3+ Каста От + NaNo2 Набону С2+ +no Cr NO 3+ 3+ K₂ Cr ₂ O₂ + FeSDy #₂50₂ Cr³+ + Fe Набо, KI + HNO3 -->1₂ I 2

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how do you find the oxidizing agent and reducing agent for the following chemical equations?

Here are the chemical reactions depicted in the image:

1. **Reaction of Potassium Dichromate with Sodium Nitrite:**
   \[
   K_2Cr_2O_7 + NaNO_2 \xrightarrow{H_2SO_4} Cr^{3+} + NO
   \]

   In this reaction, potassium dichromate (\(K_2Cr_2O_7\)) reacts with sodium nitrite (\(NaNO_2\)) in the presence of sulfuric acid (\(H_2SO_4\)), resulting in chromium ions (\(Cr^{3+}\)) and nitric oxide (\(NO\)).

2. **Reaction of Potassium Dichromate with Iron(II) Sulfate:**
   \[
   K_2Cr_2O_7 + FeSO_4 \xrightarrow{H_2SO_4} Cr^{3+} + Fe^{3+}
   \]

   This reaction shows potassium dichromate (\(K_2Cr_2O_7\)) reacting with iron(II) sulfate (\(FeSO_4\)) in the presence of sulfuric acid (\(H_2SO_4\)), yielding chromium ions (\(Cr^{3+}\)) and iron(III) ions (\(Fe^{3+}\)).

3. **Reaction of Potassium Iodide with Nitric Acid:**
   \[
   KI + HNO_3 \rightarrow I_2
   \]

   Here, potassium iodide (\(KI\)) reacts with nitric acid (\(HNO_3\)), producing iodine (\(I_2\)).

These reactions illustrate redox processes where oxidizing agents such as potassium dichromate are used to oxidize other compounds, leading to the formation of different ionic species.
Transcribed Image Text:Here are the chemical reactions depicted in the image: 1. **Reaction of Potassium Dichromate with Sodium Nitrite:** \[ K_2Cr_2O_7 + NaNO_2 \xrightarrow{H_2SO_4} Cr^{3+} + NO \] In this reaction, potassium dichromate (\(K_2Cr_2O_7\)) reacts with sodium nitrite (\(NaNO_2\)) in the presence of sulfuric acid (\(H_2SO_4\)), resulting in chromium ions (\(Cr^{3+}\)) and nitric oxide (\(NO\)). 2. **Reaction of Potassium Dichromate with Iron(II) Sulfate:** \[ K_2Cr_2O_7 + FeSO_4 \xrightarrow{H_2SO_4} Cr^{3+} + Fe^{3+} \] This reaction shows potassium dichromate (\(K_2Cr_2O_7\)) reacting with iron(II) sulfate (\(FeSO_4\)) in the presence of sulfuric acid (\(H_2SO_4\)), yielding chromium ions (\(Cr^{3+}\)) and iron(III) ions (\(Fe^{3+}\)). 3. **Reaction of Potassium Iodide with Nitric Acid:** \[ KI + HNO_3 \rightarrow I_2 \] Here, potassium iodide (\(KI\)) reacts with nitric acid (\(HNO_3\)), producing iodine (\(I_2\)). These reactions illustrate redox processes where oxidizing agents such as potassium dichromate are used to oxidize other compounds, leading to the formation of different ionic species.
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