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!

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Discuss
Answer: (a).transfer impedance at port 1 with port 2 open circuited
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Answer: (c).voltage is larger than range of the potentiometer
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Answer: (c).both (a) and (b)
Q764.
Which of the following theorems enables a number of voltage (or current) sources to be combined directly into a single voltage (or current) source?
Discuss
Answer: (c).Millman's theorem
Q765.
If the numerator of Z(s) is one degree higher than denominator, Z(s) has a pole at infinity.
Discuss
Answer: (a).True
Q766.
An m derived low pass filter has fc = 1000 Hz, fโˆž = 1250 Hz and m = 0.6. If m is increased, then
Discuss
Answer: (d).fc will remain constant but fโˆž will increase
Discuss
Answer: (d).hybrid parameter (V1, I2) = f(I1, V2)
Q768.
Mesh analysis is applicable __________ only.
Discuss
Answer: (a).planar network
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Answer: (c).pure resistance in pass band and pure reactance in attenuation band
Discuss
Answer: (c).poles lies on Imaginary axis