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GATE ECE 2016 Set 2
Numerical
+1
-0
The z-parameter matrix for the two-port network shown is $$$\left[ {\matrix{ {2\,j\,\omega } & {j\,\omega } \cr {j\,\omega } & {3\, + \,2\,j\,\omega } \cr } } \right]$$$ Where the entries are in $$\Omega $$. Suppose $$\,{Z_b}\,\left( {j\,\omega } \right) = {R_b} + j\,\omega $$ GATE ECE 2016 Set 2 Network Theory - Two Port Networks Question 39 English Then the value of $${R_b}$$ (in $$\Omega $$) equals _______________________3
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2
GATE ECE 2016 Set 2
Numerical
+2
-0
The switch S in the circuit shown has been closed for a long time. It is opened at time t = 0 and remains open after that. Assume that the diode has zero reverse current and zero forward voltage drop. GATE ECE 2016 Set 2 Network Theory - Transient Response Question 21 English The steady state magnitude of the capacitor voltage VC (in volts) is ____________.
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3
GATE ECE 2016 Set 2
Numerical
+2
-0

In the circuit shown in the figure, the magnitude of the current (in amperes) through R2 is___________.

GATE ECE 2016 Set 2 Network Theory - Network Elements Question 11 English
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4
GATE ECE 2016 Set 2
MCQ (Single Correct Answer)
+1
-0.3
In the circuit shown below, Vs is a constant voltage source and IL is a constant current load
GATE ECE 2016 Set 2 Network Theory - Network Theorems Question 40 English
The value of IL that maximizes the power absorbed by the constant current load is
A
$$\frac{V_s}{4R}$$
B
$$\frac{V_s}{2R}$$
C
$$\frac{V_s}{R}$$
D
$$\infty$$