Consider the circuit shown in the figure below. The four capacitors have capacitances C₁ = 3,8µF, C₂ = 3µF,, C3 = 16µF, C₁ = 8,6µF and are connected to a battery of voltage V = 2,7Volts. When all capacitors are fully charged, determine the charge on C2. Express your answer in units of μC using two decimal places. C2 C3 CA C1 V
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- You are an electrician working in an industrial plant. You discover that the problem with a certain machine is a defective capacitor. The capacitor is connected to a 240-volt AC circuit. The information on the capacitor reveals that it has a capacitance value of 10 mF and a voltage rating of 240 VAC. The only 10-mF AC capacitor in the storeroom is marked with a voltage rating of 350 WVDC. Can this capacitor be used to replace the defective capacitor? Explain your answer.You are working in an industrial plant. You have been instructed to double the capacitance connected to a machine. The markings on the capacitor, however, are not visible. The capacitor is connected to 560 volts and an ammeter indicates a current of 6 amperes flowing to the capacitor. What size capacitor should be connected in parallel with the existing capacitor? What is the minimum AC voltage rating of the new capacitor? What is the minimum DC voltage rating of the new capacitor? What is the minimum KVAR size that can be used in this installation?A postage stamp mica capacitor has the following color marks starting at the upper left dot: yellow, violet, brown, green, no color, and blue. What are the capacitance value, tolerance, and voltage rating of this capacitor?
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- Can current flow through a capacitor?Determine the total capacitance, total charge, individual voltage drop and charges across each capacitor. Use two decimal places for your answer. Put your answer for the individual voltage and charge for each capacitor in a table for faster checking. Thank you! Here are the values for the capacitors: C1 = 34 C6 = 29 C2 = 46 C7 = 38 C3 = 28 C8 = 23 C4 = 43 C9 = 32 C5 = 24 C10 = 23Part B. Series-Parallel Capacitor Four capacitors are connected as shown in the figure below. Determine the following: A. Total Capacitance (CT) B. Total Charge (QT) C. Individual Charges (Q1, Q2, Q3, Q4) D. Voltage drop in each capacitor (V1, V2, V3, V4) C3 = 45 nF C2 = 5 µF C = 2.5 µF Vr = 30 V C4 = 30 nF