Network Theory
Network Elements
Marks 1Marks 2Marks 5
Network Theorems
Marks 1Marks 2Marks 5
Sinusoidal Steady State Response
Marks 1Marks 2Marks 5Marks 8
Network Graphs
Marks 1Marks 2
State Equations For Networks
Marks 5
1
GATE ECE 2014 Set 4
Numerical
+2
-0

The equivalent resistance in the infinite ladder network shown in the figure, is$${R_e}$$

GATE ECE 2014 Set 4 Network Theory - Two Port Networks Question 19 English

The value of $${R_e}/R$$ is _______________

Your input ____
2
GATE ECE 2014 Set 4
MCQ (Single Correct Answer)
+2
-0.6
For the two-port network shown in the figure, the impedance (Z) matrix (in Ω) is GATE ECE 2014 Set 4 Network Theory - Two Port Networks Question 41 English
A
$$\begin{bmatrix}6&24\\42&9\end{bmatrix}$$
B
$$\begin{bmatrix}9&8\\8&24\end{bmatrix}$$
C
$$\begin{bmatrix}9&6\\6&24\end{bmatrix}$$
D
$$\begin{bmatrix}42&6\\6&60\end{bmatrix}$$
3
GATE ECE 2014 Set 2
Numerical
+2
-0
In the h-parameter model of the 2-port network given in the figure shown, the value of h22 (in S) is _____ . GATE ECE 2014 Set 2 Network Theory - Two Port Networks Question 42 English
Your input ____
4
GATE ECE 2011
MCQ (Single Correct Answer)
+2
-0.6
In the circuit shown below, the network N is described by the following Y matrix: $$$Y\;=\;\begin{bmatrix}0.1S&-0.01S\\0.01S&0.1S\end{bmatrix}$$$ The voltage gain $$\frac{V_2}{V_1}$$ is GATE ECE 2011 Network Theory - Two Port Networks Question 43 English
A
1/90
B
-1/90
C
-1/99
D
-1/11
GATE ECE Subjects
Signals and Systems
Network Theory
Control Systems
Digital Circuits
General Aptitude
Electronic Devices and VLSI
Analog Circuits
Engineering Mathematics
Microprocessors
Communications
Electromagnetics