In the series-parallel circuit below is connected to 110 V voltage source. Determine i. The total resistance. ii. The total current iii. The voltage drop across R1, R2 and R3.
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- Two batteries are connected in parallel delivering power to a power resistor. The first battery has an open circuit voltage of 12.6 V and an internal resistance of 0.2 ohm. The second battery has an open circuit voltage of 12.2 V and an internal resistance of 0.3 ohm. Find the maximum power delivered to the load resistance.A lead wire and an iron wire are connected in parallel. Their respective specific resistances are in the ratio 49: 24. The former carries 80 percent more current than the latter and the latter is 47 percent longer than the former. Determine the ratio of their cross sectional areas ROUND OFF TO THE NEAREST HUNDRETHSUsing NODAL VOLTAGE ANALYSIS, solve Vy and Vx and voltages across EACH RESISTOR. Put signs on each resistors in the figure and draw the flow of current
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- Using the supernode concept to determine the voltage marked v20 in the figure, the crossed wires that are not marked by a thick dot are not in physical contact.Design half adder & half Subtractor. Draw k-map & Draw circuit diagram for both adder & subtractor.A charger , a battery and a load are connected in parallel. The voltage across the charger is 12.5 volts and the battery has an emf of 12 volts and internal resistance of 0.1 ohm. The load consists of a 2 ohms resistor. Find the current through the charger.