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

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1. - E0A07

How may dangerous levels of carbon monoxide from an emergency generator be detected?

SelectAnswer
AOnly with a carbon monoxide detector
BBy the odor
CBy the yellowish appearance of the gas
DAny ordinary smoke detector can be used

2. - E1A01

Which of the following carrier frequencies is illegal for LSB AFSK emissions on the 17 meter band RTTY and data segment of 18.068 to 18.110 MHz?

SelectAnswer
A18.107 MHz
B18.068 MHz
C18.110 MHz
D18.100 MHz

3. - E1B01

Which of the following constitutes a spurious emission?

SelectAnswer
AAn emission outside the signal's necessary bandwidth that can be reduced or eliminated without affecting the information transmitted
BAny transmitted signal that unintentionally interferes with another licensed radio station
CA signal transmitted to prevent its detection by any station other than the intended recipient
DAn amateur station transmission made without the proper call sign identification

4. - E1C11

Which of the following operating arrangements allows an FCC-licensed U.S. citizen to operate in many European countries, and alien amateurs from many European countries to operate in the U.S.?

SelectAnswer
AIARP agreement
BITU reciprocal license
CAll these choices are correct
DCEPT agreement

5. - E1D11

Which amateur stations are eligible to operate as Earth stations?

SelectAnswer
AOnly those of General, Advanced or Amateur Extra Class operators
BAny amateur station, subject to the privileges of the class of operator license held by the control operator
CAny amateur station whose licensee has filed a pre-space notification with the FCC's International Bureau
DOnly those of Amateur Extra Class operators

6. - E1E12

What must the VE team do with the application form if the examinee does not pass the exam?

SelectAnswer
ADestroy the application form
BMaintain the application form with the VEC's records
CReturn the application document to the examinee
DSend the application form to the FCC and inform the FCC of the grade

7. - E1F11

Which of the following best describes one of the standards that must be met by an external RF power amplifier if it is to qualify for a grant of FCC certification?

SelectAnswer
AIt must be capable of external RF switching between its input and output networks
BIt must exhibit a gain of 0 dB or less over its full output range
CIt must produce full legal output when driven by not more than 5 watts of mean RF input power
DIt must satisfy the FCC's spurious emission standards when operated at the lesser of 1500 watts or its full output power

8. - E2A12

What is the purpose of digital store-and-forward functions on an amateur radio satellite?

SelectAnswer
ATo store digital messages in the satellite for later download by other stations
BTo upload operational software for the transponder
CTo delay download of telemetry between satellites
DTo relay messages between satellites

9. - E2B09

What hardware, other than a receiver with SSB capability and a suitable computer, is needed to decode SSTV using Digital Radio Mondiale (DRM)?

SelectAnswer
AA special notch filter to remove synchronization pulses
BNo other hardware is needed
CA special IF converter
DA special front end limiter

10. - E2C07

What is the Cabrillo format?

SelectAnswer
AThe rules of order for meetings between contest sponsors
BA method of exchanging information during a contest QSO
CA standard for submission of electronic contest logs
DThe most common set of contest rules

11. - E2D07

What digital protocol is used by APRS?

SelectAnswer
A802.11
BPACTOR
CAX.25
DAMTOR

12. - E2E05

Which of these digital modes does not support keyboard-to-keyboard operation?

SelectAnswer
APSK31
BPACTOR
CRTTY
DMFSK

13. - E3A01

What is the approximate maximum separation measured along the surface of the Earth between two stations communicating by EME?

SelectAnswer
A5000 miles, if the moon is at perigee
B500 miles, if the moon is at perigee
C12,000 miles, if the moon is visible by both stations
D2000 miles, if the moon is at apogee

14. - E3B12

What is the primary characteristic of chordal hop propagation?

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

15. - E3C03

Which of the following signal paths is most likely to experience high levels of absorption when the A index or K index is elevated?

SelectAnswer
APolar
BSporadic E
CTransequatorial
DNVIS

16. - E4A02

Which of the following parameters does a spectrum analyzer display on the vertical and horizontal axes?

SelectAnswer
ARF amplitude and frequency
BRF amplitude and time
CSWR and frequency
DSWR and time

17. - E4B08

Which of the following can be used to measure the Q of a series-tuned circuit?

