
Electronic Communication Systems 2nd Edition by Roy Blake
Edition 2ISBN: 978-0766826847
Electronic Communication Systems 2nd Edition by Roy Blake
Edition 2ISBN: 978-0766826847 Exercise 39
An AM signal has the equation:
v ( t ) = [15 + 4 sin (44 × 10 3 t ] sin (46.5 × 10 6 t ) V
(a) Find the carrier frequency.
(b) Find the frequency of the modulating signal.
(c) Find the value of m.
(d) Find the peak voltage of the unmodulated carrier.
(e) Sketch the signal in the time domain, showing voltage and time scales.
Figure 3.18
![An AM signal has the equation: v ( t ) = [15 + 4 sin (44 × 10 3 t ] sin (46.5 × 10 6 t ) V (a) Find the carrier frequency. (b) Find the frequency of the modulating signal. (c) Find the value of m. (d) Find the peak voltage of the unmodulated carrier. (e) Sketch the signal in the time domain, showing voltage and time scales. Figure 3.18](https://d2lvgg3v3hfg70.cloudfront.net/SM4978/11eb7f4e_7e35_2261_afa2_8f759e5b04b8_SM4978_11.jpg)
v ( t ) = [15 + 4 sin (44 × 10 3 t ] sin (46.5 × 10 6 t ) V
(a) Find the carrier frequency.
(b) Find the frequency of the modulating signal.
(c) Find the value of m.
(d) Find the peak voltage of the unmodulated carrier.
(e) Sketch the signal in the time domain, showing voltage and time scales.
Figure 3.18
![An AM signal has the equation: v ( t ) = [15 + 4 sin (44 × 10 3 t ] sin (46.5 × 10 6 t ) V (a) Find the carrier frequency. (b) Find the frequency of the modulating signal. (c) Find the value of m. (d) Find the peak voltage of the unmodulated carrier. (e) Sketch the signal in the time domain, showing voltage and time scales. Figure 3.18](https://d2lvgg3v3hfg70.cloudfront.net/SM4978/11eb7f4e_7e35_2261_afa2_8f759e5b04b8_SM4978_11.jpg)
Explanation
Write the general expression of an AM si...
Electronic Communication Systems 2nd Edition by Roy Blake
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