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

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1. - E0A06

Why are there separate electric (E) and magnetic (H) field MPE limits?

SelectAnswer
AE field and H field radiation intensity peaks can occur at different locations
BGround reflections and scattering make the field strength vary with location
CAll these choices are correct
DThe body reacts to electromagnetic radiation from both the E and H fields

2. - E1A05

What is the maximum power output permitted on the 60 meter band?

SelectAnswer
A100 watts PEP effective radiated power relative to an isotropic radiator
B50 watts PEP effective radiated power relative to an isotropic radiator
C100 watts PEP effective radiated power relative to the gain of a half-wave dipole
D50 watts PEP effective radiated power relative to a dipole

3. - E1B09

Which amateur stations may be operated under RACES rules?

SelectAnswer
AOnly those club stations licensed to Amateur Extra Class operators
BAny FCC-licensed amateur station certified by the responsible civil defense organization for the area served
CAny FCC-licensed amateur station except a Technician Class
DAny FCC-licensed amateur station participating in the Military Auxiliary Radio System (MARS)

4. - E1C01

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

SelectAnswer
A1.5 kHz
B2.8 kHz
C60 Hz
D170 Hz

5. - E1D01

What is the definition of telemetry?

SelectAnswer
ATwo-way transmissions of data
BTwo-way transmissions in excess of 1000 feet
COne-way transmission that initiates, modifies, or terminates the functions of a device at a distance
DOne-way transmission of measurements at a distance from the measuring instrument

6. - E1E07

What should a VE do if a candidate fails to comply with the examiner's instructions during an amateur operator license examination?

SelectAnswer
AAllow the candidate to complete the examination, but invalidate the results
BImmediately terminate everyone's examination and close the session
CWarn the candidate that continued failure to comply will result in termination of the examination
DImmediately terminate the candidate's examination

7. - E1F08

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

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

8. - E2A12

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

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

9. - E2B03

How is an interlaced scanning pattern generated in a fast-scan (NTSC) television system?

SelectAnswer
ABy scanning two fields simultaneously
BBy scanning lines from left to right in one field and right to left in the next
CBy scanning each field from bottom to top
DBy scanning odd numbered lines in one field and even numbered lines in the next

10. - E2C09

What type of equipment is commonly used to implement an amateur radio mesh network?

SelectAnswer
AA 440 MHz transceiver with a 9600 baud modem
BA wireless router running custom firmware
CAn optical cable connection between the USB ports of 2 separate computers
DA 2 meter VHF transceiver with a 1200 baud modem

11. - E2D10

How can an APRS station be used to help support a public service communications activity?

SelectAnswer
AAn APRS station with an emergency medical technician can automatically transmit medical data to the nearest hospital
BAPRS stations with General Personnel Scanners can automatically relay the participant numbers and time as they pass the check points
CAll these choices are correct
DAn APRS station with a Global Positioning System unit can automatically transmit information to show a mobile station's position during the event

12. - E2E13

Which of these digital modes has the fastest data throughput under clear communication conditions?

SelectAnswer
AAMTOR
B300 baud packet
CPSK31
D170 Hz shift, 45 baud RTTY

13. - E3A13

Which of these emission modes is best for auroral propagation?

SelectAnswer
ACW
BFM
CSSB
DRTTY

14. - E3B06

Which of the following amateur bands most frequently provides long-path propagation?

SelectAnswer
A20 meters
B80 meters
C6 meters
D10 meters

15. - E3C06

By how much does the VHF/UHF radio horizon distance exceed the geometric horizon?

SelectAnswer
ABy approximately twice the distance
BBy approximately 50 percent of the distance
CBy approximately 15 percent of the distance
DBy approximately four times the distance

16. - E4A04

How is the compensation of an oscilloscope probe typically adjusted?

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

17. - E4B03

Which S parameter is equivalent to forward gain?

SelectAnswer
AS21
BS11
CS22
DS12

18. - E4C08

An SDR receiver is overloaded when input signals exceed what level?

SelectAnswer
AThe reference voltage of the analog-to-digital converter
BOne-half the maximum sample rate
CThe maximum count value of the analog-to-digital converter
DOne-half the maximum sampling buffer size

19. - E4D08

What causes intermodulation in an electronic circuit?

SelectAnswer
APositive feedback
BToo little gain
CLack of neutralization
DNonlinear circuits or devices

20. - E4E11

What could cause local AM broadcast band signals to combine to generate spurious signals in the MF or HF bands?

SelectAnswer
AOne or more of the broadcast stations is transmitting an over-modulated signal
BYour station receiver IF amplifier stage is defective
CNearby corroded metal joints are mixing and re-radiating the broadcast signals
DYou are receiving skywave signals from a distant station

21. - E5A13

What is an effect of increasing Q in a series resonant circuit?

SelectAnswer
AParasitic effects are minimized
BPhase shift can become uncontrolled
CFewer components are needed for the same performance
DInternal voltages increase

22. - E5B09

What is the relationship between the AC current through a capacitor and the voltage across a capacitor?

