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Quiz (CAN)-S3 EEE
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name
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Roll No:1 ABHINAV T K
Roll No:2 ALBERT JOE JUSTINE
Roll No:3 ASWATHI K
Roll No:4 FATHIMA MUFEEDHA V M
Roll No:5 KEERTHANA V S
Roll No:6 KHADEEJA FARSIN T
Roll No:7 MIHIRSEN K S
Roll No:8 MOHAMMED JASEEL PM
Roll No:9 MUHAMMED MISEHAB N
Roll No:10 RAZIN HUSSAIN V
Roll No:11 RISHANJAL MUHAMMEDU
Roll No:12 RISHITH V
Roll No:13 SADIKUL HAQUE TT
Roll No:14 SHAHANA P T
Roll No:15 SHAMIL NAZIR
Roll No:16 SHEHMA P K
Roll No:17 SHIFANA
Roll No:18 SRAVYA A V
Roll No:19 SREELAKSHMI P P
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e mail
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Your answer
1.
The s-domain equivalent of the inductor reduces to an inductor with impedance?
1 point
L
sL
s2L
s3L
Clear selection
2.
A circuit is given in the figure below. The Thevenin equivalent as viewed from terminals x and x’ is ___________
*
1 point
8 V and 6 Ω
5 V and 6 Ω
5 V and 32 Ω
8 V and 32 Ω
3.
For the circuit given in figure below, the Thevenin equivalent as viewed from terminals y and y’ is _________
*
1 point
8 V and 32 Ω
4 V and 32 Ω
5 V and 6 Ω
7 V and 6 Ω
4.
In the following circuit, when R = 0 Ω, the current IR equals to 10 A. The value of R, for which maximum power is absorbed by it is ___________
*
1 point
4 Ω
3 Ω
2 Ω
1 Ω
5.
For the circuit shown in the figure below, the Thevenin voltage and resistance looking into X-Y are __________
*
1 point
4/3 V and 2 ohm
4V and 2/3 ohm
4/3 V and 2/ ohm
4 V and 2 ohm
6.
In the figure given below, the value of the source voltage is ___________
*
1 point
12 V
24 V
30 V
44 V
7. The Thevenin equivalent impedance Z between the nodes P and Q in the following circuit is __________
*
1 point
1
1+s
1+s+1/s
2+s+1/s
8. Find the Norton equivalent current flowing between terminals A and B (10 ohm) of the circuit shown below.
*
1 point
1A
2A
3A
4A
9. . Superposition theorem states that the response in any element is the ____________ of the responses that can be expected to flow if each source acts independently of other sources.
*
1 point
algebraic sum
vector sum
multiplication
subtraction
10. From the circuit shown below, find the value of current in the loop.
*
1 point
(V/R)/(s+1/RC)
(V/C)/(s+1/R)
(V/C)/(s+1/RC)
(V/R)/(s+1/R
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