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

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1. - E0A09

Which insulating material commonly used as a thermal conductor for some types of electronic devices is extremely toxic if broken or crushed and the particles are accidentally inhaled?

SelectAnswer
AZinc oxide
BBeryllium Oxide
CMica
DUranium Hexafluoride

2. - E1A06

Where must the carrier frequency of a CW signal be set to comply with FCC rules for 60 meter operation?

SelectAnswer
AAt the highest frequency of the channel
BAt the lowest frequency of the channel
CAt the center frequency of the channel
DOn any frequency where the signal's sidebands are within the channel

3. - E1B01

Which of the following constitutes a spurious emission?

SelectAnswer
AA signal transmitted to prevent its detection by any station other than the intended recipient
BAny transmitted signal that unintentionally interferes with another licensed radio station
CAn emission outside the signal's necessary bandwidth that can be reduced or eliminated without affecting the information transmitted
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
AITU reciprocal license
BAll these choices are correct
CCEPT agreement
DIARP agreement

5. - E1D06

What is the maximum permitted transmitter output power when operating a model craft by telecommand?

SelectAnswer
A2 watts
B5 watts
C1 watt
D100 watts

6. - E1E04

Which of the following best describes the Volunteer Examiner accreditation process?

SelectAnswer
AThe procedure by which a VEC confirms that the VE applicant meets FCC requirements to serve as an examiner
BThe amateur operator applying must pass a VE examination administered by the FCC Enforcement Bureau
CThe prospective VE obtains accreditation from the FCC
DEach General, Advanced and Amateur Extra Class operator is automatically accredited as a VE when the license is granted

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

8. - E2A07

Which of the following types of signals can be relayed through a linear transponder?

SelectAnswer
AFM and CW
BAll these choices are correct
CSSB and SSTV
DPSK and packet

9. - E2B05

Which of the following describes the use of vestigial sideband in analog fast-scan TV transmissions?

SelectAnswer
AThe vestigial sideband carries the audio information
BVestigial sideband reduces bandwidth while allowing for simple video detector circuitry
CVestigial sideband provides high frequency emphasis to sharpen the picture
DThe vestigial sideband contains chroma information

10. - E2C07

What is the Cabrillo format?

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

11. - E2D08

What type of packet frame is used to transmit APRS beacon data?

SelectAnswer
AUnnumbered Information
BAcknowledgement
CDisconnect
DConnect

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
AAnother station you are unable to hear is using the frequency
BAll these choices are correct
CThe protocol version you are using is not supported by the digital station
DYour transmit frequency is incorrect

13. - E3A06

What might help to restore contact when DX signals become too weak to copy across an entire HF band a few hours after sunset?

SelectAnswer
ASwitch to a lower frequency HF band
BSwitch to a higher frequency HF band
CWait 24 hours before attempting another communication on the band
DWait 90 minutes or so for the signal degradation to pass

14. - E3B05

Which amateur bands typically support long-path propagation?

SelectAnswer
AOnly 30 meters to 10 meters
B6 meters to 2 meters
COnly 160 meters to 40 meters
D160 meters to 10 meters

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
ASporadic E
BPolar
CNVIS
DTransequatorial

16. - E4A08

Which of the following measures SWR?

SelectAnswer
AAn ohmmeter
BA spectrum analyzer
CA Q meter
DAn antenna analyzer

17. - E4B08

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

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

18. - E4C15

What is reciprocal mixing?

SelectAnswer
ATwo out-of-band signals mixing to generate an in-band spurious signal
BTwo digital signals combining from alternate time slots
CIn-phase signals cancelling in a mixer resulting in loss of receiver sensitivity
DLocal oscillator phase noise mixing with adjacent strong signals to create interference to desired signals

19. - E4D05

What transmitter frequencies would cause an intermodulation-product signal in a receiver tuned to 146.70 MHz when a nearby station transmits on 146.52 MHz?

SelectAnswer
A173.35 MHz and 139.40 MHz
B146.88 MHz and 146.34 MHz
C146.10 MHz and 147.30 MHz
D146.34 MHz and 146.61 MHz

20. - E4E07

Which of the following can cause shielded cables to radiate or receive interference?

SelectAnswer
ACommon-mode currents on the shield and conductors
BTying all ground connections to a common point resulting in differential-mode currents in the shield
CUse of braided shielding material
DLow inductance ground connections at both ends of the shield

21. - E5A10

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

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

22. - E5B01

What is the term for the time required for the capacitor in an RC circuit to be charged to 63.2% of the applied voltage or to discharge to 36.8% of its initial voltage?

SelectAnswer
AOne time constant
BOne exponential period
CAn exponential rate of one
DA time factor of one

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 3
CPoint 7
DPoint 1

24. - E5D05

What is the power factor of an RL circuit having a 30-degree phase angle between the voltage and the current?

SelectAnswer
A1.73
B0.866
C0.5
D0.577

25. - E6A08

What term indicates the frequency at which the grounded-base current gain of a transistor has decreased to 0.7 of the gain obtainable at 1 kHz?

SelectAnswer
AAlpha rejection frequency
BBeta cutoff frequency
CAlpha cutoff frequency
DCorner frequency

26. - E6B08

Which of the following is a Schottky barrier diode?

SelectAnswer
AMetal-semiconductor junction
BThermionic emission diode
CElectrolytic rectifier
DPIN junction

27. - E6C01

What is the function of hysteresis in a comparator?

