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US Amateur Radio - Amateur Extra (Element 4, 2020-2024) Practice Test

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1. - E0A10

What toxic material may be present in some electronic components such as high voltage capacitors and transformers?

SelectAnswer
APolychlorinated biphenyls
BPolyethylene
CPolymorphic silicon
DPolytetrafluoroethylene

2. - E1A07

What is the maximum power permitted on the 2200 meter band?

SelectAnswer
A100 watts PEP
B50 watts PEP
C5 watts EIRP (Equivalent isotropic radiated power)
D1 watt EIRP (Equivalent isotropic radiated power)

3. - E1B11

What does PRB-1 require of regulations affecting amateur radio?

SelectAnswer
AReasonable accommodations of amateur radio must be made
BUse of wireless devices in a vehicle is exempt from regulation
CAmateur radio operations must be permitted in any private residence
DNo limitations may be placed on antenna size or placement

4. - E1C04

What is meant by IARP?

SelectAnswer
AAn international amateur radio permit that allows U.S. amateurs to operate in certain countries of the Americas
BAn indication of increased antenna reflected power
CThe internal amateur radio practices policy of the FCC
DA forecast of intermittent aurora radio propagation

5. - E1D02

Which of the following may transmit special codes intended to obscure the meaning of messages?

SelectAnswer
AAuxiliary relay links carrying repeater audio
BData containing personal information
CBinary control characters
DTelecommand signals from a space telecommand station

6. - E1E08

To which of the following examinees may a VE not administer an examination?

SelectAnswer
AAll these choices are correct
BFriends of the VE
CEmployees of the VE
DRelatives of the VE as listed in the FCC rules

7. - E1F02

What privileges are authorized in the U.S. to persons holding an amateur service license granted by the government of Canada?

SelectAnswer
AFull privileges, up to and including those of the Amateur Extra Class license, on the 80, 40, 20, 15, and 10 meter bands
BAll privileges of the Amateur Extra Class license
CNone, they must obtain a U.S. license
DThe operating terms and conditions of the Canadian amateur service license, not to exceed U.S. Amateur Extra Class license privileges

8. - E2A01

What is the direction of an ascending pass for an amateur satellite?

SelectAnswer
AFrom north to south
BFrom west to east
CFrom east to west
DFrom south to north

9. - E2B01

How many times per second is a new frame transmitted in a fast-scan (NTSC) television system?

SelectAnswer
A120
B60
C30
D90

10. - E2C08

Which of the following contacts may be confirmed through the U.S. QSL bureau system?

SelectAnswer
AContacts between a U.S. station and a non-U.S. station
BContacts using tactical call signs
CSpecial event contacts between stations in the U.S.
DRepeater contacts between U.S. club members

11. - E2D06

Which of the following describes a method of establishing EME contacts?

SelectAnswer
ATime synchronous transmissions alternately from each station
BJudging optimum transmission times by monitoring beacons reflected from the moon
CStoring and forwarding digital messages
DHigh-speed CW identification to avoid fading

12. - E2E07

Which of the following is a possible reason that attempts to initiate contact with a digital station on a clear frequency are unsuccessful?

SelectAnswer
AAll these choices are correct
BThe protocol version you are using is not supported by the digital station
CAnother station you are unable to hear is using the frequency
DYour transmit frequency is incorrect

13. - E3A04

What do Hepburn maps predict?

SelectAnswer
ALocations of auroral reflecting zones
BSporadic E propagation
CProbability of tropospheric propagation
DLikelihood of rain scatter along cold or warm fronts

14. - E3B02

What is the approximate maximum range for signals using transequatorial propagation?

SelectAnswer
A1000 miles
B5000 miles
C7500 miles
D2500 miles

15. - E3C10

What does the 304A solar parameter measure?

SelectAnswer
AThe solar wind velocity at 304 degrees from the solar equator, correlated to solar activity
BThe ratio of x-ray flux to radio flux, correlated to sunspot number
CThe solar emission at 304 GHz, correlated to x-ray flare levels
DUV emissions at 304 angstroms, correlated to the solar flux index

16. - E4A05

What is the purpose of the prescaler function on a frequency counter?

SelectAnswer
AIt multiplies a higher frequency signal so a low-frequency counter can display the operating frequency
BIt amplifies low-level signals for more accurate counting
CIt prevents oscillation in a low-frequency counter circuit
DIt divides a higher frequency signal so a low-frequency counter can display the input frequency

17. - E4B06

How much power is being absorbed by the load when a directional power meter connected between a transmitter and a terminating load reads 100 watts forward power and 25 watts reflected power?