SelectAnswer
ACurrent leads voltage by 90 degrees
BVoltage and current are in phase
CVoltage and current are 180 degrees out of phase
DVoltage leads current by 90 degrees

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 7
BPoint 1
CPoint 3
DPoint 8

24. - E5D07

How many watts are consumed in a circuit having a power factor of 0.71 if the apparent power is 500VA?

SelectAnswer
A1.42 mW
B355 W
C252 W
D704 W

25. - E6A11

In Figure E6-1, what is the schematic symbol for a P-channel junction FET?

SelectAnswer
A6
B1
C2
D3

26. - E6B06

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

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

27. - E6C10

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

SelectAnswer
A3
B2
C1
D4

28. - E6D02

What is the equivalent circuit of a quartz crystal?

SelectAnswer
AMotional capacitance, motional inductance, and loss resistance in series, all in parallel with a shunt capacitor representing electrode and stray capacitance
BMotional capacitance, motional inductance, loss resistance, and a capacitor representing electrode and stray capacitance all in parallel
CMotional inductance and loss resistance in series, paralleled with motional capacitance and a capacitor representing electrode and stray capacitance
DMotional capacitance, motional inductance, loss resistance, and a capacitor representing electrode and stray capacitance all in series

29. - E6E08

How is power supplied to the most common type of MMIC?

SelectAnswer
ADirectly to the bias voltage (VCC IN) lead
BThrough a capacitor and RF choke connected to the amplifier input lead
CThrough a resistor and/or RF choke connected to the amplifier output lead
DMMICs require no operating bias

30. - E6F06

Which of these materials is most commonly used to create photoconductive devices?

SelectAnswer
AAn ordinary metal
BA liquid semiconductor
CA heavy metal
DA crystalline semiconductor

31. - E7A10

What is a truth table?

SelectAnswer
AA list of inputs and corresponding outputs for a digital device
BA table of logic symbols that indicate the logic states of an op-amp
CA diagram showing logic states when the digital device output is true
DA table of logic symbols that indicate the high logic states of an op-amp

32. - E7B10

In Figure E7-1, what is the purpose of R1 and R2?

SelectAnswer
AVoltage divider bias
BFeedback
CSelf bias
DLoad resistors

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

34. - E7D03

What device is typically used as a stable voltage reference in a linear voltage regulator?

SelectAnswer
AAn SCR
BA Zener diode
CA tunnel diode
DA varactor diode

35. - E7E04

What is one way a single-sideband phone signal can be generated?

SelectAnswer
ABy using a reactance modulator followed by a mixer
BBy driving a product detector with a DSB signal
CBy using a loop modulator followed by a mixer
DBy using a balanced modulator followed by a filter

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. - E7G02

What is ringing in a filter?

SelectAnswer
AAn echo caused by a long time delay
BPartial cancellation of the signal over a range of frequencies
CUndesired oscillations added to the desired signal
DA reduction in high frequency response

38. - E7H04

How is positive feedback supplied in a Colpitts oscillator?

SelectAnswer
AThrough link coupling
BThrough a tapped coil
CThrough a capacitive divider
DThrough a neutralizing capacitor

39. - E8A11

Which of the following is a measure of the quality of an analog-to-digital converter?

SelectAnswer
APower factor
BReciprocal mixing
CTotal harmonic distortion
DPeak envelope power

40. - E8B03

What is the modulation index of an FM-phone signal having a maximum frequency deviation of 3000 Hz either side of the carrier frequency when the modulating frequency is 1000 Hz?

SelectAnswer
A0.3
B3000
C3
D1000

41. - E8C08

How does ARQ accomplish error correction?

SelectAnswer
AIf errors are detected, redundant data is substituted
BSpecial binary codes provide automatic correction
CSpecial polynomial codes provide automatic correction
DIf errors are detected, a retransmission is requested

42. - E8D03

How does the spread spectrum technique of frequency hopping work?

SelectAnswer
AA binary bit stream is used to shift the phase of an RF carrier very rapidly in a pseudorandom sequence
BIf interference is detected by the receiver it will signal the transmitter to wait until the frequency is clear
CIf interference is detected by the receiver it will signal the transmitter to change frequencies
DThe frequency of the transmitted signal is changed very rapidly according to a pseudorandom sequence also used by the receiving station

43. - E9A05

What is included in the total resistance of an antenna system?

SelectAnswer
ARadiation resistance plus loss resistance
BTransmission-line resistance plus radiation resistance
CRadiation resistance plus transmission resistance
DRadiation resistance plus space impedance

44. - E9B02

In the antenna radiation pattern shown in Figure E9-1, what is the front-to-back ratio?

SelectAnswer
A14 dB
B18 dB
C36 dB
D24 dB

45. - E9C10

Which of the following describes a Zepp antenna?

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

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

47. - E9E04

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

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

48. - E9F04

What impedance does a 1/2-wavelength transmission line present to a generator when the line is shorted at the far end?

SelectAnswer
AThe same as the characteristic impedance of the line
BVery low impedance
CThe same as the output impedance of the generator
DVery high impedance

49. - E9G01

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

SelectAnswer
ARadio propagation
BImpedance along transmission lines
CAntenna radiation pattern
DRadiation resistance

50. - E9H10

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

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

Figure E5-1

Figure E6-1

Figure E6-3

Figure E7-1

Figure E9-1