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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
APolyethylene
BPolytetrafluoroethylene
CPolymorphic silicon
DPolychlorinated biphenyls

2. - E1A07

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

SelectAnswer
A5 watts EIRP (Equivalent isotropic radiated power)
B1 watt EIRP (Equivalent isotropic radiated power)
C100 watts PEP
D50 watts PEP

3. - E1B08

What limitations may the FCC place on an amateur station if its signal causes interference to domestic broadcast reception, assuming that the receivers involved are of good engineering design?

SelectAnswer
AThe amateur station must cease operation on all frequencies above 30 MHz
BThe amateur station must cease operation on all frequencies below 30 MHz
CThe amateur station must avoid transmitting during certain hours on frequencies that cause the interference
DThe amateur station must cease operation

4. - E1C07

At what level below a signal's mean power level is its bandwidth determined according to FCC rules?

SelectAnswer
A23 dB
B26 dB
C3 dB
D6 dB

5. - E1D10

Which amateur stations are eligible to be telecommand stations of space stations (subject to the privileges of the class of operator license held by the control operator of the station)?

SelectAnswer
AAny amateur station so designated by the ITU
BAll these choices are correct
CAny amateur station designated by NASA
DAny amateur station so designated by the space station licensee

6. - E1E06

Who is responsible for the proper conduct and necessary supervision during an amateur operator license examination session?

SelectAnswer
AEach administering VE
BThe VEC coordinating the session
CThe FCC
DThe VE session manager

7. - E1F08

Which of the following types of amateur station communications are prohibited?

SelectAnswer
ACommunications transmitted for hire or material compensation, except as otherwise provided in the rules
BCommunications in a language other than English
CCommunications that have political content, except as allowed by the Fairness Doctrine
DCommunications that have religious content

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
B90
C30
D60

10. - E2C08

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

SelectAnswer
ASpecial event contacts between stations in the U.S.
BRepeater contacts between U.S. club members
CContacts between a U.S. station and a non-U.S. station
DContacts using tactical call signs

11. - E2D03

Which of the following digital modes is especially useful for EME communications?

SelectAnswer
AJT65
BOlivia
CPACTOR III
DMSK144

12. - E2E03

How is the timing of FT4 contacts organized?

SelectAnswer
AIt depends on the lunar phase
BStations take turns on alternate days
CBy exchanging ACK/NAK packets
DAlternating transmissions at 7.5 second intervals

13. - E3A12

What is the cause of auroral activity?

SelectAnswer
AThe interaction in the F2 layer between the solar wind and the Van Allen belt
BThe interaction in the E layer of charged particles from the Sun with the Earth's magnetic field
CMeteor showers concentrated in the extreme northern and southern latitudes
DAn extreme low-pressure area in the polar regions

14. - E3B12

What is the primary characteristic of chordal hop propagation?

SelectAnswer
APropagation away from the great circle bearing between stations
BSignals reflected back toward the transmitting station
CSuccessive ionospheric refractions without an intermediate reflection from the ground
DPropagation across the geomagnetic equator

15. - E3C04

What does the value of Bz (B sub Z) represent?

SelectAnswer
AGeomagnetic field stability
BDuration of long-delayed echoes
CDirection and strength of the interplanetary magnetic field
DCritical frequency for vertical transmissions

16. - E4A04

How is the compensation of an oscilloscope probe typically adjusted?

SelectAnswer
AA square wave is displayed and the probe is adjusted until the horizontal portions of the displayed wave are as nearly flat as possible
BA high frequency sine wave is displayed and the probe is adjusted for maximum amplitude
CA DC voltage standard is displayed and the probe is adjusted until the displayed voltage is accurate
DA frequency standard is displayed and the probe is adjusted until the deflection time is accurate

17. - E4B10

Which of the following methods measures intermodulation distortion in an SSB transmitter?

SelectAnswer
AModulate the transmitter using two RF signals having harmonically related frequencies and observe the RF output with a logic analyzer
BModulate the transmitter using two AF signals having non-harmonically related frequencies and observe the RF output with a spectrum analyzer
CModulate the transmitter using two AF signals having harmonically related frequencies and observe the RF output with a peak reading wattmeter
DModulate the transmitter using two RF signals having non-harmonically related frequencies and observe the RF output with a spectrum analyzer

18. - E4C02

Which of the following receiver circuits can be effective in eliminating interference from strong out-of-band signals?