SelectAnswer
ATo prevent input noise from causing unstable output signals
BTo increase the sensitivity
CTo allow the comparator to be used with AC input signals
DTo cause the output to change states continually

28. - E6D01

Why should core saturation of an impedance matching transformer be avoided?

SelectAnswer
ATemporary changes of the core permeability could result
BHarmonics and distortion could result
CMagnetic flux would increase with frequency
DRF susceptance would increase

29. - E6E10

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

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

30. - E6F03

What is the most common configuration of an optoisolator or optocoupler?

SelectAnswer
AA lens and a photomultiplier
BAn LED and a phototransistor
CAn amplitude modulated helium-neon laser
DA frequency modulated helium-neon laser

31. - E7A07

What logical operation does a NAND gate perform?

SelectAnswer
AIt produces logic 0 at its output only when all inputs are logic 0
BIt produces logic 1 at its output only when all inputs are logic 1
CIt produces logic 0 at its output if some but not all inputs are logic 1
DIt produces logic 0 at its output only when all inputs are logic 1

32. - E7B16

What is the effect of intermodulation products in a linear power amplifier?

SelectAnswer
ALow efficiency
BCreation of parasitic oscillations
CTransmission of spurious signals
DAll these choices are correct

33. - E7C11

Which of the following describes a receiving filter's ability to reject signals occupying an adjacent channel?

SelectAnswer
ANoise factor
BPhase response
CPassband ripple
DShape factor

34. - E7D07

What is the purpose of C2 in the circuit shown in Figure E7-2?

SelectAnswer
ATo self-resonate at the hum frequency
BTo provide fixed DC bias for Q1
CIt bypasses rectifier output ripple around D1
DIt is a brute force filter for the output

35. - E7E05

What circuit is added to an FM transmitter to boost the higher audio frequencies?

SelectAnswer
AA de-emphasis network
BA heterodyne enhancer
CA pre-emphasis network
DA heterodyne suppressor

36. - E7F13

What is the function of taps in a digital signal processing filter?

SelectAnswer
ASelect the point at which baseband signals are generated
BProvide incremental signal delays for filter algorithms
CTo reduce excess signal pressure levels
DProvide access for debugging software

37. - E7G01

What is the typical output impedance of an op-amp?

SelectAnswer
A100 ohms
B1000 ohms
CVery high
DVery low

38. - E7H12

Which of the following must be done to ensure that a crystal oscillator provides the frequency specified by the crystal manufacturer?

SelectAnswer
AProvide the crystal with a specified parallel capacitance
BBias the crystal at a specified current
CProvide the crystal with a specified parallel inductance
DBias the crystal at a specified voltage

39. - E8A05

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

SelectAnswer
AAn absorption wave meter
BA grid dip meter
CA true-RMS calculating meter
DA D'Arsonval meter

40. - E8B08

What describes Orthogonal Frequency Division Multiplexing?

SelectAnswer
AA bandwidth compression technique using Fourier transforms
BA frequency modulation technique that uses non-harmonically related frequencies
CA digital modulation technique using subcarriers at frequencies chosen to avoid intersymbol interference
DA digital mode for narrow-band, slow-speed transmissions

41. - E8C05

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

SelectAnswer
A104 Hz
B26 Hz
C13 Hz
D52 Hz

42. - E8D10

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

SelectAnswer
ABaudot 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
BBaudot 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
CBaudot uses 7 data bits per character, ASCII uses 8; Baudot has no letters/figures shift code, ASCII uses 2 letters/figures shift codes
DBaudot 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

43. - E9A13

What term describes station output, taking into account all gains and losses?

SelectAnswer
APower factor
BEffective radiated power
CHalf-power bandwidth
DApparent power

44. - E9B06

What is the elevation angle of peak response in the antenna radiation pattern shown in Figure E9-2?

SelectAnswer
A45 degrees
B7.5 degrees
C75 degrees
D25 degrees

45. - E9C13

How does the radiation pattern of a horizontally polarized 3-element beam antenna vary with increasing height above ground?

SelectAnswer
AThe takeoff angle of the lowest elevation lobe increases
BThe takeoff angle of the lowest elevation lobe decreases
CThe horizontal beamwidth increases
DThe horizontal beamwidth decreases

46. - E9D02

How can linearly polarized Yagi antennas be used to produce circular polarization?

SelectAnswer
AArrange two Yagis collinear to each other with the driven elements fed 180 degrees out of phase
BStack two Yagis fed 90 degrees out of phase to form an array with the respective elements in parallel planes
CStack two Yagis fed in phase to form an array with the respective elements in parallel planes
DArrange two Yagis perpendicular to each other with the driven elements at the same point on the boom fed 90 degrees out of phase

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 delta match
BThe omega match
CThe gamma match
DThe stub 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
CInfinite
DThe same as the characteristic impedance of the line

49. - E9G01

Which of the following can be calculated using a Smith chart?

SelectAnswer
AAntenna radiation pattern
BRadio propagation
CRadiation resistance
DImpedance along transmission lines

50. - E9H03

What is Receiving Directivity Factor (RDF)?

SelectAnswer
ARelative directivity compared to a dipole
BForward gain compared to the gain in the reverse direction
CRelative directivity compared to isotropic
DForward gain compared to average gain over the entire hemisphere

Figure E5-1

Figure E7-2

Figure E9-2