GATE 2004 ECE Network Theory - Complete Video Solutions with Answers

2004
1. Consider the network graph shown in figure. Which one of the following is NOT a ‘tree’ of this group?

Answer:B
Solution:   https://www.youtube.com/watch?v=xjHxZjJq8PI


2. The equivalent inductance measured between the terminals 1 and 2 for the circuit shown in figure, is
a) L1 + L2 + M
b) L1 + L2 - M
c) L1 + L2 + 2M
d) L1 + L2 - 2M

Answer:D
Solution:      https://www.youtube.com/watch?v=LwuHSGj_pqI


3. The circuit shown in figure, has R = 1/3 Ω, L = 1/4 H, C = 3 F has input voltage v(t) = sin2t. The resulting current i(t) is

Answer:A
Solution:    https://www.youtube.com/watch?v=pwwj_ZnIDqU


4. For the circuit shown, the time constant RC = 1 ms. The input voltage is vi(t) = √2 sin103t. The output voltage vo(t) is equal to

Answer:A
Solution:     https://www.youtube.com/watch?v=SEANHyPcKRk


5. For the R-L circuit shown, the input voltage vi(t) = u(t). The current i(t) is

Answer:C
Solution:     https://www.youtube.com/watch?v=OFlCLWEvc2U


6. For the lattice circuit shown in figure, Za = j2Ω and Zb = 2Ω. The values of the open circuit impedance parameters (Z-parameters) are

Answer:D
Solution:    https://www.youtube.com/watch?v=Vn-O5Ll3CwU


7. The circuit shown in figure has initial current iL(0-) = 1 A through the inductor and an initial voltage Vc(0-) = - 1 volt across the capacitor. For input v(t) = u(t), the Laplace transform of the current i(t) for t ≥ 0 is

Answer:B
Solution:     https://www.youtube.com/watch?v=Xa5N6PQTPLs


8. Consider the following statements S1 and S2
S1: at the resonant frequency, the impedance of a series RLC circuit is zero.
S2: In a parallel G-L-C circuit, increasing the conductance G results in increase in its Q-factor.
Which one of the following is correct?
a) S1 is FALSE and S2 is TRUE
b) Both S1 and S2 are TRUE
c) S1 is TRUE and S2 is FALSE
d) Both S1 and S2 are FALSE

Answer:D
Solution:   https://www.youtube.com/watch?v=s3hM-idhg2s

GATE 2005 ECE Network Theory - Complete Video Solutions with Answers

2005


1. The condition on R, L and C such that the step response y(t) in figure has no oscillations, is

Answer:C
Solution:      https://www.youtube.com/watch?v=JfYzFU9Oc-0




2. The ABCD parameters of an ideal n:1 transformer shown in figure are given below. The value of 'x' will be
a) n
b) 1/n
c) n2
d) 1/n2


Answer:B
Solution:      https://www.youtube.com/watch?v=wjvAb6BEi9o




3. In a series RLC circuit, R = 2 kΩ, L = 1 H, and C = 1/400 µF. The resonant frequency is
a) 2 x 104 Hz
b) (1/π) x 104 Hz
c) 104 Hz
d) 2π x 104 Hz


Answer:B
Solution:      https://www.youtube.com/watch?v=B9Uk_uA0JbA




4. The maximum power that can be transferred to the load resistor RL form the voltage source in figure is
a) 1 W
b) 10 W
c) 0.25 W
d) 0.5 W


Answer:C
Solution:      https://www.youtube.com/watch?v=IW9o-PZYI6E




5. The first and Last critical frequency of an RC driving point impedance function must respectively be
a) a zero and a pole
b) a zero and a zero
c) a pole and a pole
d) a pole and a zero


Answer:D
Solution:      https://www.youtube.com/watch?v=noq2x3cDycY




6. For the circuit in figure, the instantaneous current i1(t) is


Answer:A
Solution:      https://www.youtube.com/watch?v=BcmlFVwT5C4 




7. Impedance Z as shown in figure is
a) j29 Ω
b) j9 Ω
c) j19 Ω
d) j39 Ω


Answer:B
Solution:      https://www.youtube.com/watch?v=tPOeNM7EELI   




8. For the circuit shown in figure, Thevenin's voltage and Thevenin's equivalent resistance at terminals a-b is
a) 5 V and 2 Ω
b) 7.5 V and 2.5 Ω
c) 4 V and 2 Ω
d) 3 V and 2.5 Ω


Answer:B
Solution:      https://www.youtube.com/watch?v=wlcChf7gBWE




9. If R1 = R2 = R4 = R and R3 = 1.1R in the bridge circuit shown in figure, then the reading in the ideal voltmeter connected between a and b is
a) 0.238 V
b) 0.138 V
c) - 0.238 V
d) 1 V


