2. The capacitor in the figure below is initially uncharged and the switch, in position c, is not connected to either side of the circuit. The switch is now flipped to position a for 10 ms, then to position b for 10 ms, and then brought back to position c. What is the final potential difference across the capacitor? 12 V 150 Ω www. 40 μF b 150 Ω ww

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**Question 2: Capacitor Circuit Analysis**

In the following circuit diagram, we observe a setup which includes a capacitor initially uncharged. The switch, positioned at 'c', is not connected to either side of the circuit at the start. The procedure involves flipping the switch to position 'a' for a duration of 10 milliseconds, subsequently moving it to position 'b' for another 10 milliseconds, and finally returning it to position 'c'. Our task is to determine the final potential difference across the capacitor.

**Circuit Description:**

- **Voltage Source:** The circuit features a 12 V battery.
- **Components:**
  - **Resistor 1:** 150 Ω in series with the switch at position 'a'.
  - **Capacitor:** 40 μF connected in between the branches.
  - **Resistor 2:** 150 Ω in series on the right-hand branch with the switch at position 'b'.

**Switch Positions:**

- **Position 'a':** Charges the capacitor by completing the path with the 12 V battery and Resistor 1.
- **Position 'b':** Discharges the capacitor through Resistor 2.
- **Position 'c':** An open position with no connection to the circuit.

**Objective:** Determine the potential difference across the capacitor when the switch is returned to position 'c'.
Transcribed Image Text:**Question 2: Capacitor Circuit Analysis** In the following circuit diagram, we observe a setup which includes a capacitor initially uncharged. The switch, positioned at 'c', is not connected to either side of the circuit at the start. The procedure involves flipping the switch to position 'a' for a duration of 10 milliseconds, subsequently moving it to position 'b' for another 10 milliseconds, and finally returning it to position 'c'. Our task is to determine the final potential difference across the capacitor. **Circuit Description:** - **Voltage Source:** The circuit features a 12 V battery. - **Components:** - **Resistor 1:** 150 Ω in series with the switch at position 'a'. - **Capacitor:** 40 μF connected in between the branches. - **Resistor 2:** 150 Ω in series on the right-hand branch with the switch at position 'b'. **Switch Positions:** - **Position 'a':** Charges the capacitor by completing the path with the 12 V battery and Resistor 1. - **Position 'b':** Discharges the capacitor through Resistor 2. - **Position 'c':** An open position with no connection to the circuit. **Objective:** Determine the potential difference across the capacitor when the switch is returned to position 'c'.
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