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GATE 2026 Electronics & Communication

65 questions across 1 session

Q1

Among the following options, the antonym of the word 'nocturnal' is _________.

General Aptitude·MCQ·easy·✓ keyed
Q2

The statements (S1), (S2), and (S3) pertain to the scores obtained by students in an exam. The maximum possible marks in the exam is 150. (S1) The highest score is 100. (S2) The fo...

Logical Reasoning·MCQ·medium·✓ keyed
Q3

The figure below has exactly three intersecting line segments with a rectangular portion WXYZ missing. Which one of the following options P, Q, R, and S is the missing portion WXYZ...

Logical Reasoning·DIAGRAM·medium·✓ keyed
Q4

Real numbers y, p, and n (all greater than 1) satisfy $(\log_{p^{1/n}} y)(\log_{y^{1/n}} p) = 16$, where the logarithms are taken to the bases $p^{1/n}$ and $y^{1/n}$. The value of...

Mathematics·MCQ·medium·✓ keyed
Q5

The following observation is made about the scores obtained by 100 students in an exam: 'For each student, there exists another student in the class such that their scores are at m...

Logical Reasoning·MCQ·medium·✓ keyed
Q6

Each one of the following clues contains a keyword that is partially filled. Clue 1: Synonym of recognize (8 letters): _ D _ NT _ FY Clue 2: A story long enough to fill a book (5 l...

Logical Reasoning·MCQ·medium·✓ keyed
Q7

Three children P, Q, R and two grown-ups X, Y play a badminton doubles tournament. X and Y are parents to two of the children playing. The child of X is not the same as the child o...

Logical Reasoning·MCQ·medium·✓ keyed
Q8

Let Pk represent the perimeter of a square with sides of length k. The value of the expression P₁ + P₂ + P₃ + ⋯ + P₁₀ is

Mathematics·MCQ·medium·✓ keyed
Q9

The city of Atlantis was crafted by the God of the seas, Poseidon. It was made of alternating concentric circular rings of land (shaded) and water (not shaded) as represented in th...

Logical Reasoning·MCQ·medium·✓ keyed
Q10

If Ref Fig 12 34 12 34 → Ref Fig Then GATE - 2026 → ? Aptitude Test Test Aptitude GATE - 2026 P Aptitude Test GATE - 2026 R Test Aptitude 2026- GATE Q Test Aptitude 2026 - GATE S

Logical Reasoning·MCQ·medium·✓ keyed
Q11

Consider the differential equation $\dot{w} = Aw$, with $w(t = 0) = \begin{bmatrix} 1 \\ 1 \end{bmatrix}$. If $w(t) = e^t\vec{u}_x + e^{-2t}\vec{u}_y$ be the solution to the equati...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q12

A surface is given by z² = 2x² – y² and $\vec{n}$ and $-\vec{n}$ are unit normal vectors to the surface at the point $\vec{P} = \hat{i} + \sqrt{2} \hat{k}$. Which of the following...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q13

The Laplace Transform of the signal $x(t) = u(t - 2) * (tu(t))$ is given by which of the following expressions? [" * " represents convolution operator]

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q14

Consider carrier transport in a Zener diode in the breakdown region. Which is the dominant transport mechanism for current flow in this case?

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q15

Two analog signals $x_1(t)$ and $x_2(t)$ ($t$ in second), are sampled at a rate $F_s = 40$ Hz, where $x_1(t) = \cos(20\pi t)$, $t \ge 0$, and $x_2(t) = \cos(100\pi t)$, $t \ge 0$....

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q16

The response of a discrete time system y[n] obeys the following relation: y[n] = (5/6)y[n-1] - (1/6)y[n – 2] + x[n]. The input to the system is x[n] = δ[n] – (1/3)δ[n – 1]. Which o...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q17

The ideal OP-AMP circuit shown in the Figure produces output voltage V_o = x when the Switch, S, is open. Which of the options represents the output voltage when S is closed?

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q18

Consider the circuit shown in the Figure with $V_i = 3$ V and $V_{CC} = 12$ V. Assume $V_{BE} = 0.7$ V and $\beta_{dc} = 99$ for the BJT. Which of the following options is the corr...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q19

A control system is shown in the Figure. Which option represents the correct transfer function of the system?

Electronics and Communication Engineering·DIAGRAM·medium·✓ keyed
Q20

In the circuit shown in the Figure, A and B are logic inputs and Y is the logic output. Which of the following logic operations is realized by the circuit?

