Figure 1 (Assume re-1502) 15) Refer to Figure 1. Rin is approximately A) 10 kQ A) 23 Hz C) 3.2 k Β) 5.7 ΚΩ 16) Refer to Figure 1. The cutoff frequency due to C1 is B) 13 Hz 1 D) 1.8kQ C) 40 Hz D) 7.2 Hz 15) 16) 17) Refer to Figure 1. Assume that Cbc-6 pF and RL-27 kQ2. The Miller input capacitance due to Che is 17)_ A) 49 pF B) 7.0 pF C) 168 pF D) 216 pF
Figure 1 (Assume re-1502) 15) Refer to Figure 1. Rin is approximately A) 10 kQ A) 23 Hz C) 3.2 k Β) 5.7 ΚΩ 16) Refer to Figure 1. The cutoff frequency due to C1 is B) 13 Hz 1 D) 1.8kQ C) 40 Hz D) 7.2 Hz 15) 16) 17) Refer to Figure 1. Assume that Cbc-6 pF and RL-27 kQ2. The Miller input capacitance due to Che is 17)_ A) 49 pF B) 7.0 pF C) 168 pF D) 216 pF
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Transcribed Image Text:MULTIPLE CHOICE. Choose the one alternative that best completes the statement or answers the question.
Vcc=+12 V
V₂
100 mV
1.0 kHz
PP
A) 10 kQ
C₁
2.2 µF
A) 23 Hz
B) 5.7 k
R₁
{56 ΚΩ
Figure 1 (Assume re-1502)
15) Refer to Figure 1. Rin is approximately
B) 13 Hz
R₂
*10 ΚΩ
ww
D
C) 3.2 kΩ
Re
4.7 ΚΩ
C) 40 Hz
l₁
B <-150
ac
16) Refer to Figure 1. The cutoff frequency due to C1 is
REI
100 £2
RE2
560 Ω
D) 1.8kQ
D) 7.2 Hz
C, Von
0.47μF
C₂
• 100 με
R₁
15)
16)
17) Refer to Figure 1. Assume that Cbc-6 pF and RL-27 kQ. The Miller input capacitance due to Che is 17)_
A) 49 pF
B) 7.0 pF
C) 168 pF
D) 216 p
18
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