In the capacitor network shown below, C1=30 microfarads, C2=20 microfarads, C3= 5 microfarads, C4=6 microfarads, and V=4 volts. What is the charge stored in C2? a. 22 microcoulombs b. 12 microcoulombs c. 5 microcoulombs d. 18 microcoulombs

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In the capacitor network shown below, C1=30 microfarads, C2=20 microfarads, C3= 5 microfarads, C4=6 microfarads, and V=4 volts. What is the charge stored in C2?

a. 22 microcoulombs

b. 12 microcoulombs

c. 5 microcoulombs

d. 18 microcoulombs

The image depicts an electrical circuit diagram featuring capacitors and a voltage source. Here's a detailed description:

- **Voltage Source (V):** The circuit is powered by a voltage source, represented by the symbol "V" on the left side of the diagram.

- **Capacitors:**

  - **C₁:** This capacitor is positioned in series with the voltage source.
  
  - **C₂ and C₃:** These two capacitors are connected in parallel with each other. They appear on the right side of the circuit.
  
  - **C₄:** This capacitor is in series with the combination of C₂ and C₃ connected in parallel. 

The configuration demonstrates a mixed series-parallel circuit. The series capacitor (C₁) and the parallel combination of C₂, C₃, and C₄ collectively affect the total capacitance and the distribution of voltage across each component in the circuit. Understanding these connections is crucial for calculating the equivalent capacitance and analyzing the circuit's behavior under various conditions.
Transcribed Image Text:The image depicts an electrical circuit diagram featuring capacitors and a voltage source. Here's a detailed description: - **Voltage Source (V):** The circuit is powered by a voltage source, represented by the symbol "V" on the left side of the diagram. - **Capacitors:** - **C₁:** This capacitor is positioned in series with the voltage source. - **C₂ and C₃:** These two capacitors are connected in parallel with each other. They appear on the right side of the circuit. - **C₄:** This capacitor is in series with the combination of C₂ and C₃ connected in parallel. The configuration demonstrates a mixed series-parallel circuit. The series capacitor (C₁) and the parallel combination of C₂, C₃, and C₄ collectively affect the total capacitance and the distribution of voltage across each component in the circuit. Understanding these connections is crucial for calculating the equivalent capacitance and analyzing the circuit's behavior under various conditions.
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