Practice the published Technician licence exam questions

These are the exam body’s own published questions, reproduced word for word, with its own answer key. Nothing here was written by us and nothing was taken from a dump — the publisher put them out itself, which is why we can show them at all.

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SECTIONS: T1 (68) · T2 (37) · T3 (35) · T4 (23) · T5 (50) · T6 (46) · T7 (44) · T8 (47) · T9 (23) · T0 (36)

T3 — 35 of 409 published

T3A01

Why do VHF signal strengths sometimes vary greatly when the antenna is moved only a few feet?

  1. A. The signal path encounters different concentrations of water vapor
  2. B. VHF ionospheric propagation is very sensitive to path length
  3. C. Multipath propagation cancels or reinforces signals
  4. D. The Doppler effect causes slight frequency shifts which result in changes in signal strength
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C. Multipath propagation cancels or reinforces signals

T3A02

How does vegetation affect UHF and microwave signals?

  1. A. Causes knife-edge diffraction, distorting voice peaks
  2. B. Absorbs signals, leading to poor reception of weak signals
  3. C. Amplifies signals, improving reception of weak signals
  4. D. Has no effect
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B. Absorbs signals, leading to poor reception of weak signals

T3A03

What antenna polarization is normally used for long-distance CW and SSB contacts on the VHF and UHF bands?

  1. A. Right-hand circular
  2. B. Left-hand circular
  3. C. Horizontal
  4. D. Vertical
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C. Horizontal

T3A04

What is the effect of antenna cross-polarization over a line-of-sight VHF or UHF path?

  1. A. Modulation sidebands might become inverted
  2. B. Received signal strength is reduced
  3. C. Signals have an echo effect
  4. D. Nothing significant will happen
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B. Received signal strength is reduced

T3A05

When using a directional antenna, how might your station be able to communicate with a distant repeater if buildings or obstructions are blocking the direct line of sight path?

  1. A. Change from vertical to horizontal polarization
  2. B. Try to find a path that reflects signals to the repeater
  3. C. Try the long path
  4. D. Increase the antenna SWR
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B. Try to find a path that reflects signals to the repeater

T3A06

What is the meaning of the term “picket fencing”?

  1. A. Alternating transmissions during a net operation
  2. B. Rapid flutter on mobile signals due to multipath propagation
  3. C. A type of ground system used with vertical antennas
  4. D. Interference from cable TV in the form of carriers at fixed intervals across the band
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B. Rapid flutter on mobile signals due to multipath propagation

T3A07

What weather condition might decrease range at microwave frequencies?

  1. A. High winds
  2. B. Low barometric pressure
  3. C. Precipitation
  4. D. Colder temperatures
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C. Precipitation

T3A08

What is a likely cause of irregular fading of signals propagated by the ionosphere?

  1. A. Frequency shift due to Faraday rotation
  2. B. Interference from thunderstorms
  3. C. Intermodulation distortion
  4. D. Random combining of signals arriving via different paths
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D. Random combining of signals arriving via different paths

T3A09

Which of the following results from the fact that signals propagated by the ionosphere are elliptically polarized?

  1. A. Digital modes are unusable
  2. B. Either vertically or horizontally polarized antennas may be used for transmission or reception
  3. C. FM voice is unusable
  4. D. Both the transmitting and receiving antennas must be of the same polarization
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B. Either vertically or horizontally polarized antennas may be used for transmission or reception

T3A10

What effect does multi-path propagation have on data transmissions?

  1. A. Transmission rates must be increased by a factor equal to the number of separate paths observed
  2. B. Transmission rates must be decreased by a factor equal to the number of separate paths observed
  3. C. No significant changes will occur if the signals are transmitted using FM
  4. D. Error rates are likely to increase
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D. Error rates are likely to increase

T3A11

Which region of the atmosphere can reflect HF radio waves?

  1. A. The stratosphere
  2. B. The troposphere
  3. C. The ionosphere
  4. D. The electrosphere
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C. The ionosphere

T3A12

What effect does fog or rain have on 10-meter and 6-meter band signals?

  1. A. Absorption
  2. B. Little effect
  3. C. Deflection
  4. D. Increased range
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B. Little effect

T3B01

What is the relationship between the electric and magnetic fields of an electromagnetic wave?

  1. A. They travel at different speeds
  2. B. They are in parallel
  3. C. They revolve in opposite directions
  4. D. They are at right angles
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D. They are at right angles

T3B02

What property of a radio wave defines its polarization?

  1. A. The orientation of the electric field
  2. B. The orientation of the magnetic field
  3. C. The ratio of the energy in the magnetic field to the energy in the electric field
  4. D. The ratio of the velocity to the wavelength
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A. The orientation of the electric field

T3B03

What are the two components of a radio wave?

  1. A. Impedance and reactance
  2. B. Voltage and current
  3. C. Electric and magnetic fields
  4. D. Ionizing and non-ionizing radiation
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C. Electric and magnetic fields

T3B04

What is the velocity of a radio wave traveling through free space?

  1. A. Speed of light
  2. B. Speed of sound
  3. C. 0.86 times the speed of light
  4. D. 1.86 times the speed of sound
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A. Speed of light

T3B05

What is the relationship between wavelength and frequency?

  1. A. Wavelength gets longer as frequency increases
  2. B. Wavelength gets shorter as frequency increases
  3. C. Wavelength is constant at all frequencies
  4. D. Wavelength and frequency increase as path length increases
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B. Wavelength gets shorter as frequency increases

T3B06

What is the formula for converting frequency to approximate wavelength in meters?

