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

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1. - E0A02

When evaluating RF exposure levels from your station at a neighbor's home, what must you do?

SelectAnswer
AEnsure signals from your station are less than the uncontrolled Maximum Permitted Exposure (MPE) limits
BEnsure signals from your station are less than the uncontrolled Maximum Permitted Emission (MPE) limits
CEnsure signals from your station are less than the controlled Maximum Permitted Exposure (MPE) limits
DEnsure signals from your station are less than the controlled Maximum Permitted Emission (MPE) limits

2. - E1A13

Who must be in physical control of the station apparatus of an amateur station aboard any vessel or craft that is documented or registered in the United States?

SelectAnswer
AAny person named in an amateur station license grant or a person holding an unrestricted Radiotelephone Operator Permit
BOnly a person with an FCC Marine Radio license grant
CAny person holding an FCC issued amateur license or who is authorized for alien reciprocal operation
DOnly a person named in an amateur station license grant

3. - E1B10

What frequencies are authorized to an amateur station operating under RACES rules?

SelectAnswer
AAll amateur service frequencies authorized to the control operator
BSpecific segments in the amateur service MF, HF, VHF and UHF bands
CSpecific local government channels
DMilitary Auxiliary Radio System (MARS) channels

4. - E1C01

What is the maximum bandwidth for a data emission on 60 meters?

SelectAnswer
A2.8 kHz
B60 Hz
C1.5 kHz
D170 Hz

5. - E1D07

Which HF amateur bands have frequencies authorized for space stations?

SelectAnswer
AOnly the 40, 20, 17, 15, and 10 meter bands
BOnly the 40, 30, 20, 15, 12, and 10 meter bands
CAll HF bands
DOnly the 40, 20, 17, 15, 12, and 10 meter bands

6. - E1E06

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

SelectAnswer
AThe VE session manager
BEach administering VE
CThe FCC
DThe VEC coordinating the session

7. - E1F10

Who may be the control operator of an auxiliary station?

SelectAnswer
AOnly General, Advanced or Amateur Extra Class operators
BOnly Technician, General, Advanced or Amateur Extra Class operators
COnly Amateur Extra Class operators
DAny licensed amateur operator

8. - E2A03

How is the signal inverted by an inverting linear transponder?

SelectAnswer
AThe signal is passed through a non-linear filter
BThe signal is passed through a mixer and the difference rather than the sum is transmitted
CThe signal is detected and remodulated on the reverse sideband
DThe signal is reduced to I and Q components and the Q component is filtered out

9. - E2B06

What is vestigial sideband modulation?

SelectAnswer
AA type of modulation in which one sideband is inverted
BAmplitude modulation in which one complete sideband and a portion of the other are transmitted
CSpread spectrum modulation achieved by applying FM modulation following single sideband amplitude modulation
DNarrow-band FM modulation achieved by filtering one sideband from the audio before frequency modulating the carrier

10. - E2C06

During a VHF/UHF contest, in which band segment would you expect to find the highest level of SSB or CW activity?

SelectAnswer
AIn the weak signal segment of the band, with most of the activity near the calling frequency
BIn the middle of each band, usually on the national calling frequency
CAt the top of each band, usually in a segment reserved for contests
DIn the middle of the band, usually 25 kHz above the national calling frequency

11. - E2D07

What digital protocol is used by APRS?

SelectAnswer
A802.11
BAMTOR
CAX.25
DPACTOR

12. - E2E03

How is the timing of FT4 contacts organized?

SelectAnswer
AAlternating transmissions at 7.5 second intervals
BBy exchanging ACK/NAK packets
CStations take turns on alternate days
DIt depends on the lunar phase

13. - E3A05

Tropospheric propagation of microwave signals often occurs in association with what phenomenon?

SelectAnswer
AGrayline
BLightning discharges
CWarm and cold fronts
DSprites and jets

14. - E3B04

What is meant by the terms "extraordinary" and "ordinary" waves?

SelectAnswer
AIndependent waves created in the ionosphere that are elliptically polarized
BLong-path and short-path waves
CRefracted rays and reflected waves
DExtraordinary waves describe rare long-skip propagation compared to ordinary waves, which travel shorter distances

15. - E3C14

Why does the radio-path horizon distance exceed the geometric horizon?

SelectAnswer
ADownward bending due to density variations in the atmosphere
BE-region skip
CD-region skip
DDue to the Doppler effect

16. - E4A02

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

SelectAnswer
ASWR and time
BSWR and frequency
CRF amplitude and time
DRF amplitude and 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
A100 watts
B75 watts
C25 watts
D125 watts

18. - E4C03

What is the term for the suppression in an FM receiver of one signal by another stronger signal on the same frequency?

SelectAnswer
ACapture effect
BFrequency discrimination
CDesensitization
DCross-modulation interference

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
ANeutralization
BIntermodulation
CAdjacent channel interference
DAmplifier desensitization

20. - E4E06

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

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

21. - E5A09

How is the Q of an RLC parallel 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. - E5B02

What letter is commonly used to represent susceptance?

SelectAnswer
AX
BG
CB
DY

23. - E5C08

What coordinate system is often used to display the phase angle of a circuit containing resistance, inductive and/or capacitive reactance?

SelectAnswer
AElliptical coordinates
BPolar coordinates
CFaraday grid
DMaidenhead grid

24. - E5D14

What is reactive power?

SelectAnswer
APower consumed in circuit Q
BPower lost because of capacitor leakage
CPower consumed in wire resistance in an inductor
DWattless, nonproductive power

25. - E6A02

Which of the following semiconductor materials contains excess free electrons?

