1
GATE EE 2022
MCQ (Single Correct Answer)
+1
-0.33

The transfer function of a real system, H(s), is given as:

$$H(s) = {{As + B} \over {{s^2} + Cs + D}}$$,

where A, B, C and D are positive constants. This system cannot operate as

A
low pass filter.
B
high pass filter.
C
band pass filter.
D
an integrator.
2
GATE EE 2022
MCQ (Single Correct Answer)
+1
-0.33

In the circuit shown below, a three-phase star-connected unbalanced load is connected to a balanced three-phase supply of 100$$\sqrt 3 $$ V with phase sequence ABC. The star connected load has ZA = 10 $$\Omega$$ and ZB = 20$$\angle$$60$$^\circ$$ $$\Omega$$. The value of ZC in $$\Omega$$, for which the voltage difference across the nodes n and n' is zero, is

GATE EE 2022 Electric Circuits - Three Phase Circuits Question 5 English

A
20$$\angle$$$$-$$30$$^\circ$$
B
20$$\angle$$30$$^\circ$$
C
20$$\angle$$$$-$$60$$^\circ$$
D
20$$\angle$$60$$^\circ$$
3
GATE EE 2022
Numerical
+1
-0.33

An inductor having a Q-factor of 60 is connected in series with a capacitor having a Q-factor of 240. The overall Q-factor of the circuit is ________. (round off to nearest integer).

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4
GATE EE 2022
Numerical
+1
-0.33

The network shown below has a resonant frequency of 150 kHz and a bandwidth of 600 Hz. The Q-factor of the network is _______. (round off to nearest integer).

GATE EE 2022 Electric Circuits - Sinusoidal Steady State Analysis Question 4 English

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