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Signals and Systems
Fourier Transform

Practice questions from Fourier Transform.

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Q#1 Fourier Transform GATE EE 2025 (Set 1) NAT +2 marks -0 marks

An ideal low pass filter has frequency response given by

 

Let  be its time domain representation. Then  __________ (round off to the nearest integer).

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Q#2 Fourier Transform GATE EE 2024 (Set 1) NAT +1 mark -0 marks

Let  be the Fourier transform of the signal

         

The value of the derivative of  at  is ________ (rounded off to 1 decimal place).

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Q#3 Fourier Transform GATE EE 2023 (Set 1) MCQ +1 mark -0.33 marks

The Fourier transform  of the signal  is given by

Which one of the following statements is true?

 tends to be an impulse as .

 decreases as  increases.

At

At

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Q#4 Fourier Transform GATE EE 2023 (Set 1) NAT +2 marks -0 marks

The discrete-time Fourier transform of a signal  is  . Consider that  is a periodic signal of period  such that

Note that . The magnitude of the Fourier series coefficient  is __________ (Round off to 3 decimal places).

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Q#5 Fourier Transform GATE EE 2022 (Set 1) MCQ +2 marks -0.66 marks

Let an input x(t) = 2 sin(10πt) + 5cos(15πt) + 7sin(42πt) + 4cos(45πt) is passed through an LTI system having an impulse response,                

The output of the system is

2 sin(10πt) + 5 cos(15πt)

5 cos(15πt) + 7 sin(42πt)

7 sin(42πt) + 4 cos(45πt)

2 sin(10πt) + 4 cos(45πt)

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Q#6 Fourier Transform GATE EE 2021 (Set 1) MCQ +2 marks -0.66 marks

Let f(t) be an even function i.e., f(–t) = f(t) for all t. Let the Fourier transform of f(t) be defined as . Suppose  for all ω and F(0) = 1. Then

f(0) < 1

f(0) > 1

f(0) = 1

f(0) = 0

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Q#7 Fourier Transform GATE EE 2021 (Set 1) NAT +2 marks -0 marks

Consider a continuous-time signal x(t) defined by x(t) = 0 for |t| > 1, and x(t) = 1 – |t| for |t| ≤ 1. Let the Fourier transform of x(t) be defined as . The maximum magnitude of X(ω) is __________.

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Q#8 Fourier Transform GATE EE 2020 (Set 1) MCQ +2 marks -0.66 marks

The causal realization of a system transfer function H(s) having poles at (2, –1), (–2,1) and zeroes at (2,1), (–2, –1) will be

Stable, real, All pass

Unstable, complex, All pass

Unstable, real, High pass

Stable, complex, Low pass

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Q#9 Fourier Transform GATE EE 2018 (Set 1) NAT +2 marks -0 marks

The Fourier transform of a continuous-time signal x(t) is given by ;, where and denotes frequency. Then the value of at t=1 is ______ (up to 1 decimal place). (In denotes the logarithm to base e)

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Q#10 Fourier Transform GATE EE 2017 (Set 1) MCQ +1 mark -0.33 marks

Let, where  denotes convolution, Let c be a positive real-valued constant. Choose the correct expression for z (ct).         

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Q#11 Fourier Transform GATE EE 2017 (Set 1) MCQ +2 marks -0.66 marks

Let the signal be passed through an LTI system with frequency response , as given in the figure below

Z:\PY\EE\Redreaw figure\Signal & System\updated\Signal & system\166-19.jpg

The Fourier series representation of the output is given as

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Q#12 Fourier Transform GATE EE 2016 (Set 1) MCQ +2 marks -0.66 marks

Suppose  and  have the Fourier transforms as shown below.                 

Which one of the following statements is TRUE?

 and  are complex and  is also complex with non-zero imaginary part

 and are real and  is also real

 and  are complex but  is real

 and   are imaginary but  is real

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Q#13 Fourier Transform GATE EE 2016 (Set 1) MCQ +2 marks -0.66 marks

The output of a continuous-time, linear time-invariant system is denoted by  where x(t) is the input signal. A signal z(t) is called Eigen-signal of the system T, when , where  is a complex number, in general and is called an Eigen value of T. Suppose the impulse response of the system T is real and even. Which of the following statements is TRUE?

cos(t) is an Eigen-signal but sin(t) is not

cos(t) and sin(t) are both Eigen-signals but with different Eigen values

sin(t) is an Eigen-signal but cos(t) is not

cos(t) and sin(t) are both Eigen-signals with identical Eigen values

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Q#14 Fourier Transform GATE EE 2016 (Set 2) NAT +1 mark -0 marks

Suppose the maximum frequency in a band-limited signal x(t) is 5kHz. Then, the maximum frequency in x(t)cos, in kHz, is ____________.