SelectAnswer
AA front-end filter or pre-selector
BA properly adjusted product detector
CA notch filter
DA narrow IF filter

19. - E4D12

What is the term for the reduction in receiver sensitivity caused by a strong signal near the received frequency?

SelectAnswer
ASquelch gain rollback
BDesensitization
CQuieting
DCross-modulation interference

20. - E4E06

What is one type of electrical interference that might be caused by a nearby personal computer?

SelectAnswer
AA clicking noise at intervals of a few seconds
BThe appearance of unstable modulated or unmodulated signals at specific frequencies
CA whining type noise that continually pulses off and on
DA loud AC hum in the audio output of your station receiver

21. - E5A10

How is the Q of an RLC series resonant circuit calculated?

SelectAnswer
AReactance of the inductance multiplied by the reactance of the capacitance
BReactance of either the inductance or capacitance divided by the resistance
CResistance divided by the reactance of either the inductance or capacitance
DReactance of either the inductance or capacitance multiplied by the resistance

22. - E5B04

What is the time constant of a circuit having two 220-microfarad capacitors and two 1-megohm resistors, all in parallel?

SelectAnswer
A55 seconds
B220 seconds
C110 seconds
D440 seconds

23. - E5C03

Which of the following represents an inductive reactance in polar coordinates?

SelectAnswer
AA positive magnitude
BA negative magnitude
CA positive phase angle
DA negative phase angle

24. - E5D03

What is microstrip?

SelectAnswer
ALightweight transmission line made of common zip cord
BShort lengths of coax mounted on printed circuit boards to minimize time delay between microwave circuits
CMiniature coax used for low power applications
DPrecision printed circuit conductors above a ground plane that provide constant impedance interconnects at microwave frequencies

25. - E6A07

Which of the following indicates that a silicon NPN junction transistor is biased on?

SelectAnswer
ABase-to-emitter voltage of approximately 6 to 7 volts
BBase-to-emitter voltage of approximately 0.6 to 0.7 volts
CBase-to-emitter resistance of approximately 0.6 to 0.7 ohms
DBase-to-emitter resistance of approximately 6 to 7 ohms

26. - E6B09

What is a common use for point-contact diodes?

SelectAnswer
AAs an RF detector
BAs a constant current source
CAs a high-voltage rectifier
DAs a constant voltage source

27. - E6C10

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

SelectAnswer
A3
B2
C1
D4

28. - E6D12

What is inductor saturation?

SelectAnswer
AThe inductor windings are over-coupled
BThe ability of the inductor's core to store magnetic energy has been exceeded
CAdjacent inductors become over-coupled
DThe inductor's voltage rating is exceeded causing a flashover

29. - E6E01

Why is gallium arsenide (GaAs) useful for semiconductor devices operating at UHF and higher frequencies?

SelectAnswer
AHigher noise figures
BHigher electron mobility
CLower transconductance
DLower junction voltage drop

30. - E6F07

What is a solid-state relay?

SelectAnswer
AA semiconductor passive delay line
BA mechanical relay that latches in the on or off state each time it is pulsed
CA relay using transistors to drive the relay coil
DA device that uses semiconductors to implement the functions of an electromechanical relay

31. - E7A06

What is a characteristic of a monostable multivibrator?

SelectAnswer
AIt maintains a constant output voltage, regardless of variations in the input voltage
BIt stores one bit of data in either a 0 or 1 state
CIt produces a continuous square wave oscillating between 1 and 0
DIt switches momentarily to the opposite binary state and then returns to its original state after a set time

32. - E7B08

How can an RF power amplifier be neutralized?

SelectAnswer
ABy reducing the driving power
BBy increasing the driving power
CBy feeding a 180-degree out-of-phase portion of the output back to the input
DBy feeding an in-phase component of the output back to the input

33. - E7C04

How does an impedance-matching circuit transform a complex impedance to a resistive impedance?

SelectAnswer
AIt cancels the reactive part of the impedance and changes the resistive part to a desired value
BReactive currents are dissipated in matched resistances
CIt introduces negative resistance to cancel the resistive part of impedance
DIt introduces transconductance to cancel the reactive part of impedance

34. - E7D08

What type of circuit is shown in Figure E7-2?