Answer:C
Solution:      https://www.youtube.com/watch?v=NEqaefUlYLc




10. The h-parameters of the circuit shown in figure are

Answer:D
Solution:     https://www.youtube.com/watch?v=lI92Vfd0F1o




11. A square pulse of 3 volts amplitude is applied to RC circuit shown in figure. The capacitor is initially uncharged. The output voltage Vo at time t = 2 sec is
a) 3 V
b) -3 V
c) 4 V
d) -4 V


Answer:B
Solution:    https://www.youtube.com/watch?v=lCb51w-rL_g

GATE 2006 ECE Network Theory - Complete Video Solutions with Answers

2006


1. A two port network is represented by ABCD parameters as shown below. If port-2 is terminated by RL, the input impedance seen at port-1 is given by


Answer:D
Solution:     https://www.youtube.com/watch?v=-emJQU9Qsx8




2. In the two port network shown in the figure below, Z12 and Z21 are respectively

Answer:B
Solution:     https://www.youtube.com/watch?v=JFOPiiE7frs




3. The first and the last critical frequencies (singularities) of a driving point impedance function of a passive network having two kinds of elements, are a pole and a zero respectively. The above property will be satisfied by
a) RL network only
b) RC network only
c) LC network only
d) RC as well as RL networks


Answer:B
Solution:      https://www.youtube.com/watch?v=L4AUTybSCjk




4. A 2 mH inductor with some initial current can be represented as shown below, where 's' is the Laplace Transform variable. The value of initial current is :
a) 0.5 A
b) 2.0 A
c) 1.0 A
d) 0.0 A

Answer:A
Solution:     https://www.youtube.com/watch?v=145BHvtN10o




5. In the figure shown below, assume that all the capacitors are initally uncharged. If Vi(t) = 10 u(t) volts, then Vo(t) is given by


Answer:B
Solution:     https://www.youtube.com/watch?v=oA-NdSmNq1c




6. A negative resistance Rneg is connected to a passive network N having driving point impedance Z1(s) as shown below. For Z2(s) to be positive real,



Answer:A
Solution:      https://www.youtube.com/watch?v=ESM5mIZBEeU



GATE 2003 ECE Network Theory - Complete Video Solutions with Answers

2003
1. The minimum number of equations required to analyze the circuit shown in figure is
a) 3
b) 4
c) 6
d) 7

Answer: A
Solution:       https://www.youtube.com/watch?v=_E2r6haGMdw


2. A source of angular frequency 1 rad/sec has source impedance consisting of 1 Ω resistance in series with 1 H inductance. The load that will obtain the maximum power transfer is
a) 1 Ω resistance
b) 1 Ω resistance in parallel with 1 H inductance
c) 1 Ω resistance in series with 1 F capacitor
d) 1 Ω resistance in parallel with 1 F capacitor

Answer:C
Solution:       https://www.youtube.com/watch?v=UH5csZbXYgc


3. A series RLC circuit has a resonance frequency of 1 kHz and a quality factor Q = 100. If each R, L and C is doubled from its original value, the new Q-factor of the circuit is
a) 25
b) 50
c) 100
d) 200

Answer:B
Solution:     https://www.youtube.com/watch?v=DCfbRcxcOEM

 
4. The differential equation for the current i(t) in the circuit shown is

Answer:C
Solution:     https://www.youtube.com/watch?v=o3XhO6h9PhQ

5. Twelve 1Ω resistances are used to form a cube. The resistance between two diagonally opposite corners of the cube is
a) 5/6 Ω
b) 1/6 Ω
c) 6/5 Ω
d) 3/2 Ω

Answer:A
Solution:       https://www.youtube.com/watch?v=DRvJzaE6cqM


6. The current flowing through the resistance R in the circuit shown has the form Pcos4t, where p is
a) (0.18 + j0.72)
b) (0.46 + j1.90)
c) - (0.18 + j1.90)
d) - (0.192 + j0.144)

Answer:  Data is insufficient as inductor values are not given in the figure.



Common circuit for Questions 7 & 8:
Assume that the switch S is in position 1 for a long time and thrown to position 2 at t=0.
7. At t = 0+, the current i1 is
a) – V/2R
b) – V/R
c) – V/4R
d) Zero

Answer:A



8. I1(s) and I2(s) are the Laplace Transforms of i1(t) and i2(t) respectively. The equations for the loop currents I1(s) and I2(s) for the same circuit shown, after the switch is brought from position 1 to position 2 at t = 0, are

Answer: D
Solution (7 & 8):     https://www.youtube.com/watch?v=IiAPEkdgqQQ


9. An input voltage v(t) = 10√2 cos(t+10o)+ 10√3 cos(2t+10o) volts is applied to a series combination of resistance R = 1Ω and an inductance L = 1H. The resulting steady state current i(t) in amperes is

Answer:C
Solution:      https://www.youtube.com/watch?v=n5soJALqqaw


10. The impedance parameters Z11 and Z12 of the two port network in figure are

Answer:A
Solution:    https://www.youtube.com/watch?v=v16OcXXl_8E

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