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Q#15 Fourier Transform GATE EE 2016 (Set 2) MCQ +2 marks -0.66 marks

The value of the integral  is equal to          

0

0.5

1

2

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Q#16 Fourier Transform GATE EE 2015 (Set 2) MCQ +1 mark -0.33 marks

The filters F1 and F2 having characteristics as shown in figures (a) and (b) are connected as shown in figure (c)

D:\Vol-2\Signals & Systems\Chap-4-12.jpg

7.jpg

The cut – off frequencies of F1 and F2 are  and  respectively. If , the resultant circuit exhibit the characteristics of a

Band – pass filter

Band – stop filter

All pass filter

High – Q filter

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Q#17 Fourier Transform GATE EE 2015 (Set 2) MCQ +2 marks -0.66 marks

Consider a signal defined by

Its Fourier Transform is

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Q#18 Fourier Transform GATE EE 2014 (Set 1) MCQ +2 marks -0.66 marks

Let f(t) be a continuous time signal and let  be its Fourier transform defined by

Define g(t) by

What is the relationship between f(t) and g(t)?

g(t) would always be proportional to f(t).

g(t) would be proportional to f(t) if f(t) is an even function.

g(t) would be proportional to f(t) only if f(t) is a sinusoidal function.

g(t) would never be proportional to f(t).

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Q#19 Fourier Transform GATE EE 2014 (Set 2) MCQ +1 mark -0.33 marks

Consider an LTI system with transfer function

If the input to the system is and the steady state output is , then the value of A is

1/30

1/15

3/4

4/3

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Q#20 Fourier Transform GATE EE 2014 (Set 3) MCQ +1 mark -0.33 marks

A function f(t) is shown in the figure.                

2.jpg

The Fourier transform  of f(t) is

Real and even function of

Real and odd function of

Imaginary and odd function of

Imaginary and even function of

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Q#21 Fourier Transform GATE EE 2014 (Set 3) MCQ +1 mark -0.33 marks

A signal is represented by         

The Fourier transform of the convolved signal  is

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Q#22 Fourier Transform GATE EE 2014 (Set 3) MCQ +2 marks -0.66 marks

A continuous-time LTI system with system function  has the following pole-zero plot. For this system, which of the alternatives is TRUE?        

21.jpg

 has multiple maxima, at  and

 = constant;

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Q#23 Fourier Transform GATE EE 2014 (Set 3) MCQ +2 marks -0.66 marks

A differentiable non constant even function x(t) has a derivative y(t), and their respective Fourier Transformers are . Which of the following statements is TRUE?

 are both real.

 is real and  is imaginary.

 are both imaginary

 is imaginary and  is real.

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Q#24 Fourier Transform GATE EE 2012 (Set 1) MCQ +2 marks -0.66 marks

The Fourier transform of a signal h(t) is . The value of h(0) is

1

2

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Q#25 Fourier Transform GATE EE 2010 (Set 1) MCQ +2 marks -0.66 marks

x(t) is a positive rectangular pulse from  to  with unit height as shown in the figure. The value of where  is the Fourier transform of x(t) is                 

25.jpg

2

4

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Q#26 Fourier Transform GATE EE 2008 (Set 1) MCQ +2 marks -0.66 marks

A signal  where α is a real constant  is the input to a Linear Time invariant system whose impulse response  where β is a real constant.  If min(α,β) denotes the minimum of α and β, and similarly max(α,β) denotes  the maximum of α and β, and K is a constant, which one of the following statements is true about the output of the system?

It will be of the form  where

It will be of the form  where

It will be of the form

It cannot be a sinc type of signal

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Q#27 Fourier Transform GATE EE 2008 (Set 1) MCQ +2 marks -0.66 marks

Let  (where rect (x) =1 for  and zero otherwise).  Then if , the Fourier Transform of  will be given by

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Q#28 Fourier Transform GATE EE 2007 (Set 1) MCQ +1 mark -0.33 marks

Let a signal be applied to a stable linear lime-invariant system. Let the corresponding steady state output be represented as. Then which of the following statements is true?

F is not necessarily a "sine" or "cosine" function but must be periodic with.

F must be a "sine" or "cosine" function with

F must be a "sine" function with and

F must be a "sine" or “cosine” function with

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