1
GATE ECE 1993
Numerical
+2
-0
In the circuit of figure, when switch S1
is closed, the ideal ammeter M1
reads 5A.
What will be ideal voltmeter M2
read when S1
is kept open? (The value of E is not
specified).
Your input ____
2
GATE ECE 1989
MCQ (Single Correct Answer)
+2
-0.6
In the circuit of figure, the power dissipated in the register R is 1W when only source '1' is present and '2' replaced by a short.The power dissipated in the same registor R is 4W when only source '2' is present and '1' is replaced by a short.When both the source '1' and '2' are present, the power dissipated in R will be:
3
GATE ECE 1989
MCQ (Single Correct Answer)
+2
-0.6
A load, ZL = RL + jXL is to be matched, using an ideal transformer, to a generator of internal impedance, ZS = RS + jXS. The turns ratio of the transformer required is
4
GATE ECE 1988
MCQ (Single Correct Answer)
+2
-0.6
If an impedance ZL is connected across a voltage source V with source impedance ZS, then for maximum power transfer, the load impedance must be equal to
Questions Asked from Network Theorems (Marks 2)
Number in Brackets after Paper Indicates No. of Questions
GATE ECE 2024 (1)
GATE ECE 2017 Set 2 (1)
GATE ECE 2016 Set 1 (1)
GATE ECE 2015 Set 2 (1)
GATE ECE 2014 Set 3 (2)
GATE ECE 2013 (2)
GATE ECE 2012 (3)
GATE ECE 2009 (1)
GATE ECE 2008 (1)
GATE ECE 2007 (1)
GATE ECE 2005 (1)
GATE ECE 2002 (1)
GATE ECE 2001 (2)
GATE ECE 2000 (1)
GATE ECE 1999 (2)
GATE ECE 1993 (1)
GATE ECE 1989 (2)
GATE ECE 1988 (1)
GATE ECE Subjects
Network Theory
Control Systems
Electronic Devices and VLSI
Analog Circuits
Digital Circuits
Microprocessors
Signals and Systems
Representation of Continuous Time Signal Fourier Series Discrete Time Signal Fourier Series Fourier Transform Discrete Time Signal Z Transform Continuous Time Linear Invariant System Transmission of Signal Through Continuous Time LTI Systems Discrete Time Linear Time Invariant Systems Sampling Continuous Time Signal Laplace Transform Discrete Fourier Transform and Fast Fourier Transform Transmission of Signal Through Discrete Time Lti Systems Miscellaneous Fourier Transform
Communications
Electromagnetics
General Aptitude