Measurement of Inductance and Capacitance MCQs

Welcome to our comprehensive collection of Multiple Choice Questions (MCQs) on Measurement of Inductance and Capacitance, a fundamental topic in the field of Electrical Measurement and Instrumentation. Whether you're preparing for competitive exams, honing your problem-solving skills, or simply looking to enhance your abilities in this field, our Measurement of Inductance and Capacitance 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 Measurement of Inductance and Capacitance mcq questions that explore various aspects of Measurement of Inductance and Capacitance problems. Each MCQ is crafted to challenge your understanding of Measurement of Inductance and Capacitance principles, enabling you to refine your problem-solving techniques. Whether you're a student aiming to ace Electrical Measurement and Instrumentation tests, a job seeker preparing for interviews, or someone simply interested in sharpening their skills, our Measurement of Inductance and Capacitance MCQs are your pathway to success in mastering this essential Electrical Measurement and Instrumentation topic.

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Measurement of Inductance and Capacitance MCQs | Page 10 of 11

Q91.
At high Q values, the angular balance condition is _________
Discuss
Answer: (b).not satisfied
Discuss
Answer: (a).lumped inductances
Q93.
Stray capacitance exists between the components.
Discuss
Answer: (a).True
Q94.
The magnitude of stray capacitances is fixed.
Discuss
Answer: (b).False
Discuss
Answer: (c).shielding and grounding
Q96.
Most popular method of avoiding the stray capacitance effects is __________
Discuss
Answer: (d).by using Wagner device
Discuss
Answer: (a).capacitance bridge
Discuss
Answer: (b).series RC combination
Discuss
Answer: (b).coils with low Q values
Q100.
In Maxwell’s capacitance bridge for calculating unknown inductance, the various values at balance are, R₁ = 300 Ω, R₂ = 700 Ω, R₃ = 1500 Ω, C₄ = 0.8 μF. Calculate R₁, L₁ and Q factor, if the frequency is 1100 Hz.
Discuss
Answer: (b).140 Ω, 0.168 H, 8.29
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