Electronics and Communication Engineering (ECE) Exam  >  Electronics and Communication Engineering (ECE) Tests  >  GATE ECE (Electronics) Mock Test Series 2025  >  Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Electronics and Communication Engineering (ECE) MCQ

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Electronics and Communication Engineering (ECE) MCQ


Test Description

30 Questions MCQ Test GATE ECE (Electronics) Mock Test Series 2025 - Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test)

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) for Electronics and Communication Engineering (ECE) 2024 is part of GATE ECE (Electronics) Mock Test Series 2025 preparation. The Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) questions and answers have been prepared according to the Electronics and Communication Engineering (ECE) exam syllabus.The Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) MCQs are made for Electronics and Communication Engineering (ECE) 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) below.
Solutions of Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) questions in English are available as part of our GATE ECE (Electronics) Mock Test Series 2025 for Electronics and Communication Engineering (ECE) & Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) solutions in Hindi for GATE ECE (Electronics) Mock Test Series 2025 course. Download more important topics, notes, lectures and mock test series for Electronics and Communication Engineering (ECE) Exam by signing up for free. Attempt Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) | 65 questions in 180 minutes | Mock test for Electronics and Communication Engineering (ECE) preparation | Free important questions MCQ to study GATE ECE (Electronics) Mock Test Series 2025 for Electronics and Communication Engineering (ECE) Exam | Download free PDF with solutions
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 1

Consider the circuit shown in the figure.

The Boolean expression F implemented by the circuit is

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 1


Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 2

An LTI system with unit sample response is a

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 2


Obtain



Thus Ideal behaviour of h[n] is Band pass filter.

1 Crore+ students have signed up on EduRev. Have you? Download the App
*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 3

In the circuit shown, V is a sinusoidal voltage source. The current I is in phase with voltage V. 



Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 3

If I &V are in phase then the circuit is in resonance
At resonance

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 4

In a DRAM,

*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 5

Consider an n-channel MOSFET having width W, length L, electron mobility in the channel μn and oxide capacitance per unit area Cox. If gate-to-source voltage VGS = 0.7V, drain-tosource voltage VDS = 0.1V, (μn Cox) = 100μA / V2 , threshold voltage VTH = 0.3 V and (W/L) = 50, then the transconductance gm (in mA/V) is ___________.


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 5

Here, VDS < VGS - VPH, so n-channel MOSFET is working in linear region.

So, transconductance gm is in linear region and is given by

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 6

Two conducting spheres S1 and S2 of radii a and b (b>a) respectively, are placed far apart and connected by a long, thin conducting wire, as shown in the figure.

For some charge placed on this structure, the potential and surface electric field on S1 are Va and Ea, and that on S2 are Vb and Eb, respectively, which of the following is CORRECT? 

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 6

⇒ bc3 two spheres are joined with a conducting wire, the voltage on two spheres is same.

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 7

For the circuit shown in the figure, P and Q are the inputs and Y is the output.

The logic implemented by the circuit is

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 8

An n-channel enhancement mode MOSFET is biased at VGS > VTH and VDS > (VGS - VTH) , where VGS is the gate-to-source voltage, VDS is the drain-to-source voltage and VTH is the threshold voltage. Considering channel length modulation effect to be significant, the MOSFET behaves as a

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 8

If channel length modulation is considered and significant it means λ ≠ 0


If VAS > VTH and VDS > (VDS - VTH) then it indicates that MOSFET is working in saturation region and it can be used as an amplifier. So it can act as current source with finite output impedance.

*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 9

A connection is made consisting of resistance A in series with a parallel combination of resistances B and C. Three resistors of value 10Ω, 5Ω, 2Ω are provided. Consider all possible permutations of the given resistors into the positions A, B, C, and identify the configurations with maximum possible overall resistance, and also the ones with minimum possible overall resistance. The ratio of maximum to minimum values of the resistances (up to second decimal place) is ____________.


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 9

The maximum resistance

The minimum resistance

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 10

An npn bipolar junction transistor (BJT) is operating in the active region. If the reverse bias across the base – collector junction is increased, then

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 10

If the reverse bias voltage across the base collector junction is increased, then their effective base width will decrease and collector current will increase, therefore their common-emitter current gain increases.

*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 11

Consider the state space realization
, with the initial condition
where u(t) denotes the unit step function. The value of 


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 11


Apply L.T to above equation


*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 12

The rank of the matrix 


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 12






*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 13

A two – wire transmission line terminates in a television set. The VSWR measured on the line is 5.8. The percentage of power that is reflected from the television set is ______________


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 13

Percentage of power reflected is 

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 14

The input x(t) and the output y(t) of a continuous-time system are related as 

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 14

Given Input-output relationship describes integration over a fundamental period T. The integration over one period is linear and time-invariant.

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 15

Which of the following statements is incorrect?

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 15

The phase-lead controller adds zero and a pole, with the zero to the right of the pole, to the forward-path transfer function. The general effect is to add more damping to the closed-loop system. The rise time and settling time are reduced in general.

