Where is the oxidation process occurring in the voltaic cell diagrammed below? Press the hotspot to indicate your answer. Electron flow Zinc metal anode Zinc solution Voltmeter Salt bridge Copper metal cathode Copper solution

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### Voltaic Cell Oxidation Process

**Question:**

Where is the oxidation process occurring in the voltaic cell diagrammed below?

Press the hotspot to indicate your answer.

**Diagram Explanation:**

The provided diagram illustrates a voltaic (galvanic) cell setup with two beakers. Each beaker contains a different solution and a metal electrode immersed in it. The setup is as follows:

1. **Left Beaker (Zinc Solution):**
   - Contains a zinc metal electrode labeled as "Zinc metal anode."
   - The solution in this beaker is referred to as "Zinc solution."

2. **Right Beaker (Copper Solution):**
   - Contains a copper metal electrode labeled as "Copper metal cathode."
   - The solution in this beaker is referred to as "Copper solution."

3. **Electron Flow:**
   - Electrons flow from the zinc metal anode (left) to the copper metal cathode (right) through an external circuit. A voltmeter is placed in the external circuit to measure the voltage.

4. **Salt Bridge:**
   - A salt bridge connects the two solutions, allowing ions to flow between the two beakers and maintain electrical neutrality.

**Processes:**
- **Oxidation** occurs at the anode. In the diagram, this is the zinc metal anode in the zinc solution.
- **Reduction** occurs at the cathode. In the diagram, this is the copper metal cathode in the copper solution.

**Answer:**
- The **oxidation process** is occurring at the zinc metal anode in the zinc solution (the left beaker).

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Transcribed Image Text:--- ### Voltaic Cell Oxidation Process **Question:** Where is the oxidation process occurring in the voltaic cell diagrammed below? Press the hotspot to indicate your answer. **Diagram Explanation:** The provided diagram illustrates a voltaic (galvanic) cell setup with two beakers. Each beaker contains a different solution and a metal electrode immersed in it. The setup is as follows: 1. **Left Beaker (Zinc Solution):** - Contains a zinc metal electrode labeled as "Zinc metal anode." - The solution in this beaker is referred to as "Zinc solution." 2. **Right Beaker (Copper Solution):** - Contains a copper metal electrode labeled as "Copper metal cathode." - The solution in this beaker is referred to as "Copper solution." 3. **Electron Flow:** - Electrons flow from the zinc metal anode (left) to the copper metal cathode (right) through an external circuit. A voltmeter is placed in the external circuit to measure the voltage. 4. **Salt Bridge:** - A salt bridge connects the two solutions, allowing ions to flow between the two beakers and maintain electrical neutrality. **Processes:** - **Oxidation** occurs at the anode. In the diagram, this is the zinc metal anode in the zinc solution. - **Reduction** occurs at the cathode. In the diagram, this is the copper metal cathode in the copper solution. **Answer:** - The **oxidation process** is occurring at the zinc metal anode in the zinc solution (the left beaker). ---
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