Given the capacitor circuit below: + 12 V C₁ = 16 μF HH C₂ = 40 μF C3= 60 μF 1. What is the equivalent capacitance of the circuit? 2. How much charge is stored on C₁? 3. What is the voltage drop across C3?

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### Capacitor Circuit Description

The diagram presents a capacitor circuit with three capacitors. The circuit is powered by a 12 V battery. The capacitors are configured as follows:

- **Capacitor \( C_1 \)** has a capacitance of 16 μF.
- **Capacitor \( C_2 \)** has a capacitance of 40 μF.
- **Capacitor \( C_3 \)** has a capacitance of 60 μF.

The capacitors \( C_2 \) and \( C_3 \) are connected in parallel, and their combination is connected in series with \( C_1 \).

### Questions

1. **What is the equivalent capacitance of the circuit?**
2. **How much charge is stored on \( C_1 \)?**
3. **What is the voltage drop across \( C_3 \)?**

The circuit structure and these numerical parameters are essential for solving the questions related to equivalent capacitance, stored charge, and voltage drop across the elements.
Transcribed Image Text:### Capacitor Circuit Description The diagram presents a capacitor circuit with three capacitors. The circuit is powered by a 12 V battery. The capacitors are configured as follows: - **Capacitor \( C_1 \)** has a capacitance of 16 μF. - **Capacitor \( C_2 \)** has a capacitance of 40 μF. - **Capacitor \( C_3 \)** has a capacitance of 60 μF. The capacitors \( C_2 \) and \( C_3 \) are connected in parallel, and their combination is connected in series with \( C_1 \). ### Questions 1. **What is the equivalent capacitance of the circuit?** 2. **How much charge is stored on \( C_1 \)?** 3. **What is the voltage drop across \( C_3 \)?** The circuit structure and these numerical parameters are essential for solving the questions related to equivalent capacitance, stored charge, and voltage drop across the elements.
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