1. Refer to Fig. 1.1. Derive voltage gain A, v /v, in terms of R1, R2 and b. 602 RI bi, R2 7V 802 Fig. 1.1 Fig. 1.2 2. Find the current I in Fig. 1.2
1. Refer to Fig. 1.1. Derive voltage gain A, v /v, in terms of R1, R2 and b. 602 RI bi, R2 7V 802 Fig. 1.1 Fig. 1.2 2. Find the current I in Fig. 1.2
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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
Transcribed Image Text:I. Calculations.
1.
Refer to Fig. 1.1. Derive voltage gain A, v /v, in terms of R1, R2 and b.
0
602
RI
7V
bi, R2
SV
802
Fig. 1.1
Fig. 1.2
2.
Find the current I in Fig. 1.2
3.
Refer to Figure 1.3. Find nodal equations at node vs, VI and V2, respectively.
RS
3A
902
RI
R2
+
+
R3
R4
12V
20V
R3
5621
752
B
Fig. 1.3
Fig. 1.4
4. Refer to Figure 1.4. Find two mesh equations for the circuit.
RI
402
Vo
R2
30
R4
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