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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 Emission (MPE) limits
DEnsure signals from your station are less than the controlled Maximum Permitted Exposure (MPE) limits

2. - E1A08

If a station in a message forwarding system inadvertently forwards a message that is in violation of FCC rules, who is primarily accountable for the rules violation?

SelectAnswer
AThe control operator of the originating station
BThe control operator of the packet bulletin board station
CThe control operators of all the stations in the system
DThe control operators of all the stations in the system not authenticating the source from which they accept communications

3. - E1B02

Which of the following is an acceptable bandwidth for Digital Radio Mondiale (DRM) based voice or SSTV digital transmissions made on the HF amateur bands?

SelectAnswer
A20 kHz
B10 kHz
C3 kHz
D15 kHz

4. - E1C08

What is the maximum permissible duration of a remotely controlled station's transmissions if its control link malfunctions?

SelectAnswer
A5 minutes
B3 minutes
C10 minutes
D30 seconds

5. - E1D05

What must be posted at the station location of a station being operated by telecommand on or within 50 km of the earth's surface?

SelectAnswer
AA photocopy of the station license
BAll these choices are correct
CA label with the name, address, and telephone number of the station licensee
DA label with the name, address, and telephone number of the control operator

6. - E1E08

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

SelectAnswer
ARelatives of the VE as listed in the FCC rules
BEmployees of the VE
CFriends of the VE
DAll these choices are correct

7. - E1F04

Which of the following geographic descriptions approximately describes "Line A"?

SelectAnswer
AA line roughly parallel to and south of the border between the U.S. and Canada
BA line roughly parallel to and east of the U.S. Pacific coastline
CA line roughly parallel to and north of the border between the U.S. and Mexico
DA line roughly parallel to and west of the U.S. Atlantic coastline

8. - E2A04

What is meant by the term mode? as applied to an amateur radio satellite?

SelectAnswer
AWhether the satellite is in a low earth or geostationary orbit
BWhether the satellite is in a polar or equatorial orbit
CThe satellite's uplink and downlink frequency bands
DThe satellite's orientation with respect to the Earth

9. - E2B11

What is the function of the Vertical Interval Signaling (VIS) code sent as part of an SSTV transmission?

SelectAnswer
ATo identify the call sign of the station transmitting
BTo lock the color burst oscillator in color SSTV images
CTo provide vertical synchronization
DTo identify the SSTV mode being used

10. - E2C01

What indicator is required to be used by U.S.-licensed operators when operating a station via remote control and the remote transmitter is located in the U.S.?

SelectAnswer
A/ followed by the USPS two-letter abbreviation for the state in which the remote station is located
B/R# where # is the district of the remote station
CNo additional indicator is required
D/ followed by the ARRL Section of the remote station

11. - E2D03

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

SelectAnswer
AMSK144
BJT65
CPACTOR III
DOlivia

12. - E2E10

Which of these digital modes has the narrowest bandwidth?

SelectAnswer
APSK31
B170 Hz shift, 45-baud RTTY
C300-baud packet
DMFSK16

13. - E3A08

When a meteor strikes the Earth's atmosphere, a cylindrical region of free electrons is formed at what layer of the ionosphere?

SelectAnswer
AThe F2 layer
BThe E layer
CThe F1 layer
DThe D layer

14. - E3B03

What is the best time of day for transequatorial propagation?

SelectAnswer
AMorning
BAfternoon or early evening
CLate at night
DNoon

15. - E3C09

How does the intensity of an X3 flare compare to that of an X2 flare?

SelectAnswer
A10 percent greater
BTwice as great
C50 percent greater
DFour times as great

16. - E4A05

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

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

17. - E4B01

Which of the following factors most affects the accuracy of a frequency counter?

SelectAnswer
ATime base accuracy
BDecade divider accuracy
CTemperature coefficient of the logic
DInput attenuator accuracy

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. - E4D10

What does a third-order intercept level of 40 dBm mean with respect to receiver performance?

SelectAnswer
AA pair of 1 mW input signals will produce a third-order intermodulation product that is 40 dB stronger than the input signal
BA pair of 40 dBm input signals will theoretically generate a third-order intermodulation product that has the same output amplitude as either of the input signals
CThe receiver can tolerate signals up to 40 dB above the noise floor without producing third-order intermodulation products
DSignals less than 40 dBm will not generate audible third-order intermodulation products

20. - E4E07

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

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

21. - E5A04

What is the magnitude of the impedance of a parallel RLC circuit at resonance?

SelectAnswer
AHigh compared to the circuit resistance
BLow compared to the circuit resistance
CApproximately equal to circuit resistance
DApproximately equal to inductive reactance

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
AAn exponential rate of one
BA time factor of one
COne time constant
DOne exponential period

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

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
BThey are both low impedance
CAn FET has higher input impedance
DThey are both high impedance

26. - E6B10

In Figure E6-2, what is the schematic symbol for a light-emitting diode?

