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Test: Signals & Systems- 1 - Electrical Engineering (EE) MCQ


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10 Questions MCQ Test GATE Electrical Engineering (EE) Mock Test Series 2025 - Test: Signals & Systems- 1

Test: Signals & Systems- 1 for Electrical Engineering (EE) 2024 is part of GATE Electrical Engineering (EE) Mock Test Series 2025 preparation. The Test: Signals & Systems- 1 questions and answers have been prepared according to the Electrical Engineering (EE) exam syllabus.The Test: Signals & Systems- 1 MCQs are made for Electrical Engineering (EE) 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Test: Signals & Systems- 1 below.
Solutions of Test: Signals & Systems- 1 questions in English are available as part of our GATE Electrical Engineering (EE) Mock Test Series 2025 for Electrical Engineering (EE) & Test: Signals & Systems- 1 solutions in Hindi for GATE Electrical Engineering (EE) Mock Test Series 2025 course. Download more important topics, notes, lectures and mock test series for Electrical Engineering (EE) Exam by signing up for free. Attempt Test: Signals & Systems- 1 | 10 questions in 30 minutes | Mock test for Electrical Engineering (EE) preparation | Free important questions MCQ to study GATE Electrical Engineering (EE) Mock Test Series 2025 for Electrical Engineering (EE) Exam | Download free PDF with solutions
Test: Signals & Systems- 1 - Question 1

For the signal c(t) given below:

The odd components of the signal x(t) is ?

Test: Signals & Systems- 1 - Question 2

Consider the signals,    which of the following statement is correct about signal x3(t)?

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Test: Signals & Systems- 1 - Question 3

Let P be linearity, Q be time-invariance, R be the causality and S be the with memory. A continuous-time system has the input-output relationship: y(t) = t x(t) where y(t) is the output and x(t) is the input. The system has the properties.

Test: Signals & Systems- 1 - Question 4

The signal x(t) = t u(t) is a 

Test: Signals & Systems- 1 - Question 5

The first derivatives of the signalx(t) = sgn t is

Test: Signals & Systems- 1 - Question 6

The non-invertible system is 

Test: Signals & Systems- 1 - Question 7

The goup delay function  τ(ω) is related to phase function φ (ω) as

Test: Signals & Systems- 1 - Question 8

Let P be the linearity, Q be the Time-variant, R be the causality and S the static. A discrete­time system the input-output relationship,

where the x(n) is an input and y(n) is an output. The above system has the properties

Test: Signals & Systems- 1 - Question 9

A disrete-time LTI susyem is described by,

where, h1(n) = sin δn  h2(n) = an u(n); l a I < 1  and x(n) = 8(n) - a δ(n - 1) 

Which one is the output y(n) ?

Test: Signals & Systems- 1 - Question 10

Match the system properties P1, P2 with the discrete time system relations R1, R2, R3 and R4.

Properties

P1 : Stable

P2 : Casual

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