1
GATE EE 2003
MCQ (Single Correct Answer)
+2
-0.6
In the circuit shown, the current gain $$'\beta '$$ of the ideal transistor is $$10.$$ The operating point of the transistor $$\left( {{V_{CE}},{{\rm I}_C}} \right)$$ is GATE EE 2003 Analog Electronics - Bjt and Mosfet Biasing Question 17 English
A
$$(40V, 4A)$$
B
$$(0V, 4A)$$
C
$$(40V, 5A)$$
D
$$(15V, 4A)$$
2
GATE EE 2003
MCQ (Single Correct Answer)
+1
-0.3
For the circuit shown in figure with an ideal operational amplifier, the maximum phase shift of the output $${V_o}$$ with reference to the input $${V_{in}}$$ is GATE EE 2003 Analog Electronics - Operational Amplifier Question 60 English
A
$${0^0}$$
B
$$ - {90^0}$$
C
$$ + {90^0}$$
D
$$ \pm {180^0}$$
3
GATE EE 2003
MCQ (Single Correct Answer)
+2
-0.6
Assuming the operational amplifier to be ideal, the gain $${V_{out}}/{V_{in}}$$ for the circuit shown in figure GATE EE 2003 Analog Electronics - Operational Amplifier Question 34 English
A
$$-1$$
B
$$-20$$
C
$$-100$$
D
$$-120$$
4
GATE EE 2003
MCQ (Single Correct Answer)
+2
-0.6
The circuit of fig shows a $$555$$ Timer $$IC$$ connected as an Astable multivibrator. The value of the capacitor $$C$$ is $$10$$ $$nF.$$ The values of the resistors $${R_A}$$ and $${R_B}$$ for a frequency of $$10$$ $$kHz$$ and a duty cycle of $$0.75$$ for the output voltage waveform are GATE EE 2003 Analog Electronics - 555 Timer Question 3 English
A
$${R_A} = 3.62\,k\Omega ,\,\,{R_B} = 3.62\,k\Omega $$
B
$${R_A} = 3.62\,k\Omega ,\,\,{R_B} = 7.25\,k\Omega $$
C
$${R_A} = 7.25\,k\Omega ,\,\,{R_B} = 3.62\,k\Omega $$
D
$${R_A} = 7.25\,k\Omega ,\,\,{R_B} = 7.25\,k\Omega $$
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