Electronics and Communication Engineering·DIAGRAM·medium·✓ keyed
Q21

Consider the Friis' transmission equation $P_R = (P_T G_T G_R \lambda^2)/(4\pi D)^2$, where $P_R$ and $P_T$ are the received and the transmitted powers, respectively. $G_T$ and $G_...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q22

Consider a discrete memoryless source with an alphabet of four source symbols. s(t) is a multi-level (-1, 0, +1, +2) signal representing a long sequence of random symbols from the...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q23

The relation between the input current (I) and the output voltage (V) of a circuit is governed by the equation: $C \frac{dV}{dt} = I(t) - m(t)$. The circuit is excited by $I(t) = q...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q24

The electric field of a monochromatic plane wave travelling in a lossless isotropic and homogenous medium is given by $\vec{E}(z,t) = E_0[\hat{x}cos(\omega t - kz) + \hat{y}sin(\om...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q25

Consider a p-n junction diode when it is forward biased with 2 V. Which of the following is/are the correct magnitude(s) of the energy difference between quasi Fermi-levels, $E_{fn...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q26

Consider the matrix M = $\begin{bmatrix} 2 & 1 & 1 \\ 1 & 3 & 0 \\ -1 & a & b \end{bmatrix}$. Which of the following options is/ are TRUE if det(M) $\neq$ 0?

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q27

A binary ripple counter is designed to count (0)10 to (64)10. Which of the following is/are the number of flip-flops required to design the counter?

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q28

Which option(s) represents/ represent the dielectric loss tangent of a substrate?

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q29

Figure shows the output characteristics of two different Bipolar Junction Transistors (BJT), BJT 1 with magnitude of Early voltage |V_A1|, and BJT 2 with magnitude of Early voltage...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q30

The output voltage V_o (in Volt) for the network given in the Figure is ____. (rounded off to two decimal places)

Electronics and Communication Engineering·NAT·medium·✓ keyed
Q31

Consider the circuit shown in the Figure, where the input v_i(t) is in Volt. The average power (in mW) dissipated in the load resistance of 1 kΩ at the resonant frequency is ____....

Electronics and Communication Engineering·NAT·hard·✓ keyed
Q32

A wireless digital transmission scheme is using 16-QAM over an additive white Gaussian noise channel and a maximum-likelihood receiver. Consider the information bit rate from sourc...

Electronics and Communication Engineering·NAT·medium·✓ keyed
Q33

The cutoff frequency (in GHz) for the dominant TE10 mode of an air-filled rectangular waveguide of inner dimension 0.28 inch × 0.14 inch is ____. (rounded off to two decimal places...

Electronics and Communication Engineering·NAT·medium·✓ keyed
Q34

For a lossless passive two-port network, |S11| and |S21| intersect at -3 dB. For a lossy passive two-port network, |S11| and |S21| intersect at – 4 dB.. The percentage of power dis...

Electronics and Communication Engineering·NAT·hard·✓ keyed
Q35

The negative edge triggered JK flip-flop in the Figure has J and K inputs tied to Logic High and a square wave of 10 cycles/second is applied to its clock (C) input. The frequency...

Electronics and Communication Engineering·NAT·medium·✓ keyed
Q36

Consider the two series, $S_A$ and $S_B$, where $S_A = \sum_{n=1}^{\infty} \frac{n^2}{2^n}$ $S_B = 1 + \frac{1}{2} + \frac{1}{8} + \frac{1}{16} + \frac{1}{64} + \frac{1}{128} + \fr...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q37

The continuous time signal x(t) is real, periodic with period T and satisfies the Dirichlet conditions. The Fourier series representation of x(t) = $\sum_{-\infty}^{\infty} a_n e^{...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q38

Let X, N, Y and Z be random variables. The variables X and N are independent of each other. X is uniformly distributed between -1 and 1; N follows Normal distribution with zero mea...

Electronics and Communication Engineering·MCQ·hard·✓ keyed
Q39

In the given circuit, $L = 1 \mu H$ and $C = 1 \mu F$. The phasor diagram for $I_C$ and $I_L$ is also shown. Assume that the phase $(\theta_1 + \theta_2)$ is $90^\circ$ at a freque...

Electronics and Communication Engineering·MCQ·hard·✓ keyed
Q40

For the control system shown in the Figure, the transfer function of a plant, $G(s) = \frac{1}{(s+1)(s+2)}$ is connected in cascade with a compensator $C(s) = K (s + \alpha)$, wher...

Electronics and Communication Engineering·MCQ·hard·✓ keyed
Q41

The state and output equations for a control system are: $\dot{x} = \begin{bmatrix} -4 & -1.5 \\ 4 & 0 \end{bmatrix}x + \begin{bmatrix} 2 \\ 0 \end{bmatrix}u$ $y = \begin{bmatrix}...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q42

The address of the first location of a 256 kilo byte (KB) memory is (2500)H. Choose the correct address of the last location of the memory.

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q43

Consider a real signal x(t), -∞ < t <∞, such that x(t) = 0 for t <0, x(t) = 2 for 0 ≤ t < 1 and x(t) = 0 for t≥ 1. Let E[x(t)] = ∫_∞^[x(t)]^2dt. Which of the following options corr...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q44

A QPSK modulated signal from an additive white Gaussian noise (AWGN) channel is received with an Eb/No = 8.4 dB at the input of a coherent QPSK demodulator. A maximum-likelihood re...

Electronics and Communication Engineering·MCQ·hard·✓ keyed
Q45

What is the 10's complement of (47)10?

