A network of capacitors with various capacitance values is shown in Fig. 2 below. a. Calculate the equivalent capacitance of this network. b. A potential difference, Vab = 10 V, is applied between the points a and b in the network. Calculate the potential difference ("voltage drop") across each capacitor in the network. C2 = 3 μF C1 = 2 μF C3 = 3 μF Fig. 2

A network of capacitors with various capacitance values is shown in Fig. 2 below. a. Calculate the equivalent capacitance of this network. b. A potential difference, Vab = 10 V, is applied between the points a and b in the network. Calculate the potential difference ("voltage drop") across each capacitor in the network. C2 = 3 μF C1 = 2 μF C3 = 3 μF Fig. 2

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A network of capacitors with various capacitance values is shown in Fig. 2 below. a. Calculate the equivalent capacitance of this network. b. A potential difference, V a b = 10 V , is applied between the points a and b in the network. Calculate the potential difference ("voltage drop") across each capacitor in the network.
C 2 = 3 μ F C 1 = 2 μ F C 3 = 3 μ F
Fig. 2

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