of 24mA is applied to the circuit. The value of the resistor is 4000. What is the initial value of iL? What is the initial value of diL/dt? What are the roots of the characteristic equation? What is the numerical expression for iL(t) * ?when t 2 0? What is the wo^2, a^2 t-0 25 nF 25 mH a=16x10^8 wo=25 x10^8 s1=-25000 wo^2=16 x10^8 s1=-20000 IL(t)=24-32 EXP(-20000t) -8 EXP(-8000t) mA T>=0 s2=-80000 IL(t)=24-32 EXP(-20000t) +8 EXP(-8000t) mA T>=0 s2=-8000 V(t)=(150-60 EXP(-200t) ) V T>=0 wo=50 x10^8 a^2=25x10^8 OO 1O 0O O O O C

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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Solve
The initial energy stored in the circuit
is zero. At t = 0, a DC current source
of 24mA is applied to the circuit. The
value of the resistor is 4000. What is
the initial value of İL? What is the initial
value of diL/dt? What are the roots of
the characteristic equation? What is
the numerical expression for iL(t)
*?when t > 0? What is the wo^2, a^2
t- 0
A 25 nF
25 mH
a=16x10^8
wo=25 x10^8
s1=-25000
wo^2=16 x10^8
s1=-20000
IL(t)=24-32 EXP(-20000t) -8 EXP(-8000t)
mA T>=0
s2=-80000
IL(t)=24-32 EXP(-20000t) +8 EXP(-8000t)
mA T>=0
s2=-8000
V(t)=(150-60 EXP(-200t) ) V T>=0
Wo=50 x10^8
a^2=25x10^8
OO O
0O
O O O
O O
Transcribed Image Text:The initial energy stored in the circuit is zero. At t = 0, a DC current source of 24mA is applied to the circuit. The value of the resistor is 4000. What is the initial value of İL? What is the initial value of diL/dt? What are the roots of the characteristic equation? What is the numerical expression for iL(t) *?when t > 0? What is the wo^2, a^2 t- 0 A 25 nF 25 mH a=16x10^8 wo=25 x10^8 s1=-25000 wo^2=16 x10^8 s1=-20000 IL(t)=24-32 EXP(-20000t) -8 EXP(-8000t) mA T>=0 s2=-80000 IL(t)=24-32 EXP(-20000t) +8 EXP(-8000t) mA T>=0 s2=-8000 V(t)=(150-60 EXP(-200t) ) V T>=0 Wo=50 x10^8 a^2=25x10^8 OO O 0O O O O O O
Expert Solution
Step 1

The nodes in electric circuits can be defined as the connecting point of different branches and points between two elements. The path between one node to another is denoted as branches. The branches contain the element in the circuit. The energy delivering or energy absorption is taking place in the branches of the circuit. There are passive and active elements present in the branches. The behavior of the circuits depends on the nature of the elements present in the circuit. 

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