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 109 of 129

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Q1081.
For the wave shown in figure, the average and rms values are
Discuss
Answer: (a).50 A and 57.73 A
Q1082.
The resonance frequency of the circuit is
Discuss
Answer: (b).4.5 Kn2
Q1083.
KVL for second loop in figure is

a.

A

b.

B

c.

C

d.

D

Discuss
Answer: (b).B
Q1084.
The current wave shown in figure is applied at t = 0 to a 0.1 F capacitor. At t = 1 s, the voltage across capacitor is
Discuss
Answer: (c).20 V
Q1085.
For the two port network of figure, the voltage transfer ratio in s domain is

a.

A

b.

B

c.

C

d.

D

Discuss
Answer: (b).B
Q1086.
The driving point impedance Z1 is given by

a.

A

b.

B

c.

C

d.

D

Discuss
Answer: (d).D
Q1087.
In the circuit shown in figure, Is = 4A, Vs = 4, the voltage V is given by
Discuss
Answer: (a).6 V
Q1088.
The average value of wave in figure is
Discuss
Answer: (b).75 V
Q1089.
In the circuit of figure, Thevenin's resistance is 10 ฮฉ
Discuss
Answer: (b).10 ฮฉ
Q1090.
The circuit shown in the figure, with R = 1/3 ฮฉ, L = 1/4H, C = 3F has input voltage v(t) = sin2t. The resulting current i(t) is
Discuss
Answer: (a).5 sin (2t + 53.1°)