1
GATE ECE 2015 Set 2
Numerical
+2
-0
For the voltage regulator circuit shown, the input voltage (Vin) is 20V $$ \pm $$ 20% and the regulated output voltage (Vout) is 10 V. Assume the opamp to be ideal . For a load RL drawing 200 mA, the maximum power dissipation in Q1 (in Watts) is ______. GATE ECE 2015 Set 2 Analog Circuits - Operational Amplifier Question 26 English
Your input ____
2
GATE ECE 2015 Set 2
Numerical
+2
-0
Assuming that the op-amp in the circuit shown below is ideal, the output voltage V0 (in volts) GATE ECE 2015 Set 2 Analog Circuits - Operational Amplifier Question 25 English
Your input ____
3
GATE ECE 2015 Set 2
MCQ (Single Correct Answer)
+2
-0.6
A zero mean white Gaussian noise having power spectral density $${{{N_0}} \over 2}$$ is passed through an $$ LTI $$ filter whose impulse response $$h(t)$$ is shown in the figure. The variance of the filtered noise at $$t = 4$$ is GATE ECE 2015 Set 2 Communications - Random Signals and Noise Question 36 English
A
$${3 \over 2}{A^2}{N_0}$$
B
$${3 \over 4}{A^2}{N_0}$$
C
$${A^2}{N_0}$$
D
$${1 \over 2}{A^2}{N_0}$$
4
GATE ECE 2015 Set 2
MCQ (Single Correct Answer)
+2
-0.6
$$\mathop {\left\{ {{X_n}} \right\}}\nolimits_{n = - \infty }^{n = \infty } $$ is an independent and identically distributed (i.i.d) random process with $${X_n}$$ equally likely to be $$+1$$ or $$-1$$. $$\mathop {\left\{ {{Y_n}} \right\}}\nolimits_{n = - \infty }^{n = \infty } \,$$ is another random process obtained as $${Y_n} = {X_n} + 0.5{X_{n - 1}}.\,\,\,$$
The autocorrelation function of $$\mathop {\left\{ {{Y_n}} \right\}}\nolimits_{n = - \infty }^{n = \infty } $$, denoted by $${r_y}\left[ K \right],$$ is
A
GATE ECE 2015 Set 2 Communications - Random Signals and Noise Question 35 English Option 1
B
GATE ECE 2015 Set 2 Communications - Random Signals and Noise Question 35 English Option 2
C
GATE ECE 2015 Set 2 Communications - Random Signals and Noise Question 35 English Option 3
D
GATE ECE 2015 Set 2 Communications - Random Signals and Noise Question 35 English Option 4
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