1. Connect the circuit as in Fig. 5. Take V,10 V R1KD. R-2.7 KD, R-3.3 KO, and V2-8 V. With the help of equation (1)in theory Section), calculate the node voltage Vy branch currents I,, 12, and I

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Author:Robert L. Boylestad
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Discussion ‘@K 1. Gonnect the circuit as in Fig. 5. Txkc v Q‘%@ R 27KE quation (fin the m), calculate the = V,-8 V. With the help of branch currents Iy, Iz, and B 2. Using Circuit in F ¢ principle, calculaie the no Compare the theoretical and €X & l,, Ip, and . ital results. 2
R1
In
V3
Rs 33
> I3
R2
I2
121
TA
Fig. 5
Discussion
1. Connect the circuit as in Fig. 5. Take V 10 V, R1KD. R2- 2.7 KD, R3- 3.3 KO, and
iversity
V2-8 V. With the help of equation (1)in theory Section), calculate the node voltage Vy
branch currents I,, I2, and I3.
2. Using Circuit in Fig.5 Verify your results in previous question using superposition
principle, calculate the node voltage Vs, I, I2. and Is.
3. Compare the theoretical and experitmental results.
Transcribed Image Text:R1 In V3 Rs 33 > I3 R2 I2 121 TA Fig. 5 Discussion 1. Connect the circuit as in Fig. 5. Take V 10 V, R1KD. R2- 2.7 KD, R3- 3.3 KO, and iversity V2-8 V. With the help of equation (1)in theory Section), calculate the node voltage Vy branch currents I,, I2, and I3. 2. Using Circuit in Fig.5 Verify your results in previous question using superposition principle, calculate the node voltage Vs, I, I2. and Is. 3. Compare the theoretical and experitmental results.
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