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Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Electronics and Communication Engineering (ECE) MCQ


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30 Questions MCQ Test GATE ECE (Electronics) Mock Test Series 2025 - Electronics And Communication - ECE 2020 GATE Paper (Practice Test)

Electronics And Communication - ECE 2020 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 - ECE 2020 GATE Paper (Practice Test) questions and answers have been prepared according to the Electronics and Communication Engineering (ECE) exam syllabus.The Electronics And Communication - ECE 2020 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 - ECE 2020 GATE Paper (Practice Test) below.
Solutions of Electronics And Communication - ECE 2020 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 - ECE 2020 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 - ECE 2020 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 - ECE 2020 GATE Paper (Practice Test) - Question 1

The Canadian constitution requires that equal importance be given to English and French. Last year, Air Canada lost a lawsuit, and had to pay a six-figure fine to a French-speaking couple after they filed complaints about formal in-flight announcements in English lasting 15 seconds, as opposed to informal 5 second messages in French.
The French-speaking couple were upset at _________ .

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 2

A superadditive function f(.) satisfies the following property
f(x1 + x2) > f{x1) +f(x2)
Which of the following functions is a superadditive function for x > 1?

Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 2

Verify with options
Option (a): 


0.2 > 0.8 which is wrong.
Option (b) 

√ 5 > 1.414 + 1.732 
2.23 > 3.146 which is wrong.
Option c: ex1 + x2 > ex1 + ex2
e1 + 2 > e1 + e2
20.085 > 2.718 + 7.389 Satisfying.

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Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 3

Select the word that fits the analogy:
Explicit : Implicit : : Express : ________

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 4

The following figure shows the data of students enrolled in 5 years (2014 to 2018) for two schools P and Q. During this period, the ratio of the average number of the students enrolled in school P to the average of the difference of the number of students enrolled in schools P and Q is ________ .​

Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 4

Average number of students in school,

Average number of students in school,

Difference of the number of students enrolled in school P and Q

Ratio of the average number of the students enrolled in school P to the average of the difference of the number of students enrolled in schools P and Q is = 23 : 8

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 5

a, b, c are real numbers. The quadratic equation ax2- bx + c = 0 has equal roots, which is β, then

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 6

The untimely loss of life is a cause of serious global concern as thousands of people get killed ______ accidents every year while many other die _______ diseases like cardio vascular disease, cancer, etc.

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 7

It is quarter past three in your watch. The angle between the hour hand and the minute hand is _________.

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 8

A circle with centre O is shown in the figure. A rectangle PQRS of maximum possible area is inscribed in the circle. If the radius of the circle is a, then the area of the shaded portion is _________ .

Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 8

Area of shaded portion = Area of circle - area of rectangle
Maximum possible area of rectangle inscribed in the circle = 2a2
So, Required shaded area = πa2 - 2a2

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 9

The global financial crisis in 2008 is considered to be the most serious world-wide financial crisis, which started with the sub-prime lending crisis in USA in 2007. The subprime lending crisis led to the banking crisis in 2008 with the collapse of Lehman Brothers in 2008. The sub-prime lending refers to the provision of loans to those borrowers who may have difficulties in repaying loans, and it arises because of excess liquidity following the East Asian crisis.
Which one of the following sequences shows the correct precedence as per the given passage?

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 10

He was not only accused of theft_______of conspiracy.

*Answer can only contain numeric values
Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 11

The current in the RL-circuit shown below is i(t) = 10 cos ( 5t - π/4)A The value of the inductor (rounded off to two decimal places) is ________ H.


Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 11


xL = 10√2
ωL = 10√2

*Answer can only contain numeric values
Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 12

In the given circuit, the two-port network has the impedance matrix [Z] = 
The value of ZL for which maximum power is transferred to the load is Ω.


Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 12

From maximum power transfer theorem
ZL = Zth

For given data, 
ZL = 48Ω

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 13

If v1, v2, v6 are six vectors in R4, which one of the following statements is False?

*Answer can only contain numeric values
Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 14

The loop transfer function of a negative feedback system is

The value of K, for which the system is marginally stable, is__________.


Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 14

Characteristic equation q(s) for the given open loop system will be 
q(s) = s3 + 10s2 + 16s + Ks + 11K = 0
Using R-H criteria,

For system to be marginally stabled

160 + 10 K - 11 K = 0 
K = 160

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 15

The partial derivative of the function

with respect to x at the point (1, 0, e) is 

Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 15

Given
f(x, y, z) = 

 = e°(0 - 1) + e . e-1/(1 + 0)
= - 1 + 1 = 0

*Answer can only contain numeric values
Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 16

The random variable

and W(t) is a real white Gaussian noise process with two-sided power spectral density Sw(f) = 3 W/Hz, for all f. The variance of Y is _________.


Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 16

Given:
Sω(f) = 3 Watts/Hz
Rω(τ) = 38(τ) = 38(t1 - t2)
Var[y] = E [y2] - { E [y]2
{E[W(t)]}2 = DC power = Area under PSD at f = 0
{E[W(t)]}= 0
E[W(t)] = 0



= 3 x 2 = 6
Var[y] = 6 - 0 = 6
Detailed explanations for:




Above integration exists provided
t1 = t2 = t

= 3 x 1 x Energy [φ(t)]
E[y2] = 6

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 17

For a vector field  which one of the following is False?

*Answer can only contain numeric values
Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 18

A transmission line of length 3λ/4 and having a characteristic impedance of 50 Q is terminated with a load of 400 Ω. The impedance (rounded off to two decimal places) seen at the input end of the transmission line is _________ Ω.


Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 18


Zin for (l = λ/4) = 

*Answer can only contain numeric values
Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 19

A 10-bit D/A converter is calibrated over the full range from 0 to 10 V. If the input to the D/A converter is 13A (in hex), the output (rounded off to three decimal places) is ________ V.


Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 19

Given, n = 10
VFS = 10 V
Input voltage = (13A)16 = (314)10
Output voltage = Resolution x Decimal equivalent of input

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 20

The pole-zero map of a rational function G(s) is shown below. When the closed counter r is mapped into the G(s)-plane, then the mapping encircles.​

Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 20

s-plane contour is encircling 2-poles and 3-zeros in clockwise direction hence the corresponding G(s) plane contour encircles origin 2-times in anti-clockwise direction and 3-times in clockwise direction.
∴ Effectively once in clockwise direction.

*Answer can only contain numeric values
Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 21

In the circuit shown below, all the components are ideal. If V/. is +2 V, the current I0 sourced by the op-amp is _________mA.


Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 21


V0 = (1 + 1) x 2 = 4 V
(KCL at node V0)
-2 + I0 - 4 = 0
⇒ I0 = 6 mA

*Answer can only contain numeric values
Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 22

The two sides of a fair coin are labelled as 0 and 1. The coin is tossed two times independently. Let M and N denote the labels corresponding to the outcomes of those tosses. For a random variable X, defined as X = min{M, N), the expected value E(X) (rounded off to two decimal places) is ________ .


Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 22

s = {( H, H), (H, T), (T, H), (T, T)}


Now, X = Min {M, N}
∴ X = Min {H, H} = Min{(1, 1)} = 1 
X = Min {H, T} = Min{1, 0} = 0 
X = Min{T, H} = Min{0, 1} = 0 
X = Min{T, T} = Min{0, 0} = 0
∴ 

We know that, E(X) = 

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 23

A single crystal intrinsic semiconductor is at a temperature of 300 K with effective density of states for holes twice that of electrons. The thermal voltage is 26 mV. The intrinsic Fermi level is shifted from mid-bandgap energy level by

Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 23

 

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 24

The output y[n] of a discrete-time system for an input x[n] is

The unit impulse response of the system is

*Answer can only contain numeric values
Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 25

A binary random variable X takes the value +2 or -2. The probability P{X = +2) = α.
The value of α (rounded off to one decimal place), for which the entropy of X is maximum, is _________.


Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 25

Given that P{X = 2) = α
Entropy will be maximum; provided probabilities are equal,
i.e.

*Answer can only contain numeric values
Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 26

In the circuit shown below, all the components are ideal and the input voltage is sinusoidal. The magnitude of the steady-state output V0 (rounded off to two decimal places) is ________ V.


Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 26

Voltage doubles, V0 = 2 Vm = 2 x 230√2 ≌ 650.4 V

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 27

Consider the recombination process via bulk traps in a forward biased pn homojunction diode. The maximum recombination rate is Umax. If the electron and the hole capture cross-section are equal, which one of the following is False?

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 28

The general solution of  is

Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 28

Taking d/dx = D
Given, D2 - 6D + 9 = 0
(D - 3)2 = 0
D = 3, 3
So, solution of the given differential equation
y = (c1 + c2 x) e3x

*Answer can only contain numeric values
Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 29

In an 8085 microprocessor, the number of address lines required to access a 16 K byte memory bank is _________.


Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 29

2n = N
n → Number of address lines
N → Number of Memory locations
∴ 2n = 16 kB
= 24(210)    [∵ 1 kB = 210]
= 214
n = 14 

Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 30

The impedances Z = jX, for all X in the range (-∞,∞), map to the Smith chart as

Detailed Solution for Electronics And Communication - ECE 2020 GATE Paper (Practice Test) - Question 30

For given impedance Normalized impedance is

Z = jX
⇒ Z = 0 + jX
Normalized resistance = 0 ⇒ r = 0
X = -∞ to ∞
r = 0 and X from to -∞ to ∞ is a unit circle (radius 1) and centre (0, 0) on a complex reflection coefficient plane:

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