Solution:
To solve this, we will use the concept of common potential and energy conservation. Let's derive it step-by-step:
- Initial Energy Stored in Capacitor 1
Let the initial capacitance of the first capacitor be , and the battery's voltage be .
The energy stored in the capacitor is: - When the second capacitor is connected
After disconnecting the battery, an identical capacitor (with capacitance ) is connected across the first one. The total charge remains conserved because the battery is removed. Let the final voltage be .Total charge initially:
After connecting the second capacitor, the total capacitance becomes:
Common potential :
- Final Energy Stored in Both Capacitors
The final energy stored in the system is the sum of the energy in both capacitors:Substituting :
Simplifying:
Thus, the final energy stored in the system is .
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