SelectAnswer
A125 watts
B75 watts
C100 watts
D25 watts

18. - E4C10

What is an advantage of having a variety of receiver IF bandwidths from which to select?

SelectAnswer
AThe noise figure of the RF amplifier can be adjusted to match the modulation type, thus increasing receiver sensitivity
BReceiver power consumption can be reduced when wider bandwidth is not required
CMultiple frequencies can be received simultaneously if desired
DReceive bandwidth can be set to match the modulation bandwidth, maximizing signal-to-noise ratio and minimizing interference

19. - E4D04

Which of the following may reduce or eliminate intermodulation interference in a repeater caused by another transmitter operating in close proximity?

SelectAnswer
AA band-pass filter in the feed line between the transmitter and receiver
BA properly terminated circulator at the output of the repeater's transmitter
CUtilizing a Class D final amplifier
DUtilizing a Class C final amplifier

20. - E4E03

Which of the following signals might a receiver noise blanker be able to remove from desired signals?

SelectAnswer
ASignals that appear across a wide bandwidth
BSignals that are constant at all IF levels
CSignals that have a sharply peaked frequency distribution
DSignals that appear at one IF but not another

21. - E5A02

What is resonance in an LC or RLC circuit?

SelectAnswer
AThe frequency at which the reactive impedance equals the resistive impedance
BThe lowest frequency that will pass current
CThe highest frequency that will pass current
DThe frequency at which the capacitive reactance equals the inductive reactance

22. - E5B12

What is admittance?

SelectAnswer
AThe inverse of impedance
BThe inverse of Q factor
CThe turns ratio of a transformer
DThe term for the gain of a field effect transistor

23. - E5C12

Which point on Figure E5-1 best represents the impedance of a series circuit consisting of a 300-ohm resistor and a 19-picofarad capacitor at 21.200 MHz?

SelectAnswer
APoint 8
BPoint 7
CPoint 1
DPoint 3

24. - E5D04

Why are short connections used at microwave frequencies?

SelectAnswer
ATo increase compensating capacitance
BTo increase neutralizing resistance
CTo reduce phase shift along the connection
DTo reduce noise figure

25. - E6A05

How does DC input impedance at the gate of a field-effect transistor compare with the DC input impedance of a bipolar transistor?

SelectAnswer
AAn FET has lower input impedance
BAn FET has higher input impedance
CThey are both high impedance
DThey are both low impedance

26. - E6B04

What type of semiconductor device is designed for use as a voltage-controlled capacitor?

SelectAnswer
ASilicon-controlled rectifier
BTunnel diode
CVaractor diode
DZener diode

27. - E6C10

In Figure E6-3, what is the schematic symbol for a NOR gate?

SelectAnswer
A2
B3
C4
D1

28. - E6D10

What is a primary advantage of using a toroidal core instead of a solenoidal core in an inductor?

SelectAnswer
AToroidal cores have lower Q characteristics
BToroidal cores exhibit greater hysteresis
CToroidal cores confine most of the magnetic field within the core material
DToroidal cores make it easier to couple the magnetic energy into other components

29. - E6E05

Which of the following noise figure values is typical of a low-noise UHF preamplifier?

SelectAnswer
A-10 dB
B2 dB
C44 dBm
D-20 dBm

30. - E6F02

What happens to the conductivity of a photoconductive material when light shines on it?

SelectAnswer
AIt increases
BIt becomes unstable
CIt stays the same
DIt decreases

31. - E7A03

Which of the following can divide the frequency of a pulse train by 2?

SelectAnswer
AA multiplexer
BAn XOR gate
CA flip-flop
DAn OR gate

32. - E7B17

Why are odd-order rather than even-order intermodulation distortion products of concern in linear power amplifiers?

SelectAnswer
ABecause they are relatively close in frequency to the desired signal
BBecause they are relatively far in frequency from the desired signal
CBecause they maintain the sidebands, thus causing multiple duplicate signals
DBecause they invert the sidebands causing distortion

33. - E7C12

What is one advantage of a Pi-matching network over an L-matching network consisting of a single inductor and a single capacitor?

SelectAnswer
AL-networks cannot perform impedance transformation
BPi-networks provide balanced input and output
CPi-networks are more stable
DThe Q of Pi-networks can be controlled

34. - E7D15

What is the purpose of a step-start circuit in a high-voltage power supply?

SelectAnswer
ATo allow the filter capacitors to charge gradually
BTo allow for remote control of the power supply
CTo provide a dual-voltage output for reduced power applications
DTo compensate for variations of the incoming line voltage

35. - E7E07

What is meant by the term "baseband" in radio communications?

