Electric Circuits
Three Phase Circuits
Marks 1Marks 2
Transient Response
Marks 1Marks 2Marks 5
Graph Theory
Marks 1Marks 2
Two Port Networks
Marks 1Marks 2
Sinusoidal Steady State Analysis
Marks 1Marks 2Marks 5
Network Elements
Marks 1Marks 2Marks 5
Network Theorems
Marks 1Marks 2Marks 5
1
GATE EE 2024
Numerical
+2
-0

For the circuit shown in the figure, the source frequency is 5000 rad/sec. The mutual inductance between the magnetically coupled inductors is 5 mH with their self inductances being 125 mH and 1 mH. The Thevenin’s impedance, $Z_{th}$, between the terminals P and Q in $\Omega$ is ______________ (rounded off to 2 decimal places).

GATE EE 2024 Electric Circuits - Sinusoidal Steady State Analysis Question 2 English
Your input ____
2
GATE EE 2019
Numerical
+2
-0
A 0.1 μF capacitor charged to 100 V is discharged through a 1 kΩ resistor. The time in ms (round off to two decimal places) required for the voltage across the capacitor to drop to 1 V is ___________.
Your input ____
3
GATE EE 2017 Set 2
MCQ (Single Correct Answer)
+2
-0.6
In the circuit shown below, the value of capacitor C required for maximum power to be transferred to the load is GATE EE 2017 Set 2 Electric Circuits - Sinusoidal Steady State Analysis Question 55 English
A
1 nF
B
1 μF
C
1 mF
D
10 mF
4
GATE EE 2016 Set 1
Numerical
+2
-0
In the circuit shown below, the supply voltage is 10sin(1000t) volts. The peak value of the steady state current through the 1Ω resistor, in amperes, is _________. GATE EE 2016 Set 1 Electric Circuits - Sinusoidal Steady State Analysis Question 53 English
Your input ____
GATE EE Subjects
Electromagnetic Fields
Signals and Systems
Engineering Mathematics
General Aptitude
Power Electronics
Power System Analysis
Analog Electronics
Control Systems
Digital Electronics
Electrical Machines
Electric Circuits
Electrical and Electronics Measurement