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This section includes 15 Mcqs, each offering curated multiple-choice questions to sharpen your Network Theory knowledge and support exam preparation. Choose a topic below to get started.
1. |
In the circuit given below, M = 20. The resonant frequency is _______________ |
A. | 4.1 Hz |
B. | 41 Hz |
C. | 0.41 Hz |
D. | 0.041 Hz |
Answer» E. | |
2. |
The number of non-planar graph of independent loop equations is ______________ |
A. | 8 |
B. | 12 |
C. | 3 |
D. | 5 |
Answer» D. 5 | |
3. |
In the circuit given below, the voltage across AB is _______________ |
A. | 250 V |
B. | 150 V |
C. | 325 V |
D. | 100 V |
Answer» D. 100 V | |
4. |
In the circuit given below, the equivalent capacitance is ______________ |
A. | 5.43 μF |
B. | 4.23 μF |
C. | 3.65 μF |
D. | 5.50 μF |
Answer» B. 4.23 μF | |
5. |
In the circuit given below, the equivalent capacitance is _________________ |
A. | 1.6 F |
B. | 3.1 F |
C. | 0.5 F |
D. | 4.6 F |
Answer» C. 0.5 F | |
6. |
In a series RLC circuit having resistance R = 2 Ω, and excited by voltage V = 1 V, the average power is 250 mW. The phase angle between voltage and current is ___________ |
A. | 75° |
B. | 60° |
C. | 15° |
D. | 45° |
Answer» E. | |
7. |
Three inductors each 30 mH are connected in delta. The value of inductance or each arm of equivalent star is _____________ |
A. | 10 mH |
B. | 15 mH |
C. | 30 mH |
D. | 90 mH |
Answer» B. 15 mH | |
8. |
A circuit consists of an excitation voltage VS, a resistor network and a resistor R. For different values of R, the values of V and I are as given, R = ∞, V = 5 volt; R = 0, I = 2.5 A; when R = 3 Ω, the value of V is __________ |
A. | 1 V |
B. | 2 V |
C. | 3 V |
D. | 5 V |
Answer» D. 5 V | |
9. |
In the circuit given below, the value of R is ____________ |
A. | 12 Ω |
B. | 6 Ω |
C. | 3 Ω |
D. | 1.5 Ω |
Answer» C. 3 Ω | |
10. |
In the circuit given below, a dc circuit fed by a current source. With respect to terminals AB, Thevenin’s voltage and Thevenin’s resistance are ____________ |
A. | VTH = 5 V, RTH = 0.75 Ω |
B. | VTH = 0.5 V, RTH = 0.75 Ω |
C. | VTH = 2.5 V, RTH = 1 Ω |
D. | VTH = 5 V, RTH = 1 Ω |
Answer» C. VTH = 2.5 V, RTH = 1 Ω | |
11. |
For a series RLC circuit excited by a unit step voltage, Vc is __________ |
A. | 1 – e-t/RC |
B. | e-t/RC |
C. | et/RC |
D. | 1 |
Answer» B. e-t/RC | |
12. |
A waveform is of the form of a trapezium, which increases linearly with the linear slope till θ = \(\frac{π}{3}\), constant till θ = \(\frac{π}{2}\) and again linearly decreases to 0 till θ = π. The average value of this waveform is ______________ |
A. | 2 V |
B. | 0 V |
C. | 4 V |
D. | 3 V |
Answer» E. | |
13. |
Consider a series RLC circuit having resistance = 1Ω, capacitance = 1 F, considering that the capacitor gets charged to 10 V. At t = 0 the switch is closed so that i = e-2t. When i = 0.37 A, the voltage across capacitor is _____________ |
A. | 1 V |
B. | 6.7 V |
C. | 0.37 V |
D. | 0.185 V |
Answer» C. 0.37 V | |
14. |
In a parallel RL circuit, 12 A current enters into the resistor R and 16 A current enters into the Inductor L. The total current I the sinusoidal source is ___________ |
A. | 25 A |
B. | 4 A |
C. | 20 A |
D. | Cannot be determined |
Answer» D. Cannot be determined | |
15. |
In the circuit given below, the KVL for first loop is ___________ |
A. | V (t) = R1i1 + L1 \(\frac{di_1}{dt}\) + M \(\frac{di_2}{dt}\) |
B. | V (t) = R1i1 – L1 \(\frac{di_1}{dt}\) – M \(\frac{di_2}{dt}\) |
C. | V (t) = R1i1 + L1 \(\frac{di_1}{dt}\) – M \(\frac{di_2}{dt}\) |
D. | V (t) = R1i1 – L1 \(\frac{di_1}{dt}\) + M \(\frac{di_2}{dt}\) |
Answer» D. V (t) = R1i1 – L1 \(\frac{di_1}{dt}\) + M \(\frac{di_2}{dt}\) | |