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

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1. - E0A08

What does SAR measure?

SelectAnswer
ASynthetic Aperture Ratio of the human body
BThe rate at which RF energy is absorbed by the body
CThe rate of RF energy reflected from stationary terrain
DSignal Amplification Rating

2. - E1A04

With your transceiver displaying the carrier frequency of phone signals, you hear a DX station calling CQ on 3.601 MHz LSB. Is it legal to return the call using lower sideband on the same frequency?

SelectAnswer
AYes, because the displayed frequency is within the 75 meter phone band segment
BNo, U.S. stations are not permitted to use phone emissions below 3.610 MHz
CYes, because the DX station initiated the contact
DNo, the sideband will extend beyond the edge of the phone band segment

3. - E1B03

Within what distance must an amateur station protect an FCC monitoring facility from harmful interference?

SelectAnswer
A1 mile
B10 miles
C30 miles
D3 miles

4. - E1C01

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

SelectAnswer
A2.8 kHz
B1.5 kHz
C60 Hz
D170 Hz

5. - E1D08

Which VHF amateur bands have frequencies authorized for space stations?

SelectAnswer
A2 meters
B6 meters and 2 meters
C2 meters and 1.25 meters
D6 meters, 2 meters, and 1.25 meters

6. - E1E08

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

SelectAnswer
AFriends of the VE
BRelatives of the VE as listed in the FCC rules
CAll these choices are correct
DEmployees of the VE

7. - E1F02

What privileges are authorized in the U.S. to persons holding an amateur service license granted by the government of Canada?

SelectAnswer
ANone, they must obtain a U.S. license
BAll privileges of the Amateur Extra Class license
CFull privileges, up to and including those of the Amateur Extra Class license, on the 80, 40, 20, 15, and 10 meter bands
DThe operating terms and conditions of the Canadian amateur service license, not to exceed U.S. Amateur Extra Class license privileges

8. - E2A06

What are Keplerian elements?

SelectAnswer
AParameters that define the orbit of a satellite
BEncrypting codes used for spread spectrum modulation
CHigh-emission heater filaments used in magnetron tubes
DPhase reversing elements in a Yagi antenna

9. - E2B12

What signals SSTV receiving software to begin a new picture line?

SelectAnswer
AA two-tone signal
BSpecific tone amplitudes
CSpecific tone frequencies
DElapsed time

10. - E2C09

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

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

11. - E2D01

Which of the following digital modes is designed for meteor scatter communications?

SelectAnswer
AAPRS
BMSK144
CWSPR
DHellschreiber

12. - E2E04

What is indicated when one of the ellipses in an FSK crossed-ellipse display suddenly disappears?

SelectAnswer
AThe receiver has drifted 5 kHz from the desired receive frequency
BOne of the signal filters is saturated
CSelective fading has occurred
DThe mark and space signal have been inverted

13. - E3A13

Which of these emission modes is best for auroral propagation?

SelectAnswer
AFM
BCW
CSSB
DRTTY

14. - E3B05

Which amateur bands typically support long-path propagation?

SelectAnswer
AOnly 160 meters to 40 meters
B6 meters to 2 meters
COnly 30 meters to 10 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
ANVIS
BPolar
CTransequatorial
DSporadic E

16. - E4A01

Which of the following limits the highest frequency signal that can be accurately displayed on a digital oscilloscope?

SelectAnswer
ASampling rate of the analog-to-digital converter
BAll these choices are correct
CAmount of memory
DQ of the circuit

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
A75 watts
B100 watts
C125 watts
D25 watts

18. - E4C01

What is an effect of excessive phase noise in a receiver's local oscillator?

SelectAnswer
AIt decreases receiver third-order intercept point
BIt can combine with strong signals on nearby frequencies to generate interference
CIt can affect the receiver's frequency calibration
DIt limits the receiver's ability to receive strong signals

19. - E4D03

How can intermodulation interference between two repeaters occur?

SelectAnswer
AWhen the signals from the transmitters are reflected out of phase from airplanes passing overhead
BWhen the repeaters are in close proximity and the signals mix in the final amplifier of one or both transmitters
CWhen the signals from the transmitters are reflected in phase from airplanes passing overhead
DWhen the repeaters are in close proximity and the signals cause feedback in the final amplifier of one or both transmitters

20. - E4E04

How can conducted and radiated noise caused by an automobile alternator be suppressed?

SelectAnswer
ABy connecting the radio's power leads directly to the battery and by installing coaxial capacitors in line with the alternator leads
BBy installing a noise suppression resistor and a blocking capacitor in both leads
CBy installing filter capacitors in series with the DC power lead and a blocking capacitor in the field lead
DBy installing a high-pass filter in series with the radio's power lead and a low-pass filter in parallel with the field lead

21. - E5A08

What is the phase relationship between the current through and the voltage across a series resonant circuit at resonance?

