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(Solved): 11. An FM signal is given on the oscilloscope below seen across a \( 50 \Omega \) load. Assuming th ...




11. An FM signal is given on the oscilloscope below seen across a \( 50 \Omega \) load. Assuming this is being driven bv an i
11. An FM signal is given on the oscilloscope below seen across a \( 50 \Omega \) load. Assuming this is being driven bv an intelligence signal of \( 2 \mathrm{kHz} \) at 1.061V RMS. 100V/Div Vertical, 10ns/Div Horizontal a. Formulate the FM general equation for this signal. b. Calculate the power in the carrier. c. Calculate the power in the \( 2^{\text {nd }} \) set of sidebands. d. Using Bessel, calculate the bandwidth of this broadcast. e. Total power transmitted.


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The inference from the given Frequency Modulation signal is The amplitude of the carrier, Ac = 4 vertical divisions x each division voltage = 4 x 100 = 400 votls. The horizontal time division = 10 ns, The lower side instantaneous frequency, f(low) =
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