SelectAnswer
ABipolar
BN-type
CP-type
DInsulated gate

26. - E6B06

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

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

27. - E6C11

In Figure E6-3, what is the schematic symbol for the NOT operation (inverter)?

SelectAnswer
A6
B4
C2
D5

28. - E6D08

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

SelectAnswer
APowdered-iron cores generally have greater initial permeability
BPowdered-iron cores generally maintain their characteristics at higher currents
CPowdered-iron cores use smaller diameter wire for the same inductance
DPowdered-iron cores generally require fewer turns to produce a given inductance

29. - E6E01

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

SelectAnswer
ALower transconductance
BHigher noise figures
CHigher electron mobility
DLower junction voltage drop

30. - E6F03

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

SelectAnswer
AAn LED and a phototransistor
BA lens and a photomultiplier
CA frequency modulated helium-neon laser
DAn amplitude modulated helium-neon laser

31. - E7A02

What is the function of a decade counter?

SelectAnswer
AIt produces one output pulse for every 10 input pulses
BIt produces 10 output pulses for every input pulse
CIt decodes a decimal number for display on a seven-segment LED display
DIt decodes a binary number for display on a seven-segment LED display

32. - E7B18

What is a characteristic of a grounded-grid amplifier?

SelectAnswer
ALow bandwidth
BLow input impedance
CHigh filament voltage
DHigh power gain

33. - E7C02

Which of the following is a property of a T-network with series capacitors and a parallel shunt inductor?

SelectAnswer
AIt is a notch filter
BIt is a low-pass filter
CIt is a band-pass filter
DIt is a high-pass filter

34. - E7D10

What is the primary reason that a high-frequency switching type high-voltage power supply can be both less expensive and lighter in weight than a conventional power supply?

SelectAnswer
AThe high frequency inverter design uses much smaller transformers and filter components for an equivalent power output
BIt uses a diode bridge rectifier for increased output
CIt uses a large power factor compensation capacitor to recover power from the unused portion of the AC cycle
DThe inverter design does not require any output filtering

35. - E7E05

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

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

36. - E7F10

What aspect of receiver analog-to-digital conversion determines the maximum receive bandwidth of a Direct Digital Conversion SDR?

SelectAnswer
ASample rate
BProcessor latency
CSample clock phase noise
DSample width in bits

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
A0.23 volts
B-0.23 volts
C2.3 volts
D-2.3 volts

38. - E7H11

What are the major spectral impurity components of direct digital synthesizers?

SelectAnswer
ABroadband noise
BSpurious signals at discrete frequencies
CDigital conversion noise
DNyquist limit noise

39. - E8A05

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

SelectAnswer
AA D'Arsonval meter
BA grid dip meter
CA true-RMS calculating meter
DAn absorption wave meter

40. - E8B08

What describes Orthogonal Frequency Division Multiplexing?

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

41. - E8C09

Which digital code allows only one bit to change between sequential code values?

SelectAnswer
ABinary Coded Decimal Code
BExcess 3 code
CExtended Binary Coded Decimal Interchange Code
DGray code

42. - E8D05

What is the most common method of reducing key clicks?

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

43. - E9A03

What is the radiation resistance of an antenna?

SelectAnswer
AThe combined losses of the antenna elements and feed line
BThe specific impedance of the antenna
CThe value of a resistance that would dissipate the same amount of power as that radiated from an antenna
DThe resistance in the atmosphere that an antenna must overcome to be able to radiate a signal

44. - E9B08

What is the far field of an antenna?

SelectAnswer
AThe region where radiated power dissipates over a specified time period
BThe region of the ionosphere where radiated power is not refracted
CThe region where radiated field strengths are constant
DThe region where the shape of the antenna pattern is independent of distance

45. - E9C12

Which of the following describes an Extended Double Zepp antenna?

SelectAnswer
AA center-fed 1.25-wavelength antenna (two 5/8-wave elements in phase)
BA wideband vertical antenna constructed from precisely tapered aluminum tubing
CA portable antenna erected using two push support poles
DAn end-fed folded dipole antenna

46. - E9D10

What happens to feed-point impedance at the base of a fixed length HF mobile antenna when operated below its resonant frequency?

SelectAnswer
AThe radiation resistance increases and the capacitive reactance increases
BThe radiation resistance increases and the capacitive reactance decreases
CThe radiation resistance decreases and the capacitive reactance increases
DThe radiation resistance decreases and the capacitive reactance decreases

47. - E9E06

Which of these feed line impedances would be suitable for constructing a quarter-wave Q-section for matching a 100-ohm loop to 50-ohm feed line?

SelectAnswer
A450 ohms
B75 ohms
C62 ohms
D50 ohms

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
AInfinite
BAn inductive reactance
CThe same as the characteristic impedance of the line
DA capacitive reactance

49. - E9G08

What is the process of normalization with regard to a Smith chart?

SelectAnswer
AReassigning impedance values with regard to the prime center
BReassigning reactance values with regard to the resistance axis
CReassigning resistance values with regard to the reactance axis
DReassigning prime center with regard to the reactance axis

50. - E9H10

How can the output voltage of a multiple-turn receiving loop antenna be increased?

SelectAnswer
ABy winding adjacent turns in opposing directions
BBy utilizing high impedance wire for the coupling loop
CBy reducing the permeability of the loop shield
DBy increasing the number of turns and/or the area

Figure E6-3

Figure E7-3