4. Using Thevenin's theorem, find the current through load Resistor (RL=10 kQ) for the circuit shown in Figure 4 and power dissipated in the load resistor. 25 k2 3 k2 5 k2 5 k2 2 k2 5V b
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- Draw the Norton equivalent circuit and recalculate the voltage and power of the load resistor (show your work) IN = ________________A RTH = ____________Ohms VL = ______________V PL = _______________WFind V_th and R_th using source tranformation. What is the max power delivered to a load resistance connected between a and b terminals?Use superposition to compute for the DC voltage levels for node B, C, and D. The dependent current source is equal to I1=hfeIb, hfe=177. What is the dc current Ib using superposition when 15V is turned on? when the 0.7V is turned on?
- If you calculate the values for a Thevenin equivalent circuit as VTH = 12.34V and RTH = 8.77kΩ. What is the value of load resistor that will produce the maximum load power possible. a 1.41mΩ b 108.2kΩ c 12.34Ω d 8.77kΩIn the circuit below, Solve the indicated currents using the following laws & Theorems: Ic – Use Norton’s Theorem Id - SuperpositionIn the circuit below, Solve the indicated currents using the following laws & Theorems: Ia - Usie Thevenin’s Theorem Ib – Use Source Transformation Ic – Use Norton’s Theorem Id - Superposition
- In the following network, apply the source transformation techniques to calculate the current IL and the absorbed power by the load resistance RL = 10W. The resistors R1 = 20W, R2 = 5W, R3 =16W and R4 = 20W. The independent voltage source V1 = 12V, and V2 = 20V.Draw the Thevenin and Norton equivalent circuits for the external circuitto the resistor in the circuit R below and for R = 10ohm, determine Vr and Ir. or Desenhe os circuitos equivalentes de Thévenin e Norton para o circuito externoao resistor no R circuito abaixo e para R = 10ohm, determine Vr e IrFind the nortion equivalent looking from the load resistor RL, as shown in figure 3. Assume w = 10rad/s
- For the circuit in the figure, determine The Norton equivalent with respect to terminals a-b, The load impedance that must be connected between terminals a-b to maximize circuit power transfer, and The maximum power absorbed by the calculated loadDetermine the load current IL and load voltage VL across 3 kohm resistor (RL) connected between terminals A and B using the Norton's Theorem. Step by Step: I mean: 1- Finding The IN. 2- Finding The RN. 3- Norton Equilavent Circuit. (All steps with the theoretical results) I need screen shot for each step above from Proteus.Consider the following circuit, what is the maximum power that can be delivered to a load connected to terminal a-b? A)5 W B)3.03 W C)6 W D)1.25 W E)2.5 W F)6.75 W G)3.125 W