Prob.3 Consider the three capacitors C1= 2.0µF, C2= 6.0µF, and C3= 4.0µF connected as shown. A potential difference of Vac = 120.0V is maintained between points a and c. [a]What is the equivalent capacitance (in units of µF) between points a and c? ( Example: If your answer is 1.23x10-°F =1.23µF, enter your answer as 1.23.) C, C3 a C2 2.66 Prob.3 Consider the three capacitors C1= 2.0µF, C2= 6.0µF, and C3= 4.0µF connected as shown. A potential difference of Vac = 120.0V is maintained between points a and c. [b] What is the value of the ratio Vbd Vab ? (Here Vbc and Vab are, respectively, the values of the potential difference between b and c, and between a and b.) Prob.3 Consider the three capacitors C1= 2.0µF, C2= 6.0µF, and C3= 4.0µF connected as shown. A potential difference of Vac = 120.0V is maintained between points a and c. [c]What is the potential difference Vpc (in units of Volts) across the 4.0µF capacitor?
Prob.3 Consider the three capacitors C1= 2.0µF, C2= 6.0µF, and C3= 4.0µF connected as shown. A potential difference of Vac = 120.0V is maintained between points a and c. [a]What is the equivalent capacitance (in units of µF) between points a and c? ( Example: If your answer is 1.23x10-°F =1.23µF, enter your answer as 1.23.) C, C3 a C2 2.66 Prob.3 Consider the three capacitors C1= 2.0µF, C2= 6.0µF, and C3= 4.0µF connected as shown. A potential difference of Vac = 120.0V is maintained between points a and c. [b] What is the value of the ratio Vbd Vab ? (Here Vbc and Vab are, respectively, the values of the potential difference between b and c, and between a and b.) Prob.3 Consider the three capacitors C1= 2.0µF, C2= 6.0µF, and C3= 4.0µF connected as shown. A potential difference of Vac = 120.0V is maintained between points a and c. [c]What is the potential difference Vpc (in units of Volts) across the 4.0µF capacitor?
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