i(t) L₁ m m m L3 L2 LA m -Ob L₁ = 20mH L2 = 50mH L3 = 70mH L4 = 65mH i(t) = 30mA.e Calculate the total energy stored in the equivalent inductance. ○ WL (t) WL(t) = 90-10 6W WL (t) 45 10-3 W e == OWL (t) = 45 10-6W -( 600 .t) == WL (t) 45 10 3W e - (300 .t) WL(t) = =90. 10-6 W. e(t) Wz(t)=45-10-6W.e- (600 WL (t) = 45.10-6W.e-(300) OWL (t) = 90 10-3 W ○ WL(t) = 45-10-3W
i(t) L₁ m m m L3 L2 LA m -Ob L₁ = 20mH L2 = 50mH L3 = 70mH L4 = 65mH i(t) = 30mA.e Calculate the total energy stored in the equivalent inductance. ○ WL (t) WL(t) = 90-10 6W WL (t) 45 10-3 W e == OWL (t) = 45 10-6W -( 600 .t) == WL (t) 45 10 3W e - (300 .t) WL(t) = =90. 10-6 W. e(t) Wz(t)=45-10-6W.e- (600 WL (t) = 45.10-6W.e-(300) OWL (t) = 90 10-3 W ○ WL(t) = 45-10-3W
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...
Related questions
Question
1.6

Transcribed Image Text:i(t)
L₁
m m
m
L3
L2
LA
m
-Ob
L₁
= 20mH
L2
= 50mH
L3
= 70mH
L4
= 65mH
i(t)
=
30mA.e

Transcribed Image Text:Calculate the total energy stored in the equivalent inductance.
○ WL (t)
WL(t)
= 90-10 6W
WL (t) 45 10-3 W e
==
OWL (t) = 45 10-6W
-( 600 .t)
==
WL (t) 45 10 3W e
- (300 .t)
WL(t)
=
=90. 10-6 W. e(t)
Wz(t)=45-10-6W.e- (600
WL (t) = 45.10-6W.e-(300)
OWL (t) = 90 10-3 W
○ WL(t) = 45-10-3W
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