*5.19 For the circuit in Fig. P5.19, find Ceq at terminals (a, b). Assume all initial voltages to be zero. 5 F 3F 5 F a o Oc 6 F= 6 F: bo od 3 F 5 F Figure P5.19: Circuit for Problems 5.19 and 5.20.

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**Problem 5.19:**

For the circuit in Figure P5.19, find the equivalent capacitance \( C_{eq} \) at terminals (a, b). Assume all initial voltages to be zero.

---

**Figure Explanation:**

The diagram shows a network of capacitors arranged between four terminals labeled a, b, c, and d. 

- There are two capacitors connected in series between terminals a and c, both with capacitance values of 5 F.
- A capacitor of 6 F is connected in parallel to this series combination between terminals b and c.
- Another parallel branch consists of two capacitors in series with capacitance values of 3 F and 5 F connecting point a through b to point c.
- Between b and d, there is a series combination of a 6 F and a 3 F capacitor.

The task is to determine the equivalent capacitance as observed from terminals a and b.

*Figure P5.19: Circuit for Problems 5.19 and 5.20.*
Transcribed Image Text:**Problem 5.19:** For the circuit in Figure P5.19, find the equivalent capacitance \( C_{eq} \) at terminals (a, b). Assume all initial voltages to be zero. --- **Figure Explanation:** The diagram shows a network of capacitors arranged between four terminals labeled a, b, c, and d. - There are two capacitors connected in series between terminals a and c, both with capacitance values of 5 F. - A capacitor of 6 F is connected in parallel to this series combination between terminals b and c. - Another parallel branch consists of two capacitors in series with capacitance values of 3 F and 5 F connecting point a through b to point c. - Between b and d, there is a series combination of a 6 F and a 3 F capacitor. The task is to determine the equivalent capacitance as observed from terminals a and b. *Figure P5.19: Circuit for Problems 5.19 and 5.20.*
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