7-3 Find the time constants of the circuits in Figure P7-3. 250 mH 250 2 mm 330 Ω Σ 250 mH www C1 1.5 mH m 470 92 Ω : 250 Ω 5 mH C2 FIGURE P7-3 1.5 mH
7-3 Find the time constants of the circuits in Figure P7-3. 250 mH 250 2 mm 330 Ω Σ 250 mH www C1 1.5 mH m 470 92 Ω : 250 Ω 5 mH C2 FIGURE P7-3 1.5 mH
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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Help with hw circuit problem please. Thank you!
![JECTIV
(SECTS. 7-1 TO 7-4)
FIRST-ORDER CIRCUIT ANALYSIS
Given a first-order RC or RL circuit:
(a) Find the circuit differential equation, the circuit time con-
stant, and the initial conditions (if not given).
(b) Find the zero-input response.
(c) Find the complete response for step function, exponential,
and sinusoidal inputs.
See Examples 7-1 to 7-7, 7-9 to 7-11, 7-15, and 7-16 and
Exercises 7-1 to 7-7, 7-9 to 7-13, 7-15, and 7-17 to 7-21.
SS 7-1nd the function i(t) that satisfies the following differential
equation and the initial condition:
1000 +50ki(t) = 0, i(0)=0 mA
di(t)
dt
7-2 Find the function (t) that satines the following differen-
tial equation and itial condition:
10-4dv
dt
+v(t)=0, v(0) = 100 V
S7-3 Find the time constants of the circuits in Figure P7-3.
250 mH 250 22
mm
330 ΩΣ
250 mH
C1
1.5 mH
m
470 Ω
• 250 Ω
5 mH
C2
FIGURE P7-3
21.5 mH](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5e343f85-ac09-4dac-ae1f-fa90b444949b%2F2b31a3c1-9dbd-4f22-9b44-22451f8d47d1%2Fs50n4mlu_processed.png&w=3840&q=75)
Transcribed Image Text:JECTIV
(SECTS. 7-1 TO 7-4)
FIRST-ORDER CIRCUIT ANALYSIS
Given a first-order RC or RL circuit:
(a) Find the circuit differential equation, the circuit time con-
stant, and the initial conditions (if not given).
(b) Find the zero-input response.
(c) Find the complete response for step function, exponential,
and sinusoidal inputs.
See Examples 7-1 to 7-7, 7-9 to 7-11, 7-15, and 7-16 and
Exercises 7-1 to 7-7, 7-9 to 7-13, 7-15, and 7-17 to 7-21.
SS 7-1nd the function i(t) that satisfies the following differential
equation and the initial condition:
1000 +50ki(t) = 0, i(0)=0 mA
di(t)
dt
7-2 Find the function (t) that satines the following differen-
tial equation and itial condition:
10-4dv
dt
+v(t)=0, v(0) = 100 V
S7-3 Find the time constants of the circuits in Figure P7-3.
250 mH 250 22
mm
330 ΩΣ
250 mH
C1
1.5 mH
m
470 Ω
• 250 Ω
5 mH
C2
FIGURE P7-3
21.5 mH
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