Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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Given that electrical circuit is as follow.
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- The question is in the picture , the answer is not io=-21.33mAarrow_forwardCompute for the voltage Vab in the circuit shown below. R5 R3 ww 5 Ohms 2 Ohms R1 R2 4 Ohms 8 Ohms V3 10V V2 V1 20V SV R6 ww 9 Ohms R4 10 Ohms O 13.7037 V O 12.6547 V O 12.5784 V O 13.3752 Varrow_forwardH.W: Use mesh equations to find V, in the circuits in Figure below. a) ww 4 k 2 k 6 k 3V b) 4k 2 kn3 4 k 12 V 6k 3kn 10v BV 4 mA ww 2 kn ww 1kn 2 mA 4V 4 k 83 Fundamentals of Electrical Engineering 2020/2021 Dr. Yaseen H. Tahir r d) 3 k ww 4k ww 2 ma ( 12 V 3kn 10v ( 6 knv. 8V 12 V 2 k ww 20001, V. f) 4 05, 2 k 12V +] 1Ov (+ BVarrow_forward
- 3. Research on the Thevenin's and Norton's theorem and their relations. Write those findings. 4. Derive the equation for VTH for circuit in Figure 3. 5. Derive the equation for RTH for circuit in Figure 3. 6. Derive the equation for IN for circuit in Figure 3. R6 m A 220 ohms R1 V1 R4 m 820 ohms 330 ohms 10 V R2 V2 560 ohms B R5 m vo 1 kohms 470 ohms 5 V FIGURE 3 R3arrow_forwardQ3: Obtain the equivalent resistance seen by the source and find the power delivered by the source for the circuit shown below? 20 N 60 N 18 N 50 40 N3 60 N $75 n 80 mA { 12 N 20 N 30 Narrow_forwardUsing mesh current analysis, find the currents I1and I2 and the voltage across the top 10- resistor inthe circuit of Figure P3.15.arrow_forward
- Refer to the given circuit below. Determine the Thevenin Equivalent EMF if R3 is to be analyzed.arrow_forwardIn the figure shown below, if, R3 = 502, determine v. 10 V R₁ = 20 52 www R₂= 20 122 + R3arrow_forward3.71 Find mesh currents I, I, Is, and Is, and node voltages V, V3, and V, in the circuit shown in Figure P3.71. FIGURE P3.71 R2 R, w- V, 1.25 kn 5 kn v/2500 12 R3 V3 R4 V2 10 k 1 kl R5 Re 1 kN 13 7.5 kn 20 V HIParrow_forward
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