$A$ person tries to broadcast with the same antenna both the signals at $10^7 \,Hz$ and $10^6 \,Hz$. If the receiver at some distance has to receive an equal strength for both the frequencies, then the broadcaster has to approximately increase the signal strength at $10^6 \,Hz$ to $10^7 \,Hz$ by

  • A
    $1/10$ times
  • B
    $10$ times
  • C
    $100$ times
  • D
    $1/100$ times

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$A$ carrier wave $v_{c}(t) = 160 \sin(2 \pi \times 10^{6} t) \text{ V}$ is made to vary between $V_{\max} = 200 \text{ V}$ and $V_{\min} = 120 \text{ V}$ by a message signal $v_{m}(t) = A_{m} \sin(2 \pi \times 10^{3} t) \text{ V}$. The peak voltage $A_{m}$ of the modulating signal is ..... .

Given below in the left column are different modes of communication using the kinds of waves given in the right column.
$A$. Optical Fiber Communication$P$. Ultrasound
$B$. Radar$Q$. Infrared Light
$C$. Sonar$R$. Microwaves
$D$. Mobile Phones$S$. Radio Waves

From the options given below, find the most appropriate match between entries in the left and the right column.

The antenna current of an $AM$ transmitter is $8 \text{ A}$ when only the carrier is sent,but it increases to $8.96 \text{ A}$ when the carrier is sinusoidally modulated. The percentage modulation is.......$\%$

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Range of frequencies allotted for commercial $FM$ radio broadcast is

To double the covering range of a $TV$ transmission tower,its height should be multiplied by

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