→ Reduces the steady state error
→ Reduces the speed of response
→ Increases the gain of original network without affecting stability
→ Permits the increases of gain if phase margin is acceptable
→ System becomes lesser stable
→ Reduces the effect of noise
→ Decrease the bandwidth 

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 16

The residues of a function 

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 16

Z = 4 is a pole of order ‘1’ (or) simple pole

z = – 1 is a pole of order ‘3’.

*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 17

A sinusoidal message signal is converted to a PCM signal using a uniform quantizer. The required signal-to-quantization noise ratio (SQNR) at the output of the quantizer is 40dB. The minimum number of bits per sample needed to achieve the desired SQNR is _______


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 17

For sinusoidal signal
(SNR)Q in dB = 6.0 n + 1.75 
Given required (SNR)Q = 40 dB

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 18

The general solution of the differential equation  in terms of arbitrary 
constants K1 and K2 is

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 18

D2 + 2D - 5 = 0

Where k1, k2 are arbitrary constants.

Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 19

Which one of the following graphs shows the Shannon capacity (channel capacity) in bits of a memory less binary symmetric channel with crossover probability P?

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 19

For memory less binary Symmetric channel
Channel capacity




*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 20

The output V0 of the diode circuit shown in the figure is connected to an averaging DC voltmeter. The reading on the DC voltmeter in Volts, neglecting the voltage drop across the diode, is ____________.


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 20

*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 21

Consider the random process X (t) = U+ Vt, where U is a zero-mean Gaussian random variable and V is a random variable uniformly distributed between 0 and 2. Assume that U and V are statistically independent. The mean value of the random process at t = 2 is ____________


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 21

Given x (t) = U+ Vt

*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 22

For the system shown in the figure, Y(s) / X(s) = __________.


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 22


*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 23

The smaller angle (in degrees) between the planes x + y + z =1 and 2x – y + 2z = 0 is 


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 23

x + y + 2 = 1
2x – y + 2z = 0
We have angle between two planes

 

*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 24

Consider the circuit shown in the figure. Assume base-to- emitter voltage VBE = 0.8 V and common base current gain (α) of the transistor is unity.

The value of the collector- to – emitter voltage VCE (in volt) is _______. 


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 24


Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 25

In the figure, D1 is a real silicon pn junction diode with a drop of 0.7V under forward bias condition and D2 is a zener diode with breakdown voltage of -6.8 V. The input Vin(t) is a periodic square wave of period T, whose one period is shown in the figure.

Assuming 10t << T. where t is the time constant of the circuit, the maximum and minimum values of the output waveform are respectively,

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 25

When Vi = 14V, the equivalent circuit is



Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 26

If the vector function is irrotational, then the values of the constants k1, k2 and k3 respectively, are

Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 26

*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 27

The un-modulated carrier power in an AM transmitter is 5kW. This carrier is modulated by a sinusoidal modulating signal. The maximum percentage of modulation is 50%. If it is reduced to 40%, then the maximum un-modulated carrier power (in kW) that can be used without overloading the transmitter is ___________


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 27

Total power when μ = 50% is


When μ = 40%
Total power remains 5.625

Pc = 5.22

*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 28

Consider an LTI system with magnitude response 


And phase response Arg {H (f)} = -2f.
If the input to the system is

Then the average power of the output signal y (t) is _________.


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 28

Consider an LTI system with magnitude response 

And phase response Arg {H (f)} = -2f.
If the input to the system is

Then the average power of the output signal y (t) is _________.
28. Obtain X (f ) for the given x(t)



*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 29

A MOS capacitor is fabricated on p-type Si (silicon) where the metal work function is 4.1 eV and electron affinity of Si is 4.0 eV. EC-FF = 0.9 eV, where EC and EF are the conduction band minimum and the Fermi energy levels of Si, respectively. Oxide  F / cm. oxide thickness tox = 0.1 μm and electronic charge q = 1.6 ×10-19 C. If the measured flat band voltage of the capacitor is -1V, then the magnitude of the fixed charge at the oxidesemiconductor interface, in nC/cm2, is __________.


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 29


*Answer can only contain numeric values
Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 30

An electron (q1) is moving in free space with velocity 105 m/s towards a stationary electron (q2) far away. The closest distance that this moving electron gets to the stationary electron before the repulsive force diverts its path is ___________ ×10-8m.

[Given, mass of electron m = 9.11×10-31kg, charge of electron e = -1.6×10-19C , and permittivity  


Detailed Solution for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) - Question 30

Work done due to field and external agent must be zero

View more questions
25 docs|263 tests
Information about Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) Page
In this test you can find the Exam questions for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test) solved & explained in the simplest way possible. Besides giving Questions and answers for Electronics And Communication (Set 2) - ECE 2017 GATE Paper (Practice Test), EduRev gives you an ample number of Online tests for practice

Top Courses for Electronics and Communication Engineering (ECE)

Download as PDF

Top Courses for Electronics and Communication Engineering (ECE)