SelectAnswer
AThe bandwidth of the circuit's frequency response
BThe resonant frequency of the circuit
CThe inductance to capacitance ratio
DThe frequency shift

18. - E4C06

A CW receiver with the AGC off has an equivalent input noise power density of -174 dBm/Hz. What would be the level of an unmodulated carrier input to this receiver that would yield an audio output SNR of 0 dB in a 400 Hz noise bandwidth?

SelectAnswer
A-148 dBm
B-155 dBm
C-174 dBm
D-164 dBm

19. - E4D06

What is the term for spurious signals generated by the combination of two or more signals in a non-linear device or circuit?

SelectAnswer
AAdjacent channel interference
BAmplifier desensitization
CIntermodulation
DNeutralization

20. - E4E09

What undesirable effect can occur when using an IF noise blanker?

SelectAnswer
AFM signals can no longer be demodulated
BThe audio frequency bandwidth of the received signal might be compressed
CReceived audio in the speech range might have an echo effect
DNearby signals may appear to be excessively wide even if they meet emission standards

21. - E5A14

What is the resonant frequency of an RLC circuit if R is 22 ohms, L is 50 microhenries and C is 40 picofarads?

SelectAnswer
A3.56 MHz
B22.36 MHz
C44.72 MHz
D1.78 MHz

22. - E5B08

What is the phase angle between the voltage across and the current through a series RLC circuit if XC is 100 ohms, R is 100 ohms, and XL is 75 ohms?

SelectAnswer
A14 degrees with the voltage leading the current
B76 degrees with the voltage lagging the current
C76 degrees with the voltage leading the current
D14 degrees with the voltage lagging the current

23. - E5C06

What does the impedance 50-j25 represent?

SelectAnswer
A25 ohms resistance in series with 50 ohms inductive reactance
B50 ohms resistance in series with 25 ohms inductive reactance
C50 ohms resistance in series with 25 ohms capacitive reactance
D25 ohms resistance in series with 50 ohms capacitive reactance

24. - E5D11

What is the power factor of an RL circuit having a 60-degree phase angle between the voltage and the current?

SelectAnswer
A0.866
B0.5
C1.414
D1.73

25. - E6A04

What is the name given to an impurity atom that adds holes to a semiconductor crystal structure?

SelectAnswer
AInsulator impurity
BN-type impurity
CAcceptor impurity
DDonor impurity

26. - E6B06

Which of the following is a common use of a Schottky diode?

SelectAnswer
AAs a rectifier in high current power supplies
BAs a variable capacitance in an automatic frequency control circuit
CAs a constant voltage reference in a power supply
DAs a VHF/UHF mixer or detector

27. - E6C04

Which of the following is an advantage of BiCMOS logic?

SelectAnswer
AIt is immune to electrostatic damage
BAll these choices are correct
CIts simplicity results in much less expensive devices than standard CMOS
DIt has the high input impedance of CMOS and the low output impedance of bipolar transistors

28. - E6D05

What is one reason for using ferrite cores rather than powdered iron in an inductor?

SelectAnswer
AFerrite toroids generally have lower initial permeability
BFerrite toroids generally require fewer turns to produce a given inductance value
CFerrite toroids generally have better temperature stability
DFerrite toroids are easier to use with surface mount technology

29. - E6E10

What advantage does surface-mount technology offer at RF compared to using through-hole components?

SelectAnswer
AAll these choices are correct
BShorter circuit-board traces
CSmaller circuit area
DComponents have less parasitic inductance and capacitance

30. - E6F10

What is the most common type of photovoltaic cell used for electrical power generation?

SelectAnswer
ASilicon
BCopper oxide
CCadmium Sulfide
DSelenium

31. - E7A04

How many flip-flops are required to divide a signal frequency by 4?

SelectAnswer
A1
B2
C4
D8

32. - E7B07

Which of the following is a likely result when a Class C amplifier is used to amplify a single-sideband phone signal?

SelectAnswer
ASignal inversion
BIncreased overall intelligibility
CReduced intermodulation products
DSignal distortion and excessive bandwidth

33. - E7C09

What is a crystal lattice filter?

SelectAnswer
AA filter using lattice-shaped quartz crystals for high-Q performance
BAn audio filter made with four quartz crystals that resonate at 1 kHz intervals
CA power supply filter made with interlaced quartz crystals
DA filter with narrow bandwidth and steep skirts made using quartz crystals

34. - E7D12

What is the dropout voltage of an analog voltage regulator?

