Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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- Q2. Connect the circuit shown in Fig.2 and find the current through the 10 Q resistor by using Superposition Theorem: A: Experimentally B: Solve Theoretically R1 R3 50 40 V1 11 25V R2 2100 8A Figure(2)arrow_forward(b) For the circuit shown in Fig. 4, derive an expression for the output Vg. (i) what is the circuit performing for R; =R3=R;= R? (ii) what is the circuit performing if R1 =R;=R and R;= R/2? R3 A R1 +Vcc B R2 V2 I2 -Vee Fig.4arrow_forwardQ2) Employ Thévenin's theorem to obtain a thevenin equivalent circuit at a-b of the circuit shown: 2i, oa 700 mA 1.5 kn 500 2 2500 Narrow_forward
- Nonearrow_forwardObtain v, in the circuit of Fig. below using Superposition theorem. 3A R2 100 R1 60 R3 50 4A 7A + V. . R4 30 30Varrow_forwardR₁ AS Vs R₂ VTH= R3 R4 RL RTH= VTH B Figure 1a) Simple circuit to be analyzed Figure 1b) Thevenin's equivalent of Fig. 1a) 1.- A simple Circuit. Determine the Thevenin's equivalent of the circuit given in fig. 1a). Consider the following values: R₁ = 24092, R2 = 2700, R3 = 56092, R4 = 1k2, and Vs = 10 V. Show all your calculations on your own handwritten. Indicate the units. RTH RL 23arrow_forward
- 42 The total resistance (R1) for the circuit shown in Fig. is .. 30 60 12V O 20 O 60 O 70 90arrow_forwardFind the current through 32 resistor connected between P and Q in the circuit shown in Fig. 3 using super position theorem. 30 120 P 15V 7.5A 30arrow_forwardEmploying Supernode / Nodal analysis techniques as appropriate, determine the power dissipated by the 4 Ω resistor in the circuit of given Figure.There is a slight mistake in fig. which is the resistor on the left of 7V is 4 ohm it is not 2 ohm.arrow_forward
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