MODULATION AND DEMODULATION

Objective Questions

Short notes

Objective questions (Answers are given below)

  1. The main purpose of modulation is to
    (a) combine two waves of different fre- quencies
    (b) achieve wave-shaping of the carrier wave
    (c) transmit low-frequency information over
    long distances efficiently
    (d) produce sidebands.
  2. Demodulation
    (a) is performed at the transmitting station
    (b) removes side-bands
    (c) rectifies modulated signal
    (d) is opposite of modulation.
  3. In amplitude modulation
    (a) carrier frequency is changed
    (b) carrier amplitude is changed
    (c) three sidebands are produced
    (d) fidelity is improved.
  4. 100% modulation is produced in AM when carrier
    (a) frequency equals signal frequency
    (b) frequency exceeds signal frequency
    (c) amplitude equals signal amplitude
    (d) amplitude exceeds signal amplitude.
  5. For a given carrier wave, maximum undistorted
    power is transmitted when value of modulation
    is
    (a) 1 (b) 0.8
    (c) 0.5 (d) 0.
  6. In an AM wave with 100 percent modulation,
    each sideband carries — of the total transmitted
    power.
    (a) one-half (b) one-sixth
    (c) one-third (d) two-third
  7. Given a carrier frequency of 100 kHz and
    a modulating frequency of 5 kHz, the bandwidth
    of AM transmission is____ kHz.
    (a) 5 (b) 200
    (c) 10 (d) 20
  8. When modulation of an AM wave is decreased
    (a) percentage carrier power is decreased
    (b) percentage carrier power is increased
    (c) total transmitted power is increased
    (d) percentage sideband power is unaffe cted.
  9. In AM transmission, power content of the carrier
    is maximum when m equals
    (a) 0 (b) 1
    (c) 0.8 (d) 0.5.
  10. In AM transmission with m = 1, suppression
    of carrier cuts power dissipation by a factor of
    (a) 6 (b) 2
    (c) 3 (d) 4
  11. As compared to DSB-FC 100% modulated
    transmission, power saving in SSB-SC system
    is __ per cent.
    (a) 94.4 (b) 50
    (c) 100 (d) 83.3
  12. In an AM transmission with 100% modulation,
    66.7% of power is saved when _
    is/are suppressed.
    (a) carrier (b) carrier and USB
    (c) carrier and LSB (d) USB and LSB
  13. In an AM system, full information can be conveyed
    by transmitting only
    (a) the carrier (b) the upper sideband
    (c) the lower sideband (d) any one sideband.
  1. A 10 M Hz carrier of peak value 10 V is
    amplifide modulated by a 10 kHz signal of amplitude
    6 V. The amplitude of each side band
    frequency is
    (a)3 V (b) 4 V
    (c)5 V (d) 6 V
  1. The block diagram of an AM receiver is shown
    in Fig. 66.32. The missing block and its location
    are respectively
    (a) Band – pass filter at A
    (b) High-pass filter at B
    (c) Band – pass filter at C
    (d) Low-pass filter (audio amplifier) at D.
  2. In FM transmission, amplitude of the modulating
    signal determines
    (a) rate of frequency variations
    (b) amount of frequency shift
    (c) tonal balance of transmission
    (d) distance of broadcast.
  3. In FM, when frequency deviation is doubled
    (a) modulation is doubled
    (b) modulation is halved
    (c) carrier swing is halved
    (d) modulation index is decreased.
  4. In an FM broadcast in VHF band, channel width
    is __
    (a) 75 (b) 25
    (c) 88 (d) 200
  5. Modern FM receivers use de-emphasis circuit
    for
    (a) reducing high frequency noise
    (b) reducing the amplitude of high fre- quencies
    in the audio signal
    (c) increasing the amplitude of higher modulating
    frequencies
    (d) making demodulation easy
  6. One of the serious disadvantages of FM transmission
    is its
    (a) high static noise
    (b) limited line-of-sight range
    (c) expensive equipment
    (d) adjacent channel interference.
  7. In India, the maximum frequency deviation is
    commercial FM broadcasting signals is about,
    (a) 5 kHz (b) 15 kHz
    (c) 7.5 kHz (d) 200 kHz
  8. The correct sequence of subsystems in an FM
    receiver is
    (a) mixer, RF amplifier, limiter, IF amplifier,
    discriminator, audio amplifier
    (b) RF amplifier, mixer, IF amplifier, limiter,
    discriminator, audio amplifier
    (c) RF amplifier, mixer, limiter, discriminator,
    IF amplifier, audio amplifier
    (d) mixer, IF amplifier, limiter, audio amplifier,
    discriminator.
  1. (c) 2. (d) 3. (b) 4. (c) 5. (a) 6. (b) 7. (c) 8. (b) 9. (a) 10. (c) 11. (d) 12.(a) 13. (d) 14. (a) 15. (d) 16. (b) 17. (a) 18. (d) 19. (b) 20. (b) 21. (d) 22. (b)

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