Electronics and Communication Engineering·MCQ·easy·✓ keyed
Q46

Consider a real baseband signal x(t) = e^{-2t}, for t (in seconds) ≥ 0. If 99% of energy of x(t) lies within B Hz, then which of the following options is TRUE for the value of B?

Electronics and Communication Engineering·MCQ·hard·✓ keyed
Q47

Consider the discrete time system (S) with input x[n] and output y[n] as shown in the Figure. The two sub-systems represented by their impulse responses $h_1[n]$ and $h_2[n]$ are l...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q48

A Boolean function, $f(x,y,z)$ with $x$ as MSB and $z$ as LSB is realized by 4:1 multiplexer (MUX) with select lines, $S_1$ and $S_0$ ($S_1$ is MSB, $S_0$ is LSB) and inputs, $I_0,...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q49

A shift-left Shift Register (SR) and a D flip-flop are connected to a synchronized clock as shown in the Figure. Assume that the SR and D flip-flops are initially cleared and the X...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q50

A small signal source, Vi(t) = A cos(10^5t) + B sin(10^7t) is applied to a BJT circuit as shown in the Figure. Assume zero source resistance, VBE = 0.7 V, βdc = 99, Early voltage =...

Electronics and Communication Engineering·MCQ·hard·✓ keyed
Q51

Consider the two-port network as shown in the Figure. Which of the following options provides the correct set of values of A, B, C and D parameters?

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q52

A complex load (in Ω) is represented as ΓL = 0.5∠30° on the Smith chart. A co-axial cable with a characteristic impedance of 50 Ω is connected to the load. The new input impedance...

Electronics and Communication Engineering·MCQ·hard·✓ keyed
Q53

A circuit using an ideal OP-AMP is shown in the Figure. Which of the following options gives the correct value of the current Iₓ?

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q54

Consider an LED based on a direct bandgap semiconductor material with energy bandgap 1.3 eV. Given: Plank's constant, h = 6.63 × 10^-34 J s and speed of light in free space is 3 ×...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q55

Let the relevant bandwidth (B) of a digital communication system be 1 MHz and $kT = -174 \text{ dBm/Hz}$, where k is Boltzmann's constant and 'T' is equivalent noise temperature of...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q56

Consider the four-variable Boolean function, f(w, x, y, z) = ∑m(0,2,5,7,8,10,13,14,15) with 'w' as MSB and 'z' as LSB. Which of the following expressions is/are the valid form(s) o...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q57

Consider a real, narrowband signal $x(t) = A(t)\cos[2\pi f_c t + \theta(t)]$ where the maximum frequency components of $A(t)$ and $\theta(t)$ are $f_M$ and $f_c (= 1000 f_M)$, resp...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q58

Let $x_1(t) = \cos(2\pi nt)$ and $x_2(t) = 2\sin(4\pi nt)$ represent two sinusoids for a positive integer $n$ and $-\infty < t < \infty$. Which of the following statements about $x...

Electronics and Communication Engineering·MCQ·medium·✓ keyed
Q59

Consider the unity negative feedback control system shown in the Figure. The value of gain K (>0) at which the given system will remain marginally stable is __. (Answer in integer)

Electronics and Communication Engineering·NAT·medium·✓ keyed
Q60

An n-channel MOSFET is connected as shown in the Figure. Assume VTH = 1 V, VDD = 5 V, and μCox (W/L) = 2 mA V^-2 and neglect channel length modulation effects. The gate voltage (VG...

Electronics and Communication Engineering·NAT·medium·✓ keyed
Q61

Consider the square region R in the X-Y plane as shown with the dark shading in the Figure. The value of $\iint_R (x^2 + y^2 - 1)dxdy$ is ______. (rounded off to two decimal places...

Electronics and Communication Engineering·NAT·medium·✓ keyed
Q62

Consider an ideal OP-AMP circuit as shown in the Figure. The resistances $R_1 = R_2 = R_3 = R_4 = 50 \text{ k}\Omega$. The magnitude of the closed loop gain is ______. (rounded off...

Electronics and Communication Engineering·NAT·medium·✓ keyed
Q63

The average bit error rate at the input of a (7, 4, 1) Hamming decoder is 0.10. The probability that the decoder will fail to decode a received word correctly is ____. (rounded off...

Electronics and Communication Engineering·NAT·medium·✓ keyed
Q64

Consider that the concentration of electrons in a semiconductor bar varies linearly from 2 × 10^17 cm^−3 at x = 1 µm to 1× 10^16 cm^−3 at x = 4 µm along the x-direction. Assume tha...

Electronics and Communication Engineering·NAT·medium·✓ keyed
Q65

Consider the ideal diodes D1 and D2 as shown in the Figure with cut-in voltage Vγ = 0 Volt and vi(t) is in Volt. The maximum voltage (Volt) of the output vo(t) is ____. (rounded of...

Electronics and Communication Engineering·NAT·medium·✓ keyed