Four capacitors are arranged in the circuit shown in the figure. The capacitors have the values C, = 28.5 µF, C, = 45.5 µF, C3 = 50.5 µF, and C, = 40.5 µF, and the power supply is at voltage V = 26.5 V.

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**Circuit Analysis with Capacitors**

**Description:**

Four capacitors are arranged in the circuit shown in the figure. The capacitors have the following values:
- \( C_1 = 28.5 \, \mu \text{F} \)
- \( C_2 = 45.5 \, \mu \text{F} \)
- \( C_3 = 50.5 \, \mu \text{F} \)
- \( C_4 = 40.5 \, \mu \text{F} \)

The power supply is at a voltage \( V = 26.5 \, \text{V} \).

**Questions to Analyze the Circuit:**

1. **What is the equivalent capacitance of the circuit?**

   Equivalent capacitance: \[ \text{____} \, \mu \text{F} \]

2. **What is the charge on capacitor \( C_2 \)?**

   Charge on \( C_2 \): \[ \text{____} \, \text{C} \]

3. **What is the potential difference across capacitor \( C_3 \)?**

   Potential difference across \( C_3 \): \[ \text{____} \, \text{V} \]

4. **What is the potential energy stored in capacitor \( C_4 \)?**

   Potential energy stored in \( C_4 \): \[ \text{____} \, \text{J} \]

**Diagram Explanation:**

The circuit diagram depicts a combination of capacitors:

- Capacitors \( C_1 \) and \( C_2 \) are in series with each other.
- Capacitors \( C_3 \) and \( C_4 \) are in parallel with each other, forming another branch parallel to \( C_1 \) and \( C_2 \).

This arrangement is connected to a power supply of 26.5 V. The calculations involve determining equivalent capacitance, charge, potential difference, and energy storage in different components of the circuit based on their arrangement and given values.
Transcribed Image Text:**Circuit Analysis with Capacitors** **Description:** Four capacitors are arranged in the circuit shown in the figure. The capacitors have the following values: - \( C_1 = 28.5 \, \mu \text{F} \) - \( C_2 = 45.5 \, \mu \text{F} \) - \( C_3 = 50.5 \, \mu \text{F} \) - \( C_4 = 40.5 \, \mu \text{F} \) The power supply is at a voltage \( V = 26.5 \, \text{V} \). **Questions to Analyze the Circuit:** 1. **What is the equivalent capacitance of the circuit?** Equivalent capacitance: \[ \text{____} \, \mu \text{F} \] 2. **What is the charge on capacitor \( C_2 \)?** Charge on \( C_2 \): \[ \text{____} \, \text{C} \] 3. **What is the potential difference across capacitor \( C_3 \)?** Potential difference across \( C_3 \): \[ \text{____} \, \text{V} \] 4. **What is the potential energy stored in capacitor \( C_4 \)?** Potential energy stored in \( C_4 \): \[ \text{____} \, \text{J} \] **Diagram Explanation:** The circuit diagram depicts a combination of capacitors: - Capacitors \( C_1 \) and \( C_2 \) are in series with each other. - Capacitors \( C_3 \) and \( C_4 \) are in parallel with each other, forming another branch parallel to \( C_1 \) and \( C_2 \). This arrangement is connected to a power supply of 26.5 V. The calculations involve determining equivalent capacitance, charge, potential difference, and energy storage in different components of the circuit based on their arrangement and given values.
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