SelectAnswer
AThe voltage and current are 180 degrees out of phase
BThe voltage leads the current by 90 degrees
CThe voltage and current are in phase
DThe current leads the voltage by 90 degrees

22. - E5B09

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

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

23. - E5C10

Which point on Figure E5-1 best represents the impedance of a series circuit consisting of a 400-ohm resistor and a 38-picofarad capacitor at 14 MHz?

SelectAnswer
APoint 5
BPoint 6
CPoint 2
DPoint 4

24. - E5D02

Why is it important to keep lead lengths short for components used in circuits for VHF and above?

SelectAnswer
ATo avoid unwanted inductive reactance
BTo increase the thermal time constant
CTo maintain component lifetime
DAll these choices are correct

25. - E6A11

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

SelectAnswer
A3
B6
C1
D2

26. - E6B05

What characteristic of a PIN diode makes it useful as an RF switch?

SelectAnswer
AAbility to dissipate large amounts of power
BReverse bias controls its forward voltage drop
CExtremely high reverse breakdown voltage
DLow junction capacitance

27. - E6C06

Why do CMOS digital integrated circuits have high immunity to noise on the input signal or power supply?

SelectAnswer
ABandwidth is very limited
BThe input switching threshold is about one-half the power supply voltage
CThe input switching threshold is about two times the power supply voltage
DLarge bypass capacitance is inherent

28. - E6D02

What is the equivalent circuit of a quartz crystal?

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

29. - E6E05

Which of the following noise figure values is typical of a low-noise UHF preamplifier?

SelectAnswer
A44 dBm
B2 dB
C-10 dB
D-20 dBm

30. - E6F10

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

SelectAnswer
ASilicon
BSelenium
CCopper oxide
DCadmium Sulfide

31. - E7A10

What is a truth table?

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

32. - E7B11

In Figure E7-1, what is the purpose of R3?

SelectAnswer
AOutput load resistor
BSelf bias
CFixed bias
DEmitter bypass

33. - E7C03

What advantage does a series-L Pi-L-network have over a series-L Pi-network for impedance matching between the final amplifier of a vacuum-tube transmitter and an antenna?

SelectAnswer
AGreater transformation range
BHigher efficiency
CDoes not require a capacitor
DGreater harmonic suppression

34. - E7D03

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

SelectAnswer
AA tunnel diode
BA Zener diode
CA varactor diode
DAn SCR

35. - E7E02

What is the function of a reactance modulator?

SelectAnswer
ATo produce PM or FM signals by using an electrically variable inductance or capacitance
BTo produce AM signals by using an electrically variable inductance or capacitance
CTo produce PM signals by using an electrically variable resistance
DTo produce AM signals by using an electrically variable resistance

36. - E7F13

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

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

37. - E7G08

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

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

38. - E7H03

How is positive feedback supplied in a Hartley oscillator?

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

39. - E8A05

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

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

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
A1000
B0.3
C3000
D3

41. - E8C01

How is Forward Error Correction implemented?

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

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

43. - E9A12

How much gain does an antenna have compared to a 1/2-wavelength dipole when it has 6 dB gain over an isotropic antenna?

SelectAnswer
A8.15 dB
B2.79 dB
C6.0 dB
D3.85 dB

44. - E9B01

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

SelectAnswer
A30 degrees
B75 degrees
C25 degrees
D50 degrees

45. - E9C01

What is the radiation pattern of two 1/4-wavelength vertical antennas spaced 1/2-wavelength apart and fed 180 degrees out of phase?

SelectAnswer
AA figure-8 broadside to the axis of the array
BCardioid
COmni-directional
DA figure-8 oriented along the axis of the array

46. - E9D02

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

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

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. - E9F08

Which of the following is a significant difference between foam dielectric coaxial cable and solid dielectric cable, assuming all other parameters are the same?

SelectAnswer
AFoam dielectric has lower loss per unit of length
BFoam dielectric has higher velocity factor
CFoam dielectric has lower safe operating voltage limits
DAll these choices are correct

49. - E9G11

How are the wavelength scales on a Smith chart calibrated?

SelectAnswer
AIn fractions of transmission line electrical frequency
BIn fractions of antenna electrical frequency
CIn fractions of antenna electrical wavelength
DIn fractions of transmission line electrical wavelength

50. - E9H09

What is a Pennant antenna?

SelectAnswer
AA four-element, high-gain vertical array invented by George Pennant
BA form of rhombic antenna terminated in a variable capacitor to provide frequency diversity
CA stealth antenna built to look like a flagpole
DA small, vertically oriented receiving antenna consisting of a triangular loop terminated in approximately 900 ohms

Figure E5-1

Figure E6-1

Figure E7-1

Figure E9-1