Networks Analysis and Synthesis MCQs

Welcome to our comprehensive collection of Multiple Choice Questions (MCQs) on Networks Analysis and Synthesis, a fundamental topic in the field of Electronics and Communication Engineering. Whether you're preparing for competitive exams, honing your problem-solving skills, or simply looking to enhance your abilities in this field, our Networks Analysis and Synthesis MCQs are designed to help you grasp the core concepts and excel in solving problems.

In this section, you'll find a wide range of Networks Analysis and Synthesis mcq questions that explore various aspects of Networks Analysis and Synthesis problems. Each MCQ is crafted to challenge your understanding of Networks Analysis and Synthesis principles, enabling you to refine your problem-solving techniques. Whether you're a student aiming to ace Electronics and Communication Engineering tests, a job seeker preparing for interviews, or someone simply interested in sharpening their skills, our Networks Analysis and Synthesis MCQs are your pathway to success in mastering this essential Electronics and Communication Engineering topic.

Note: Each of the following question comes with multiple answer choices. Select the most appropriate option and test your understanding of Networks Analysis and Synthesis. You can click on an option to test your knowledge before viewing the solution for a MCQ. Happy learning!

So, are you ready to put your Networks Analysis and Synthesis knowledge to the test? Let's get started with our carefully curated MCQs!

Networks Analysis and Synthesis MCQs | Page 39 of 129

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Q381.
Which one of the following theorem can be conveniently used to calculate the power consumed by the 10 ฮฉ resistor in the network shown in the above figure?
Discuss
Answer: (d).Superposition theorem
Q382.
Figure shows a parallel resonant circuit having resonance frequency of 15 MHZ. At this frequency
Discuss
Answer: (b).its impedance is maximum
Q383.
A series RL circuit is excited by a voltage v(t) = Ve^(-at) such that a = R/L. Then the circuit current is

a.

A

b.

B

c.

C

d.

D

Discuss
Answer: (b).B
Q384.
In the transformer shown in the figure, the inductance measured across the terminal 1 and 2 was 4 H with open terminals 3 and 4. It was 3H when the terminals 3 and 4 were short circuited. The coefficient of coupling would be
Discuss
Answer: (d).indetermine due to insufficient data
Q385.
The condition on R, L and C such that the step response y(t) in the figure has no oscillation, is

a.

A

b.

B

c.

C

d.

D

Discuss
Answer: (b).B
Q386.
In the transformer shown in figure, the inductance measured across terminal 1 and 2 was 4 H with terminals 3 and 4 open. It was 3H when terminals 3 and 4 are short circuited. The coefficient of coupling is
Discuss
Answer: (c).0.5
Q387.
The time constant of the network shown in figure is, when switch is closed.
Discuss
Answer: (a).2RC
Discuss
Answer: (a).will be 90° at ฯ‰ = 0 and 0° at ฯ‰ = โˆž
Q389.
The graph of a network is shown in the figure. Which one of the figure shown is not a tree of the graph?

a.

A

b.

B

c.

C

d.

D

Discuss
Answer: (d).D
Q390.
The resistance of the aluminium conductor (r = 2.83 x 10¯โธ ฮฉm) in figure is
Discuss
Answer: (b).less than 0.001 ฮฉ