CO}_{3})_{3}(s)$. Spectator ions are $\mathrm{NH}_{4}^{+}$ and $\mathrm{SO}_{4}^{2 -}$.
(b) Canceling out $2\mathrm{K}^{+}(aq)$ and $2\mathrm{NO}_{3}^{-}(aq)$ on both sides, the net - ionic equation is $\mathrm{Ba}^{2 +}(aq)+\mathrm{SO}_{4}^{2 -}(aq)\to\mathrm{BaSO}_{4}(s)$. Spectator ions are $\mathrm{K}^{+}$ and $\mathrm{NO}_{3}^{-}$.
(c) Canceling out $2\mathrm{K}^{+}(aq)$ and $2\mathrm{NO}_{3}^{-}(aq)$ on both sides, the net - ionic equation is $\mathrm{Fe}^{2 +}(aq)+2\mathrm{OH}^{-}(aq)\to\mathrm{Fe}(\mathrm{OH})_{2}(s)$. Spectator ions are $\mathrm{K}^{+}$ and $\mathrm{NO}_{3}^{-}$.

Answer:

(a) Net - ionic equation: $2\mathrm{Cr}^{3 +}(aq)+3\mathrm{CO}_{3}^{2 -}(aq)\to\mathrm{Cr}_{2}(\mathrm{CO}_{3})_{3}(s)$; Spectator ions: $\mathrm{NH}_{4}^{+}$, $\mathrm{SO}_{4}^{2 -}$
(b) Net - ionic equation: $\mathrm{Ba}^{2 +}(aq)+\mathrm{SO}_{4}^{2 -}(aq)\to\mathrm{BaSO}_{4}(s)$; Spectator ions: $\mathrm{K}^{+}$, $\mathrm{NO}_{3}^{-}$
(c) Net - ionic equation: $\mathrm{Fe}^{2 +}(aq)+2\mathrm{OH}^{-}(aq)\to\mathrm{Fe}(\mathrm{OH})_{2}(s)$; Spectator ions: $\mathrm{K}^{+}$, $\mathrm{NO}_{3}^{-}$