Consider the circuit shown in the figure below. (Assume R₁ = 11.00, R₂ = 2.70 , and V = 7.70 V.) R₂ www www 5.00 Ω ww + 4.00 Ω www 3.00 Ω ww
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- Determine the value of RL that will cause the maximum power from the circuit to be transferred to the load at the circuit of the figure. Consider is = 1AWith the figure below and utilizing the given (assumed) direction of current in junction A. Find the individual current and voltages of each resistors. Given: Rị = 1 N VA = 3 V R2 = 2 N VB = 6 V R3 = 3 N Vc = 9 V R4 = 4 N R, IL Va, Rz A I3 Rot B VB22 S2 spF 182 172 122
- Solve for the circuits unknowns in the picture belowConstruct the series-parallel circuit in below. Use R1 = 330Ω, R2 = R3 = 1kΩ using Proteus Simulation Software. Then, connect a dc voltage supply with Vs = 10V across points A and B. Measure the voltage across each resistor using a dc voltmeter. Does your observation agree with the Kirchhoff Voltage Law. A secondary cellhaving an e.m.f. of 7V and an internal resistance of 2.5 is connectedin series with a primary cell having an e.m.f. of 4V and an internalresistance of 45Ω, the negative terminal of each cell being connected tothe positive terminal of the other cell. A voltmeter having a resistance of75 is connected to measure the terminal voltage of the cells. Calculate thevoltmeter reading and the current in each cell.
- Current sources in parallel Select one: a. When two or more voltage sources are connected in series, the total voltage equals to the sum of all individual voltage sources b. When two or more current sources are connected in series, the total current equals to the sum of all individual current sources c. None of the answers d. When two or more current sources are connected in parallel, the total current equals to the sum of all individual current sources e. When two or more voltage sources are connected in parallel, the total current equals to the sum of all individual current sourcesThe voltage divider rule states that Select one: a. the voltage applied to a parallel resistīve circuit will be dropped across all resistors in proportion to the magnitude of the individual resistors b. the voltage applied to a serles resistive circuit will be dropped across all resistors in proportion to the magnitude of the individual resistors c. the current passing to a series resistive circuit will be dropped across all resistors in proportion to the magnitude of the Individual resistors d. None of the answersEmploying the characteristic curve in Figure 1 and obtain the design for a voltage divider configuration that has a Q point of ICQ = 5 mA and VCEQ = 8 V. Using VCC = 24 V and RC = 3RE. Find the following: a) Draw the configuration indicating each of the elements b) Determine RC and RE c) Find VE d) Determine VB e) Calculate ? for point Q f) Find R2 if R1 = 24 kΩ