SelectAnswer
AGrounded emitter amplifier
BMonostable multivibrator
CSwitching voltage regulator
DLinear voltage regulator

35. - E7E02

What is the function of a reactance modulator?

SelectAnswer
ATo produce PM signals by using an electrically variable resistance
BTo produce AM signals by using an electrically variable inductance or capacitance
CTo produce PM or FM signals by using an electrically variable inductance or capacitance
DTo produce AM signals by using an electrically variable resistance

36. - E7F11

What sets the minimum detectable signal level for a direct-sampling SDR receiver in the absence of atmospheric or thermal noise?

SelectAnswer
AMissing codes and jitter
BData storage transfer rate
CReference voltage level and sample width in bits
DSample clock phase noise

37. - E7G09

What will be the output voltage of the circuit shown in Figure E7-3 if R1 is 1000 ohms, RF is 10,000 ohms, and 0.23 volts DC is applied to the input?

SelectAnswer
A-0.23 volts
B-2.3 volts
C0.23 volts
D2.3 volts

38. - E7H07

How can an oscillator's microphonic responses be reduced?

SelectAnswer
AReduce noise on the oscillator's power supply
BMechanically isolate the oscillator circuitry from its enclosure
CIncrease the bias voltage
DUse NP0 capacitors

39. - E8A07

What determines the PEP-to-average power ratio of a single-sideband phone signal?

SelectAnswer
ASpeech characteristics
BAmplifier gain
CThe degree of carrier suppression
DThe frequency of the modulating signal

40. - E8B11

What is digital time division multiplexing?

SelectAnswer
ATwo or more data streams are assigned to discrete sub-carriers on an FM transmitter
BTwo or more data streams share the same channel by transmitting time of transmission as the sub-carrier
CTwo or more signals are quadrature modulated to increase bandwidth efficiency
DTwo or more signals are arranged to share discrete time slots of a data transmission

41. - E8C05

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

SelectAnswer
A104 Hz
B26 Hz
C52 Hz
D13 Hz

42. - E8D05

What is the most common method of reducing key clicks?

SelectAnswer
AHigh-pass filters at the transmitter output
BLow-pass filters at the transmitter output
CIncrease keying waveform rise and fall times
DReduce keying waveform rise and fall times

43. - E9A07

What is the effective isotropic radiated power of a repeater station with 200 watts transmitter power output, 2 dB feed line loss, 2.8 dB duplexer loss, 1.2 dB circulator loss, and 7 dBi antenna gain?

SelectAnswer
A252 watts
B63.2 watts
C159 watts
D632 watts

44. - E9B05

What type of antenna pattern is shown in Figure E9-2?

SelectAnswer
APolarization
BAzimuth
CElevation
DRadiation resistance

45. - E9C09

Which of the following describes a G5RV antenna?

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

46. - E9D06

What happens to the SWR bandwidth when one or more loading coils are used to resonate an electrically short antenna?

SelectAnswer
AIt is increased
BIt is decreased
CIt is unchanged if the loading coil is located at the feed point
DIt is unchanged if the loading coil is located at a voltage maximum point

47. - E9E01

What system matches a higher-impedance transmission line to a lower-impedance antenna by connecting the line to the driven element in two places spaced a fraction of a wavelength each side of element center?

SelectAnswer
AThe gamma matching system
BThe omega matching system
CThe stub matching system
DThe delta matching system

48. - E9F09

What is the approximate physical length of a foam polyethylene dielectric coaxial transmission line that is electrically 1/4 wavelength long at 7.2 MHz?

SelectAnswer
A8.3 meters
B6.9 meters
C10.4 meters
D5.2 meters

49. - E9G04

What are the two families of circles and arcs that make up a Smith chart?

SelectAnswer
AVoltage and impedance
BResistance and reactance
CResistance and voltage
DReactance and voltage

50. - E9H11

What feature of a cardioid pattern antenna makes it useful for direction finding?

SelectAnswer
AHigh radiation angle
BA very sharp single null
CA very sharp peak
DBroadband response

Figure E6-3

Figure E7-2

Figure E7-3

Figure E9-2