In the figure the battery potential difference Vis 20.0 V and each of the seven capacitors has capacitance 19.0 µF. What is the charge on (a) capacitor 1 and (b) capacitor 2? HH C₂ C₁

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In the figure, the battery potential difference \( V \) is 20.0 V, and each of the seven capacitors has a capacitance of 19.0 µF. What is the charge on (a) capacitor 1 and (b) capacitor 2?

**Diagram Explanation:**

The circuit consists of seven capacitors and a battery. The battery, shown at the bottom of the diagram, provides a potential difference \( V = 20.0 \) V.

**Capacitors:**

- \( C_1 \) is located on the right side of the circuit diagram.
- \( C_2 \) is located towards the bottom of the circuit diagram.

The capacitors are arranged in a mix of series and parallel connections, which will affect the overall capacitance and the charge on each capacitor.

**Approach:**

To find the charge on capacitors 1 and 2, you need to:

1. Determine the equivalent capacitance of each section of the circuit.
2. Use the formula \( Q = CV \) where \( Q \) is the charge, \( C \) is the capacitance, and \( V \) is the voltage.

By analyzing the circuit, you can calculate the charges on \( C_1 \) and \( C_2 \) using the given values.
Transcribed Image Text:In the figure, the battery potential difference \( V \) is 20.0 V, and each of the seven capacitors has a capacitance of 19.0 µF. What is the charge on (a) capacitor 1 and (b) capacitor 2? **Diagram Explanation:** The circuit consists of seven capacitors and a battery. The battery, shown at the bottom of the diagram, provides a potential difference \( V = 20.0 \) V. **Capacitors:** - \( C_1 \) is located on the right side of the circuit diagram. - \( C_2 \) is located towards the bottom of the circuit diagram. The capacitors are arranged in a mix of series and parallel connections, which will affect the overall capacitance and the charge on each capacitor. **Approach:** To find the charge on capacitors 1 and 2, you need to: 1. Determine the equivalent capacitance of each section of the circuit. 2. Use the formula \( Q = CV \) where \( Q \) is the charge, \( C \) is the capacitance, and \( V \) is the voltage. By analyzing the circuit, you can calculate the charges on \( C_1 \) and \( C_2 \) using the given values.
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