Two batteries A and B are connected in parallel, and a load of 10 Ohms is connected across their terminals. Battery A has a voltage source of 12 Volts and an internal resistance of 2 Ohms. Battery B has a voltage source of 8 Volts and an internal resistance of 1 Ohm. Show your step-by-step solution and supporting explanation. a. Draw the circuit. b. Determine the branch currents using Kirchoff's Laws.
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- In an electrical circuit four resistors are connected in parallel and their equivalent resistance is 50ohms. Find the value of each resistors if the currents through each impedance are 0.8, 0.4, 0.6 and 0.2 ampere.A secondary cell having an e.m.f. of 2V and an internal resistance of 1 ohm is connected in serieswith a primary cell having an e.m.f. of 1.5V and an internal resistance of 100 ohm. The negativeterminal of each cell is connected to the positive terminal of the other cell. A voltmeter having aresistance of 50 ohm is connected to measure the terminal voltage of the cells. Calculate the voltmeterreading and the current in each cell.the adjoining figure. This lamp can withstand a maximum voltage 3.0 v 0.4 9. Volt-ampere (V-I) charaeteristics of an incandescent lamp 16thd in and a maximum current 0.4 A. An infinite ladder network consisting a large number of these lamps is also shown in the figure given belo How much maximum voltage can be applied between the terminals A and B, so that no lamp gets damaged? (Use V5 = 2.2). Ans:x4.2V Hint: Curentin all bulls except first isA 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 HUNDRETHSGiven the circuit below and that R1=1.7ohm,R2=3.5ohm,Emf1=2.1V and Emf2=6.3V. What is the current through the section ac?If a 4-Ohm resistor is connected in series with a % F capacitor and 2H inductor, what should be the value of w so that the impedance is purely resistive?What is the difference between the cut-off voltage VGS0 f and the narrowing voltage Vp? Explain this with the diagramIn order to prevent the reactive current drawn by the load in the circuit in the figure, it is necessary to pass in the opposite direction.how much should the current be?i've already seen this solution. but regardless, i askedfor an explanation. i always have a big issue with understanding how to do nodal analysis in these type of circuits, how to name nodes and on what basis. how was the outgoing current 0-v0/3r and how do i identify it and in the incoming current. how to use voltage division rule here. so please annotate everything on the figure and help me understand all my above inquiries so i can understand how to solve these type of questions. thank you! please be extremely detailed and concise. also when can i and can i not use nodal analysis and voltae division ruleTwo resistors RA and RB are connected in series across a 120-V source. When a 30,000-ohm voltmeter is connected across RA and then across RB, the instrument deflection is 48 volts in each case. What are the ohmic values of the resistors?shfdjkfdrhnacoioeniodinopidopdnieocmixoxwmipdf.ziudSALIDUDetu The equivalent resistance of three resistors A, B and C connected in parallel is 1.5 ohms. If A is thrice of B and C is 1/4 of B. Find the equivalent resistance when the three of them are connected in series? dhffrriru9eeWhich of the following statements are correct for the circuit below? Thanks to the capacitors I – C1 and C2, the voltage gain of the circuit increases. II – Capacitors C1 and C2 are coupling capacitors and provide an isolation function between AC and DC voltages in the circuit. Thanks to the III – RE resistor, the voltage gain of the circuit increases. Thanks to the IV – RE resistor, the stability of the circuit increases. The V – C3 Capacitor is a bypass capacitor and prevents the loss of voltage gain. Capacitor VI – C3 is a coupling capacitor and has no effect on the voltage gain in the circuit. VII – As the value of the source internal resistance Rs increases, the voltage gain decreases. VIII – The voltage gain decreases as the value of any RL load to be added to the circuit increasesSEE MORE QUESTIONS