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A modulated signal Cm(t) has the form Cm( t ) = 30 sin 300πt + 10 (cos 200πt −cos 400πt). The carrier frequency fc, the modulating frequency (message frequency) fω, and the modulation index µ are respectively given by :a)fc=200 Hz ; fω=50 Hz ;µ = 1/2b)fc=150 Hz ; fω=50 Hz ; µ = 2/3c)fc=150 Hz ; fω=30 Hz ;µ = 1/3d)fc=200 Hz ; fω=30 Hz ; µ = 1/2Correct answer is option 'B'. Can you explain this answer? for JEE 2025 is part of JEE preparation. The Question and answers have been prepared
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the JEE exam syllabus. Information about A modulated signal Cm(t) has the form Cm( t ) = 30 sin 300πt + 10 (cos 200πt −cos 400πt). The carrier frequency fc, the modulating frequency (message frequency) fω, and the modulation index µ are respectively given by :a)fc=200 Hz ; fω=50 Hz ;µ = 1/2b)fc=150 Hz ; fω=50 Hz ; µ = 2/3c)fc=150 Hz ; fω=30 Hz ;µ = 1/3d)fc=200 Hz ; fω=30 Hz ; µ = 1/2Correct answer is option 'B'. Can you explain this answer? covers all topics & solutions for JEE 2025 Exam.
Find important definitions, questions, meanings, examples, exercises and tests below for A modulated signal Cm(t) has the form Cm( t ) = 30 sin 300πt + 10 (cos 200πt −cos 400πt). The carrier frequency fc, the modulating frequency (message frequency) fω, and the modulation index µ are respectively given by :a)fc=200 Hz ; fω=50 Hz ;µ = 1/2b)fc=150 Hz ; fω=50 Hz ; µ = 2/3c)fc=150 Hz ; fω=30 Hz ;µ = 1/3d)fc=200 Hz ; fω=30 Hz ; µ = 1/2Correct answer is option 'B'. Can you explain this answer?.
Solutions for A modulated signal Cm(t) has the form Cm( t ) = 30 sin 300πt + 10 (cos 200πt −cos 400πt). The carrier frequency fc, the modulating frequency (message frequency) fω, and the modulation index µ are respectively given by :a)fc=200 Hz ; fω=50 Hz ;µ = 1/2b)fc=150 Hz ; fω=50 Hz ; µ = 2/3c)fc=150 Hz ; fω=30 Hz ;µ = 1/3d)fc=200 Hz ; fω=30 Hz ; µ = 1/2Correct answer is option 'B'. Can you explain this answer? in English & in Hindi are available as part of our courses for JEE.
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Here you can find the meaning of A modulated signal Cm(t) has the form Cm( t ) = 30 sin 300πt + 10 (cos 200πt −cos 400πt). The carrier frequency fc, the modulating frequency (message frequency) fω, and the modulation index µ are respectively given by :a)fc=200 Hz ; fω=50 Hz ;µ = 1/2b)fc=150 Hz ; fω=50 Hz ; µ = 2/3c)fc=150 Hz ; fω=30 Hz ;µ = 1/3d)fc=200 Hz ; fω=30 Hz ; µ = 1/2Correct answer is option 'B'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of
A modulated signal Cm(t) has the form Cm( t ) = 30 sin 300πt + 10 (cos 200πt −cos 400πt). The carrier frequency fc, the modulating frequency (message frequency) fω, and the modulation index µ are respectively given by :a)fc=200 Hz ; fω=50 Hz ;µ = 1/2b)fc=150 Hz ; fω=50 Hz ; µ = 2/3c)fc=150 Hz ; fω=30 Hz ;µ = 1/3d)fc=200 Hz ; fω=30 Hz ; µ = 1/2Correct answer is option 'B'. Can you explain this answer?, a detailed solution for A modulated signal Cm(t) has the form Cm( t ) = 30 sin 300πt + 10 (cos 200πt −cos 400πt). The carrier frequency fc, the modulating frequency (message frequency) fω, and the modulation index µ are respectively given by :a)fc=200 Hz ; fω=50 Hz ;µ = 1/2b)fc=150 Hz ; fω=50 Hz ; µ = 2/3c)fc=150 Hz ; fω=30 Hz ;µ = 1/3d)fc=200 Hz ; fω=30 Hz ; µ = 1/2Correct answer is option 'B'. Can you explain this answer? has been provided alongside types of A modulated signal Cm(t) has the form Cm( t ) = 30 sin 300πt + 10 (cos 200πt −cos 400πt). The carrier frequency fc, the modulating frequency (message frequency) fω, and the modulation index µ are respectively given by :a)fc=200 Hz ; fω=50 Hz ;µ = 1/2b)fc=150 Hz ; fω=50 Hz ; µ = 2/3c)fc=150 Hz ; fω=30 Hz ;µ = 1/3d)fc=200 Hz ; fω=30 Hz ; µ = 1/2Correct answer is option 'B'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice A modulated signal Cm(t) has the form Cm( t ) = 30 sin 300πt + 10 (cos 200πt −cos 400πt). The carrier frequency fc, the modulating frequency (message frequency) fω, and the modulation index µ are respectively given by :a)fc=200 Hz ; fω=50 Hz ;µ = 1/2b)fc=150 Hz ; fω=50 Hz ; µ = 2/3c)fc=150 Hz ; fω=30 Hz ;µ = 1/3d)fc=200 Hz ; fω=30 Hz ; µ = 1/2Correct answer is option 'B'. Can you explain this answer? tests, examples and also practice JEE tests.