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Four capacitors are connected as shown in the figure below. (C = 14.0 JF.) 3.00 HF 20.0 MF 6.00 JiF (a) Find the equivalent capacitance

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Four capacitors are connected as shown in the figure below. (C = 14.0 JF.) 3.00 HF 20.0 MF 6.00 JiF (a) Find the equivalent capacitance between points a and b. UF (b) Calculate the charge on each capacitor, taking AVa = 19.0 V. 20.0 HF capacitor 6.00 HF capacitor HC 3.00 HF capacitor HC capacitor C HC Need Help? Read It Master It Submit Answer [-/2 Points] DETAILS MY NOT Two capacitors, C, = 28.0 AF and C2 = 32.0 UF, are connected in series, and a 15.0-V battery is connected across them. (a) Find the equivalent capacitance, and the energy contained in this equivalent capacitor. equivalent capacitance 1 HF total energy stored (b) Find the energy stored in each individual capacitor. energy stored in C1 energy stored in C2 Show that the sum of these two energies is the same as the energy found in part (a). Will this equality always be true, or does it depend on the number of capacitors and their capacitances? (c) If the same capacitors were connected in parallel, what potential difference would be required across them so that the combination stores the same energy as in part (a)? Which capacitor stores more energy in this situation, C, or C2? O C1 OC 2 Both C, and C2 store the same amount of energy

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