Find Vo in the circuit in fig.286 and the power absorbed by the depent source
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Find Vo in the circuit in fig.286 and the power absorbed by the depent source Find...
Find Vo and the power absorbed by the dependent source in the given circuit. Assume l = 26 A. 10 22 + V- 21092 1 42v. The value of Vo is v. The power absorbed by the dependent source is
1.19 Find I and the power absorbed by each element in the network of Fig. 1.30. 8A9v 6 Figure 1.30 For Prob. 1.19. 1.20 Find V, and the power absorbed by each element in the circuit of Fig. 1.31. 1.- 2A 28 V 12 V TIA 28 V 30 V + 6A1 Figure 1.31 For Prob. 1.20.
Given the network in Fig. E9.2, find the average power absorbed by each passive circuit element and the total average power supplied by the current source.
11.25 Determine the complex power supplied by the source in the circuit of Fig. P11.25. 2420 v+ 16 kQ Figure P11.25: Circuit for Problem 11.25.
2/Calculate ir and vo in the circuit of the following Fig. Find the power dissipated by the 40-k2 resistor. 20 k2 20 k2
Q2. Calculate i, and vo in the circuit of the following Fig. Find the power dissipated by the 40-k0 resistor. 20 k2 :4 k2
Calculate the power absorbed by each element in the circuit in Fig. P1.32. 12 V 12 V 2 A 4 V 2 3 2 A 6 A 1,-2A
13.36 There is no energy stored in the circuit in Fig. P13.36 -at the time the voltage source is energized. Find Vo, 1o, andI b) Find uo, lo, and , for 12 0 Figure P13.36 100Ω 13.36 There is no energy stored in the circuit in Fig. P13.36 -at the time the voltage source is energized. Find Vo, 1o, andI b) Find uo, lo, and , for 12 0 Figure P13.36 100Ω
In the circuit of Figure P3.49 find the power (released or absorbed?) by each source using (a) nodal analysis; (b) loop analysis; (c) the superposition principle. Which method do you prefer the most? The least? Why?
Given the circuit and find the average Power absorbed by the 10 Ohm resistor. Question 4 [20] Given the circuit of Fig. 3.4 find the average power absorbed by the 100 resistor -50 40 8V 220° ontv 0.1VO 81 50 Fig. 3.4 Question 5 65 lagging power factor and an efficiency