$A$ signal of frequency $20 \, kHz$ and peak voltage $5 \, V$ is used to modulate a carrier wave of frequency $1.2 \, MHz$ and peak voltage $25 \, V$. Choose the correct statement.

  • A
    Modulation index $= 5$,side frequency bands are at $1400 \, kHz$ and $1000 \, kHz$
  • B
    Modulation index $= 5$,side frequency bands are at $21.2 \, kHz$ and $18.8 \, kHz$
  • C
    Modulation index $= 0.8$,side frequency bands are at $1180 \, kHz$ and $1220 \, kHz$
  • D
    Modulation index $= 0.2$,side frequency bands are at $1220 \, kHz$ and $1180 \, kHz$

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Similar Questions

Which of the following options is $NOT$ correct? We need modulation for:

$A$ message signal is used to modulate a carrier signal of frequency $5 MHz$ and peak voltage of $40 V$. In the process,two side-bands are produced separated by $40 kHz$. If the modulation index is $0.75$,then the peak voltage and frequency of the message signal,respectively,are:

Match List $I$ with List $II$ :
List $I$List $II$
$A$. Attenuation$I$. Combination of a receiver and transmitter.
$B$. Transducer$II$. Process of retrieval of information from the carrier wave at receiver.
$C$. Demodulation$III$. Converts one form of energy into another.
$D$. Repeater$IV$. Loss of strength of a signal while propagating through a medium.

Choose the correct answer from the options given below:

Which of the following statements is $NOT$ true?

$A$ message signal of frequency $f_m$ is used to modulate a carrier of frequency $f_c$. If the sidebands are $f_1$ and $f_2$,then the ratio $\frac{f_c}{f_m}$ is:

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