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Test: Continuous Time Fourier Series - Electronics and Communication Engineering (ECE) MCQ


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8 Questions MCQ Test - Test: Continuous Time Fourier Series

Test: Continuous Time Fourier Series for Electronics and Communication Engineering (ECE) 2024 is part of Electronics and Communication Engineering (ECE) preparation. The Test: Continuous Time Fourier Series questions and answers have been prepared according to the Electronics and Communication Engineering (ECE) exam syllabus.The Test: Continuous Time Fourier Series MCQs are made for Electronics and Communication Engineering (ECE) 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Test: Continuous Time Fourier Series below.
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Test: Continuous Time Fourier Series - Question 1

If, f(t) = -f(-t)and f(t) satisfy the dirichlet conditions then f(t) can be expanded in a fourier series containing

Test: Continuous Time Fourier Series - Question 2

The trigonometric Fourier series expansion of an odd function shall have

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Test: Continuous Time Fourier Series - Question 3

A periodic triangular wave is shown in figure its fourier components will consists only of

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Since given wave has symmetry about origin, so it has odd symmetry. Therefore, it consists only odd sine terms.

Test: Continuous Time Fourier Series - Question 4

Determine the Fourier series coefficient for given periodic signal x(t) is

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Test: Continuous Time Fourier Series - Question 5

Consider the three continuous time signals with fundamental period of T = 1/2
x(t) = cos4πt
y(t) = sin 4πt
z(t) = x(t)·y(t)

The Fourier co-efficient of z(t) are given by

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Test: Continuous Time Fourier Series - Question 6

Consider a continuous time periodic signal x(t) given by

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Test: Continuous Time Fourier Series - Question 7

The Fourier series coefficient of time domain signal have been given. Determine the corresponding time domain signal and choose correct option.

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Test: Continuous Time Fourier Series - Question 8

The Fourier series for f(x) = sin2 x defined over the range -π ≤ x ≤ π is

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