III. Refer to Figure 3. 1. Determine the gain V / V 2. If v = 6 mV, find % and Vo. 3. Find Input resistance Ri and output resistance Ro. 1502 2k 2 I 3002 Vs 0 50I 10k2 Va 1000 Fig. 3 (10 man IV. Refer to Figure 4. 1. Find i and power delivered to the 502 resistor in Figure 4. 2. If R is variable, when will R obtain the maximum power, and find the power. (10 man ΙΩ 2A 62 10V 4k12 Ả 8V 10mV 202 502 V 2k2 Vo Fig. 4 V. Refer to Figure 5. 1. If V = 5 mV, find current io Fig. 5 = 2. If V 20 mV, find Vo

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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III. Refer to Figure 3.
1. Determine the gain V / V
2. If v = 6 mV, find % and Vo.
3. Find Input resistance Ri and output resistance Ro.
1502
2k 2 I
3002
Vs
0
50I
10k2
Va
1000
Fig. 3
(10 man
IV. Refer to Figure 4.
1. Find i and power delivered to the 502 resistor in Figure 4.
2. If R is variable, when will R obtain the maximum power, and find the power.
(10 man
ΙΩ
2A 62
10V
4k12
Ả
8V
10mV
202
502
V
2k2
Vo
Fig. 4
V. Refer to Figure 5. 1. If V = 5 mV, find current io
Fig. 5
=
2. If V 20 mV, find Vo
Transcribed Image Text:III. Refer to Figure 3. 1. Determine the gain V / V 2. If v = 6 mV, find % and Vo. 3. Find Input resistance Ri and output resistance Ro. 1502 2k 2 I 3002 Vs 0 50I 10k2 Va 1000 Fig. 3 (10 man IV. Refer to Figure 4. 1. Find i and power delivered to the 502 resistor in Figure 4. 2. If R is variable, when will R obtain the maximum power, and find the power. (10 man ΙΩ 2A 62 10V 4k12 Ả 8V 10mV 202 502 V 2k2 Vo Fig. 4 V. Refer to Figure 5. 1. If V = 5 mV, find current io Fig. 5 = 2. If V 20 mV, find Vo
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