TABLE 6.2 Key Equations of Chapter 6 Equation Title Equation Number Equation Fourier transform of sampled signal (6.22) = Xs(w) x(nTs)e Frequency spectrum of cosine-modulated signal (6.25) X(w) [M(w wc) + M(w + wc)] 6.2. As illustrated in Figure P6.2, the periodic square wave is the input signal to an ideal low-pass filter with the frequency spectrum shown. Find the output signal if the input signal has a period of
TABLE 6.2 Key Equations of Chapter 6 Equation Title Equation Number Equation Fourier transform of sampled signal (6.22) = Xs(w) x(nTs)e Frequency spectrum of cosine-modulated signal (6.25) X(w) [M(w wc) + M(w + wc)] 6.2. As illustrated in Figure P6.2, the periodic square wave is the input signal to an ideal low-pass filter with the frequency spectrum shown. Find the output signal if the input signal has a period of
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![TABLE 6.2 Key Equations of Chapter 6
Equation Title
Equation Number
Equation
Fourier transform of sampled signal
(6.22)
=
Xs(w) x(nTs)e
Frequency spectrum of
cosine-modulated signal
(6.25)
X(w) [M(w wc) + M(w + wc)]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F47a2ecfa-9432-49fb-bf43-e148a3a9aff5%2F36a62b1f-e0a5-4313-958f-181aa2c4e41d%2Fzalo2l_processed.jpeg&w=3840&q=75)
Transcribed Image Text:TABLE 6.2 Key Equations of Chapter 6
Equation Title
Equation Number
Equation
Fourier transform of sampled signal
(6.22)
=
Xs(w) x(nTs)e
Frequency spectrum of
cosine-modulated signal
(6.25)
X(w) [M(w wc) + M(w + wc)]

Transcribed Image Text:6.2. As illustrated in Figure P6.2, the periodic square wave is the input signal to an ideal
low-pass filter with the frequency spectrum shown. Find the output signal if the input
signal has a period of
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