1
GATE EE 2014 Set 1
MCQ (Single Correct Answer)
+2
-0.6
Given the Op-amps in the figure of ideal, the output voltage $${V_0}$$ is GATE EE 2014 Set 1 Analog Electronics - Operational Amplifier Question 23 English
A
$${V_1} - {V_2}$$
B
$$2\left( {{V_1} - {V_2}} \right)$$
C
$${{{V_1} - {V_2}} \over 2}$$
D
$${V_1} + {V_2}$$
2
GATE EE 2014 Set 1
MCQ (Single Correct Answer)
+2
-0.6
In the figure shown, assume the op-amp to be ideal. Which of the alternatives gives the correct Bode plots for the transfer function $${{{V_O}\left( \omega \right)} \over {{V_i}\left( \omega \right)}}?$$ GATE EE 2014 Set 1 Analog Electronics - Operational Amplifier Question 22 English
A
GATE EE 2014 Set 1 Analog Electronics - Operational Amplifier Question 22 English Option 1
B
GATE EE 2014 Set 1 Analog Electronics - Operational Amplifier Question 22 English Option 2
C
GATE EE 2014 Set 1 Analog Electronics - Operational Amplifier Question 22 English Option 3
D
GATE EE 2014 Set 1 Analog Electronics - Operational Amplifier Question 22 English Option 4
3
GATE EE 2013
MCQ (Single Correct Answer)
+2
-0.6
In the circuit shown below the op-amps are ideal. Then $${V_{out}}$$ in Volts is GATE EE 2013 Analog Electronics - Operational Amplifier Question 24 English
A
$$4$$
B
$$6$$
C
$$8$$
D
$$10$$
4
GATE EE 2009
MCQ (Single Correct Answer)
+2
-0.6
The following circuit has $$R = 10k\Omega ,\,C = 10\mu F.$$ The input voltage is a sinusoidal at $$50HZ$$ with an $$RMS$$ values of $$10V.$$ Under ideal conditions, the current $${{\rm I}_S}$$ from the source is GATE EE 2009 Analog Electronics - Operational Amplifier Question 7 English
A
$$10\pi mA$$ leading by $${90^ \circ }$$
B
$$20\pi mA$$ leading by $${90^ \circ }$$
C
$$10mA$$ leading by $${90^ \circ }$$
D
$$10\pi mA$$ leading by $${90^ \circ }$$
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