In the given reactions is the starting material being oxidized, reduced or is there no change in the oxidation state? O Hold and drag to reorder 1. = Reduced = Oxidized 3. = Oxidized = Reduced No change in = oxidation state HO OH 2) 3) 2.

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Chapter1: Chemical Foundations
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### H14.1 - Level 1

**Status:** Unanswered • 3 attempts left

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**Question:**
In the given reactions, is the starting material being oxidized, reduced, or is there no change in the oxidation state?

Use the "Hold and drag to reorder" option to sort the reactions correctly.

---

**Options:**

1. Reduced
2. Oxidized
3. Oxidized
4. Reduced
5. No change in oxidation state

---

**Reactions Diagram Explanation:**

1. The first reaction shows a transformation from a secondary alcohol to an aldehyde.
   - **Chemical Structures:**
     - Initial: \(\mathbf{CH_3-CHOH-CH_3}\)
     - Final: \(\mathbf{CH_3-CO-CH_3}\)

2. The second reaction converts a ketone to a secondary alcohol.
   - **Chemical Structures:**
     - Initial: \(\mathbf{CH_3-CO-CH_3}\)
     - Final: \(\mathbf{CH_3-CHOH-CH_3}\)
   
3. The third reaction involves the conversion of a ketone to a cyclic compound.
   - **Chemical Structures:**
     - Initial: \(\mathbf{CH_3-CO-CH_3}\)
     - Final: Cyclic compound with three carbon atoms and one oxygen.

---

Note: To determine whether the reactions involve oxidation or reduction, consider the changes in the oxidation states of carbon atoms within the molecules.
Transcribed Image Text:### H14.1 - Level 1 **Status:** Unanswered • 3 attempts left --- **Question:** In the given reactions, is the starting material being oxidized, reduced, or is there no change in the oxidation state? Use the "Hold and drag to reorder" option to sort the reactions correctly. --- **Options:** 1. Reduced 2. Oxidized 3. Oxidized 4. Reduced 5. No change in oxidation state --- **Reactions Diagram Explanation:** 1. The first reaction shows a transformation from a secondary alcohol to an aldehyde. - **Chemical Structures:** - Initial: \(\mathbf{CH_3-CHOH-CH_3}\) - Final: \(\mathbf{CH_3-CO-CH_3}\) 2. The second reaction converts a ketone to a secondary alcohol. - **Chemical Structures:** - Initial: \(\mathbf{CH_3-CO-CH_3}\) - Final: \(\mathbf{CH_3-CHOH-CH_3}\) 3. The third reaction involves the conversion of a ketone to a cyclic compound. - **Chemical Structures:** - Initial: \(\mathbf{CH_3-CO-CH_3}\) - Final: Cyclic compound with three carbon atoms and one oxygen. --- Note: To determine whether the reactions involve oxidation or reduction, consider the changes in the oxidation states of carbon atoms within the molecules.
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