1
GATE EE 1999
MCQ (Single Correct Answer)
+1
-0.3
As temperature is increased, the voltage across a diode carrying a constant current.
A
Increases
B
Decreases
C
Remains Constant
D
May increase or decrease depending upon the doping levels in the junction
2
GATE EE 1999
Subjective
+5
-0
For the small signal $$BJT$$ amplifier shown in given figure. Determine at $$1$$ $$kHz$$ the following GATE EE 1999 Analog Electronics - Small Signal Modeling Question 7 English

$$(a)$$ $$\,\,\,\,\,\,\,\,$$ Quiescent collector current $${{\rm I}_{CQ}}$$
$$(b)$$ $$\,\,\,\,\,\,\,\,$$ Small signal voltage gain $${{{V_o}} \over {{V_i}}}$$
$$(c)$$ $$\,\,\,\,\,\,\,\,$$ Max. possible swing of the collector current.

3
GATE EE 1999
MCQ (Single Correct Answer)
+2
-0.6
The function corresponding to the Bode plot of Figure, is GATE EE 1999 Control Systems - Polar Nyquist and Bode Plot Question 33 English
A
$$A = jf/{f_{_1}}$$
B
$$A = 1/\left( {1 - j{f_1}/f} \right)$$
C
$$A = 1/\left( {1 + j{f_1}/f} \right)$$
D
$$A = 1 + jf/{f_1}$$
4
GATE EE 1999
MCQ (Single Correct Answer)
+2
-0.6
For a dual $$ADC$$ type $$3\,{\raise0.5ex\hbox{$\scriptstyle 1$} \kern-0.1em/\kern-0.15em \lower0.25ex\hbox{$\scriptstyle 2$}}$$ digit $$DVM$$, the reference voltage is $$100$$ $$mV$$ and the first integration time is set to $$300$$ $$ms$$. For some input voltage, the ''deintegration'' period is $$370.2ms.$$ The $$DVM$$ will indicate.
A
$$123.4$$
B
$$199.9$$
C
$$100.0$$
D
$$1.414$$
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