SelectAnswer
A5
B6
C7
D1

27. - E6C03

What is tri-state logic?

SelectAnswer
ALow-power logic devices designed to operate at 3 volts
BLogic devices with 0, 1, and high-impedance output states
CProprietary logic devices manufactured by Tri-State Devices
DLogic devices that utilize ternary math

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 electron mobility
BLower transconductance
CHigher noise figures
DLower junction voltage drop

30. - E6F09

What is the efficiency of a photovoltaic cell?

SelectAnswer
ACost per kilowatt-hour generated
BThe relative fraction of light that is converted to current
CThe output RF power divided by the input DC power
DThe open-circuit voltage divided by the short-circuit current under full illumination

31. - E7A04

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

SelectAnswer
A1
B4
C2
D8

32. - E7B06

Which of the following amplifier types reduces even-order harmonics?

SelectAnswer
APush-pull
BClass C
CClass AB
DPush-push

33. - E7C06

What are the distinguishing features of an elliptical filter?

SelectAnswer
AGradual passband rolloff with minimal stop band ripple
BGradual passband rolloff with extreme stop band ripple
CExtremely sharp cutoff with one or more notches in the stop band
DExtremely flat response over its pass band with gradually rounded stop band corners

34. - E7D08

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

SelectAnswer
ALinear voltage regulator
BGrounded emitter amplifier
CSwitching voltage regulator
DMonostable multivibrator

35. - E7E09

What occurs when an excessive amount of signal energy reaches a mixer circuit?

SelectAnswer
AMixer blanking occurs
BAutomatic limiting occurs
CSpurious mixer products are generated
DA beat frequency is generated

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

37. - E7G08

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

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

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 inductance
BBias the crystal at a specified voltage
CBias the crystal at a specified current
DProvide the crystal with a specified parallel capacitance

39. - E8A01

What is the name of the process that shows that a square wave is made up of a sine wave plus all its odd harmonics?

SelectAnswer
ANumerical analysis
BFourier analysis
CVector analysis
DDifferential analysis

40. - E8B09

What is deviation ratio?

SelectAnswer
AThe ratio of the maximum carrier frequency deviation to the highest audio modulating frequency
BThe ratio of the highest audio modulating frequency to the average audio modulating frequency
CThe ratio of the audio modulating frequency to the center carrier frequency
DThe ratio of the carrier center frequency to the audio modulating frequency

41. - E8C01

How is Forward Error Correction implemented?

SelectAnswer
ABy transmitting a special algorithm to the receiving station along with the data characters
BBy the receiving station repeating each block of three data characters
CBy varying the frequency shift of the transmitted signal according to a predefined algorithm
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 receiver is always equipped with a digital blanker
BSignals not using the spread spectrum algorithm are suppressed in the receiver
CIf interference is detected by the receiver it will signal the transmitter to change frequencies
DThe high power used by a spread spectrum transmitter keeps its signal from being easily overpowered

43. - E9A01

What is an isotropic antenna?

SelectAnswer
AA grounded antenna used to measure Earth conductivity
BA spacecraft antenna used to direct signals toward Earth
CA horizontally polarized antenna used to compare Yagi antennas
DA theoretical, omnidirectional antenna used as a reference for antenna gain

44. - E9B05

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

SelectAnswer
AElevation
BRadiation resistance
CAzimuth
DPolarization

45. - E9C10

Which of the following describes a Zepp antenna?

SelectAnswer
AAn omni-directional antenna commonly used for satellite communications
BAn end-fed dipole antenna
CA vertical array capable of quickly changing the direction of maximum radiation by changing phasing lines
DA dipole constructed from zip cord

46. - E9D05

What usually occurs if a Yagi antenna is designed solely for maximum forward gain?

SelectAnswer
AThe frequency response is widened over the whole frequency band
BThe front-to-back ratio increases
CThe front-to-back ratio decreases
DThe SWR is reduced

47. - E9E04

What is the purpose of the series capacitor in a gamma-type antenna matching network?

SelectAnswer
ATo provide a rejection notch that prevents the radiation of harmonics
BTo cancel the inductive reactance of the matching network
CTo provide DC isolation between the feed line and the antenna
DTo transform the antenna impedance to a higher value

48. - E9F07

How does ladder line compare to small-diameter coaxial cable such as RG-58 at 50 MHz?

SelectAnswer
ALower loss
BLower velocity factor
CSmaller reflection coefficient
DHigher SWR

49. - E9G09

What third family of circles is often added to a Smith chart during the process of solving problems?

SelectAnswer
AStanding wave ratio circles
BAntenna-length circles
CCoaxial-length circles
DRadiation-pattern circles

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 E5-1

Figure E6-2

Figure E7-2

Figure E9-2