  1. A. Wavelength in meters equals frequency in hertz multiplied by 300
  2. B. Wavelength in meters equals frequency in hertz divided by 300
  3. C. Wavelength in meters equals frequency in megahertz divided by 300
  4. D. Wavelength in meters equals 300 divided by frequency in megahertz
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D. Wavelength in meters equals 300 divided by frequency in megahertz

T3B07

In addition to frequency, which of the following is used to identify amateur radio bands?

  1. A. The approximate wavelength in meters
  2. B. Traditional letter/number designators
  3. C. Channel numbers
  4. D. All these choices are correct
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A. The approximate wavelength in meters

T3B08

What frequency range is referred to as VHF?

  1. A. 30 kHz to 300 kHz
  2. B. 30 MHz to 300 MHz
  3. C. 300 kHz to 3000 kHz
  4. D. 300 MHz to 3000 MHz
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B. 30 MHz to 300 MHz

T3B09

What frequency range is referred to as UHF?

  1. A. 30 to 300 kHz
  2. B. 30 to 300 MHz
  3. C. 300 to 3000 kHz
  4. D. 300 to 3000 MHz
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D. 300 to 3000 MHz

T3B10

What frequency range is referred to as HF?

  1. A. 300 to 3000 MHz
  2. B. 30 to 300 MHz
  3. C. 3 to 30 MHz
  4. D. 300 to 3000 kHz
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C. 3 to 30 MHz

T3B11

What is the approximate velocity of a radio wave in free space?

  1. A. 150,000,000 meters per second
  2. B. 300,000,000 meters per second
  3. C. 300,000,000 miles per hour
  4. D. 150,000,000 miles per hour
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B. 300,000,000 meters per second

T3B12

Which of these frequencies travels at the highest velocity in free space?

  1. A. Microwaves
  2. B. UHF
  3. C. VHF
  4. D. All radio frequencies travel at the same velocity
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D. All radio frequencies travel at the same velocity

T3C01

Why are simplex UHF signals rarely heard beyond their radio horizon?

  1. A. They are too weak to go very far
  2. B. FCC regulations prohibit them from going more than 50 miles
  3. C. UHF signals are usually not propagated by the ionosphere
  4. D. UHF signals are absorbed by the ionospheric D region
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C. UHF signals are usually not propagated by the ionosphere

T3C02

What is a characteristic of HF communication compared with communications on VHF and higher frequencies?

  1. A. HF antennas are generally smaller
  2. B. HF accommodates wider bandwidth signals
  3. C. Long-distance ionospheric propagation is far more common on HF
  4. D. There is less atmospheric interference (static) on HF
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C. Long-distance ionospheric propagation is far more common on HF

T3C03

What is one characteristic of VHF signals received via auroral backscatter?

  1. A. They are often received from 10,000 miles or more
  2. B. They are distorted, with a characteristic raspy sound
  3. C. They occur only during winter nighttime hours
  4. D. They are generally strongest when your antenna is aimed west
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B. They are distorted, with a characteristic raspy sound

T3C04

Which of the following types of propagation is most commonly associated with occasional strong signals on the 10-, 6-, and 2-meter bands from beyond the radio horizon?

  1. A. Backscatter
  2. B. Sporadic E
  3. C. D region absorption
  4. D. Gray-line propagation
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B. Sporadic E

T3C05

Which of the following effects may allow radio signals to travel beyond obstructions between the transmitting and receiving stations?

  1. A. Knife-edge diffraction
  2. B. Faraday rotation
  3. C. Quantum tunneling
  4. D. Doppler shift
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A. Knife-edge diffraction

T3C06

What type of propagation is responsible for allowing over-the-horizon VHF and UHF communications to ranges of approximately 300 miles on a regular basis?

  1. A. Tropospheric ducting
  2. B. D region refraction
  3. C. F2 region refraction
  4. D. Faraday rotation
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A. Tropospheric ducting

T3C07

What band is best suited for communicating via meteor scatter?

  1. A. 33 centimeters
  2. B. 6 meters
  3. C. 2 meters
  4. D. 70 centimeters
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B. 6 meters

T3C08

What causes tropospheric ducting?

  1. A. Discharges of lightning during electrical storms
  2. B. Sunspots and solar flares
  3. C. Updrafts from hurricanes and tornadoes
  4. D. Temperature inversions in the atmosphere
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D. Temperature inversions in the atmosphere

T3C09

What is generally the best time for long-distance 10-meter band propagation via the F region?

  1. A. From dawn to shortly after sunset during periods of high sunspot activity
  2. B. From shortly after sunset to dawn during periods of high sunspot activity
  3. C. From dawn to shortly after sunset during periods of low sunspot activity
  4. D. From shortly after sunset to dawn during periods of low sunspot activity
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A. From dawn to shortly after sunset during periods of high sunspot activity

T3C10

Which of the following bands may provide long-distance communications via the ionosphere’s F region during the peak of the sunspot cycle?

  1. A. 6 and 10 meters
  2. B. 23 centimeters
  3. C. 70 centimeters and 1.25 meters
  4. D. All these choices are correct
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A. 6 and 10 meters

T3C11

Why is the radio horizon for VHF and UHF signals more distant than the visual horizon?

  1. A. Radio signals move somewhat faster than the speed of light
  2. B. Radio waves are not blocked by dust particles
  3. C. The atmosphere refracts radio waves slightly
  4. D. Radio waves are blocked by dust particles
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C. The atmosphere refracts radio waves slightly

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