Molten carbonate fuel cells fueled with H₂ convert as much as 60% of the free energy released by the formation of water from H₂ and O2 into electrical energy. > 3rd attempt > 2nd attempt 1st attempt Feedback See Periodic Table Determine the maximum quantity of electrical energy that can be obtained from converting 1 mole of H₂ into H₂O() in such a fuel cell. x-163.884 kJ

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### Molten Carbonate Fuel Cells and Energy Conversion

Molten carbonate fuel cells fueled with hydrogen (H₂) can convert up to 60% of the free energy released by the formation of water (H₂O) from hydrogen and oxygen (O₂) into electrical energy.

#### Attempts to Solve the Problem:

**3rd Attempt**

**2nd Attempt**

**1st Attempt**

#### Feedback

**Problem Statement:**
Determine the maximum quantity of electrical energy that can be obtained from converting 1 mole of H₂ into liquid H₂O (H₂O(ℓ)) in such a fuel cell.

**User Input:**
-163.884 kJ

*Note: There is an indication that this value is incorrect, as it is marked with a red cross.*

For assistance with this problem, refer to the [Periodic Table].
Transcribed Image Text:### Molten Carbonate Fuel Cells and Energy Conversion Molten carbonate fuel cells fueled with hydrogen (H₂) can convert up to 60% of the free energy released by the formation of water (H₂O) from hydrogen and oxygen (O₂) into electrical energy. #### Attempts to Solve the Problem: **3rd Attempt** **2nd Attempt** **1st Attempt** #### Feedback **Problem Statement:** Determine the maximum quantity of electrical energy that can be obtained from converting 1 mole of H₂ into liquid H₂O (H₂O(ℓ)) in such a fuel cell. **User Input:** -163.884 kJ *Note: There is an indication that this value is incorrect, as it is marked with a red cross.* For assistance with this problem, refer to the [Periodic Table].
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