Q2: For the circuit shown, find the following: Vee# 12 V 1- Draw re-equivalent circuit. 2- Calculate Z, & Zo. R 220 KO Re 5102 3- Calculate AVL and Aj. 4- Calculate the value of V. if the 1uf C, 10 μf B=200 input voltage is 15mV. V, 2. R. 10 ΚΩ 47 K RE 2202 CE 20 μf 15mV
Q2: For the circuit shown, find the following: Vee# 12 V 1- Draw re-equivalent circuit. 2- Calculate Z, & Zo. R 220 KO Re 5102 3- Calculate AVL and Aj. 4- Calculate the value of V. if the 1uf C, 10 μf B=200 input voltage is 15mV. V, 2. R. 10 ΚΩ 47 K RE 2202 CE 20 μf 15mV
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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Q2: For the circuit shown, find the following: Ve 12V, 1- Draw re-equivalent circuit. 2- Calculate Z; & Z, R % Re % c 3- Calculate Ayy. and A;, ZoKop SAGT e . 4- Calculate the value of V, if the wc ut p=200 input voltage is 15mV. 1 re= —_— 2 Ry 0y Zi g, R 1 o § wxe 15mV’ 47K 2200 Taouf

Transcribed Image Text:Q2: For the circuit shown, find the following:
Vcc= 12 V
1- Draw re-equivalent circuit.
2- Calculate Z¡ & Zo.
R
220 KO
Re
510Ω
3- Calculate AVL and Aj.
4- Calculate the value of V, if the
10 uf
B=200
input voltage is 15mV.
r.= 0
Z, S R
10 ΚΩ
CE
V,
RE
15mV
47 KO
T20 uf
2209
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