SelectAnswer
AMinimum input voltage for rated power dissipation
BMaximum output voltage drops when the input voltage is varied over its specified range
CMinimum input-to-output voltage required to maintain regulation
DMaximum that the output voltage may decrease at rated load

35. - E7E07

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

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

36. - E7F05

How frequently must an analog signal be sampled by an analog-to-digital converter so that the signal can be accurately reproduced?

SelectAnswer
AAt least twice the rate of the highest frequency component of the signal
BAt four times the rate of the highest frequency component of the signal
CAt the same rate as the highest frequency component of the signal
DAt least half the rate of the highest frequency component of the signal

37. - E7G11

What absolute voltage gain can be expected from the circuit in Figure E7-3 when R1 is 3300 ohms and RF is 47 kilohms?

SelectAnswer
A0.07
B28
C7
D14

38. - E7H07

How can an oscillator's microphonic responses be reduced?

SelectAnswer
AIncrease the bias voltage
BUse NP0 capacitors
CReduce noise on the oscillator's power supply
DMechanically isolate the oscillator circuitry from its enclosure

39. - E8A05

What of the following instruments would be the most accurate for measuring the RMS voltage of a complex waveform?

SelectAnswer
AA true-RMS calculating meter
BA grid dip meter
CAn absorption wave meter
DA D'Arsonval meter

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
A1.67
B0.167
C0.6
D60

41. - E8C01

How is Forward Error Correction implemented?

SelectAnswer
ABy varying the frequency shift of the transmitted signal according to a predefined algorithm
BBy transmitting a special algorithm to the receiving station along with the data characters
CBy the receiving station repeating each block of three data characters
DBy transmitting extra data that may be used to detect and correct transmission errors

42. - E8D01

Why are received spread spectrum signals resistant to interference?

SelectAnswer
AThe high power used by a spread spectrum transmitter keeps its signal from being easily overpowered
BIf interference is detected by the receiver it will signal the transmitter to change frequencies
CThe receiver is always equipped with a digital blanker
DSignals not using the spread spectrum algorithm are suppressed in the receiver

43. - E9A11

Which of the following factors determines ground losses for a ground-mounted vertical antenna operating in the 3 MHz to 30 MHz range?

SelectAnswer
ATake-off angle
BThe standing wave ratio
CDistance from the transmitter
DSoil conductivity

44. - E9B01

In the antenna radiation pattern shown in Figure E9-1, what is the beamwidth?

SelectAnswer
A30 degrees
B50 degrees
C25 degrees
D75 degrees

45. - E9C02

What is the radiation pattern of two 1/4-wavelength vertical antennas spaced 1/4 wavelength apart and fed 90 degrees out of phase?

SelectAnswer
ACardioid
BA figure-8 end-fire along the axis of the array
CA figure-8 broadside to the axis of the array
DOmni-directional

46. - E9D03

Where should a high Q loading coil be placed to minimize losses in a shortened vertical antenna?

SelectAnswer
ANear the center of the vertical radiator
BAs close to the transmitter as possible
CAs low as possible on the vertical radiator
DAt a voltage node

47. - E9E10

Which of these choices is an effective way to match an antenna with a 100-ohm feed point impedance to a 50-ohm coaxial cable feed line?

SelectAnswer
AConnect a 1/4-wavelength open stub of 300-ohm twinlead in parallel with the coaxial feed line where it connects to the antenna
BInsert a 1/2 wavelength piece of 300-ohm twinlead in series between the antenna terminals and the 50-ohm feed cable
CInsert a 1/4-wavelength piece of 75-ohm coaxial cable transmission line in series between the antenna terminals and the 50-ohm feed cable
DConnect a 1/2 wavelength shorted stub of 75-ohm cable in parallel with the 50-ohm cable where it attaches to the antenna

48. - E9F13

What impedance does a 1/4-wavelength transmission line present to a generator when the line is shorted at the far end?

SelectAnswer
AVery high impedance
BThe same as the characteristic impedance of the transmission line
CThe same as the generator output impedance
DVery low impedance

49. - E9G10

What do the arcs on a Smith chart represent?

SelectAnswer
APoints with constant reactance
BPoints with constant resistance
CFrequency
DSWR

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 E7-3

Figure E9-1