SelectAnswer
AThe lowest frequency band that the transmitter or receiver covers
BThe basic oscillator frequency in an FM transmitter that is multiplied to increase the deviation and carrier frequency
CThe frequency range occupied by a message signal prior to modulation
DThe unmodulated bandwidth of the transmitted signal

36. - E7F02

What kind of digital signal processing audio filter is used to remove unwanted noise from a received SSB signal?

SelectAnswer
AA crystal-lattice filter
BA phase-inverting filter
CAn adaptive filter
DA Hilbert-transform filter

37. - E7G08

How does the gain of an ideal operational amplifier vary with frequency?

SelectAnswer
AIt decreases linearly with increasing frequency
BIt increases linearly with increasing frequency
CIt does not vary with frequency
DIt decreases logarithmically with increasing frequency

38. - E7H15

Which of these functions can be performed by a phase-locked loop?

SelectAnswer
AWide-band AF and RF power amplification
BFrequency synthesis, FM demodulation
CComparison of two digital input signals, digital pulse counter
DPhotovoltaic conversion, optical coupling

39. - E8A06

What is the approximate ratio of PEP-to-average power in a typical single-sideband phone signal?

SelectAnswer
A2.5 to 1
B100 to 1
C25 to 1
D1 to 1

40. - E8B05

What is the deviation ratio of an FM-phone signal having a maximum frequency swing of plus-or-minus 5 kHz when the maximum modulation frequency is 3 kHz?

SelectAnswer
A60
B1.67
C0.167
D0.6

41. - E8C05

What is the approximate bandwidth of a 13-WPM International Morse Code transmission?

SelectAnswer
A104 Hz
B52 Hz
C26 Hz
D13 Hz

42. - E8D10

What are some of the differences between the Baudot digital code and ASCII?

SelectAnswer
ABaudot uses 7 data bits per character, ASCII uses 8; Baudot has no letters/figures shift code, ASCII uses 2 letters/figures shift codes
BBaudot uses 6 data bits per character, ASCII uses 7 or 8; Baudot has no letters/figures shift code, ASCII uses 2 letters/figures shift codes
CBaudot uses 5 data bits per character, ASCII uses 7 or 8; Baudot uses 2 characters as letters/figures shift codes, ASCII has no letters/figures shift code
DBaudot uses 4 data bits per character, ASCII uses 7 or 8; Baudot uses 1 character as a letters/figures shift code, ASCII has no letters/figures code

43. - E9A12

How much gain does an antenna have compared to a 1/2-wavelength dipole when it has 6 dB gain over an isotropic antenna?

SelectAnswer
A2.79 dB
B8.15 dB
C6.0 dB
D3.85 dB

44. - E9B09

What type of computer program technique is commonly used for modeling antennas?

SelectAnswer
ACalculus differentiation with respect to physical properties
BMutual impedance analysis
CMethod of Moments
DGraphical analysis

45. - E9C09

Which of the following describes a G5RV antenna?

SelectAnswer
AA wide band dipole using shorted coaxial cable for the radiating elements and fed with aÿ4:1 balun
BA phased array antenna consisting of multiple loops
CA multi-band trap antenna
DA multi-band dipole antenna fed with coax and a balun through a selected length of open wire transmission line

46. - E9D01

How much does the gain of an ideal parabolic dish antenna change when the operating frequency is doubled?

SelectAnswer
A6 dB
B2 dB
C3 dB
D4 dB

47. - E9E03

What is the name of the matching system that uses a section of transmission line connected in parallel with the feed line at or near the feed point?

SelectAnswer
AThe stub match
BThe gamma match
CThe delta match
DThe omega match

48. - E9F11

What impedance does a 1/8-wavelength transmission line present to a generator when the line is open at the far end?

SelectAnswer
AA capacitive reactance
BAn inductive reactance
CThe same as the characteristic impedance of the line
DInfinite

49. - E9G05

Which of the following is a common use for a Smith chart?

SelectAnswer
ADetermine the gain of an antenna given the physical and electrical parameters
BDetermine the length and position of an impedance matching stub
CDetermine the loss/100 feet of a transmission line, given the velocity factor and conductor materials
DDetermine the impedance of a transmission line, given the physical dimensions

50. - E9H06

What is the triangulation method of direction finding?

SelectAnswer
AA fixed receiving station plots three headings to the signal source
BThe geometric angles of sky waves from the source are used to determine its position
CAntenna headings from several different receiving locations are used to locate the signal source
DA fixed receiving station uses three different antennas to plot the location of the signal source

Figure E5-1

Figure E6-3