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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
AGround reflections and scattering make the field strength vary with location
BE field and H field radiation intensity peaks can occur at different locations
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
A50 watts PEP effective radiated power relative to an isotropic radiator
B50 watts PEP effective radiated power relative to a dipole
C100 watts PEP effective radiated power relative to an isotropic radiator
D100 watts PEP effective radiated power relative to the gain of a half-wave dipole

3. - E1B11

What does PRB-1 require of regulations affecting amateur radio?

SelectAnswer
AUse of wireless devices in a vehicle is exempt from regulation
BAmateur radio operations must be permitted in any private residence
CNo limitations may be placed on antenna size or placement
DReasonable accommodations of amateur radio must be made

4. - E1C01

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

SelectAnswer
A60 Hz
B1.5 kHz
C170 Hz
D2.8 kHz

5. - E1D04

Which of the following is required in the identification transmissions from a balloon-borne telemetry station?

SelectAnswer
AThe output power of the balloon transmitter
BThe station's six-character Maidenhead grid locator
CAll these choices are correct
DCall sign

6. - E1E02

Who does Part 97 task with maintaining the pools of questions for all U.S. amateur license examinations?

SelectAnswer
AThe ARRL
BThe VEs
CThe VECs
DThe FCC

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
BThe operating terms and conditions of the Canadian amateur service license, not to exceed U.S. Amateur Extra Class license privileges
CAll privileges of the Amateur Extra Class license
DFull privileges, up to and including those of the Amateur Extra Class license, on the 80, 40, 20, 15, and 10 meter bands

8. - E2A05

What do the letters in a satellite's mode designator specify?

SelectAnswer
AThe polarization of uplink and downlink signals
BPower limits for uplink and downlink transmissions
CThe location of the ground control station
DThe uplink and downlink frequency ranges

9. - E2B01

How many times per second is a new frame transmitted in a fast-scan (NTSC) television system?

SelectAnswer
A120
B90
C30
D60

10. - E2C07

What is the Cabrillo format?

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

11. - E2D06

Which of the following describes a method of establishing EME contacts?

SelectAnswer
AStoring and forwarding digital messages
BJudging optimum transmission times by monitoring beacons reflected from the moon
CTime synchronous transmissions alternately from each station
DHigh-speed CW identification to avoid fading

12. - E2E01

Which of the following types of modulation is common for data emissions below 30 MHz?

SelectAnswer
APulse modulation
BDTMF tones modulating an FM signal
CFSK
DSpread spectrum

13. - E3A12

What is the cause of auroral activity?

SelectAnswer
AAn extreme low-pressure area in the polar regions
BMeteor showers concentrated in the extreme northern and southern latitudes
CThe interaction in the F2 layer between the solar wind and the Van Allen belt
DThe interaction in the E layer of charged particles from the Sun with the Earth's magnetic field

14. - E3B07

What happens to linearly polarized radio waves that split into ordinary and extraordinary waves in the ionosphere?

SelectAnswer
AThey are bent toward the magnetic poles
BThey become phase locked
CThey become elliptically polarized
DThey become depolarized

15. - E3C12

How does the maximum range of ground-wave propagation change when the signal frequency is increased?

SelectAnswer
AIt peaks at roughly 14 MHz
BIt decreases
CIt stays the same
DIt increases

16. - E4A11

How should an antenna analyzer be connected when measuring antenna resonance and feed point impedance?

SelectAnswer
ALoosely couple the antenna and a dummy load to the analyzer
BLoosely couple the analyzer near the antenna base
CConnect the analyzer via a high-impedance transformer to the antenna
DConnect the antenna feed line directly to the analyzer's connector

17. - E4B09

What is indicated if the current reading on an RF ammeter placed in series with the antenna feed line of a transmitter increases as the transmitter is tuned to resonance?

SelectAnswer
AThere is more power going into the antenna
BThere is an impedance mismatch between the antenna and feed line
CThere is possibly a short to ground in the feed line
DThe transmitter is not properly neutralized

18. - E4C09

Which of the following choices is a good reason for selecting a high frequency for the design of the IF in a superheterodyne HF or VHF communications receiver?

SelectAnswer
AReduced drift
BFewer components in the receiver
CImproved receiver noise figure
DEasier for front-end circuitry to eliminate image responses

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 cause feedback 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 mix in the final amplifier of one or both transmitters

20. - E4E09

What undesirable effect can occur when using an IF noise blanker?

SelectAnswer
AReceived audio in the speech range might have an echo effect
BNearby signals may appear to be excessively wide even if they meet emission standards
CFM signals can no longer be demodulated
DThe audio frequency bandwidth of the received signal might be compressed

21. - E5A09

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

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

22. - E5B03

How is impedance in polar form converted to an equivalent admittance?

SelectAnswer
ATake the reciprocal of the magnitude and change the sign of the angle
BTake the square root of the magnitude and add 180 degrees to the angle
CTake the reciprocal of the angle and change the sign of the magnitude
DSquare the magnitude and subtract 90 degrees from the angle

23. - E5C01

Which of the following represents capacitive reactance in rectangular notation?

SelectAnswer
ADelta
B+jX
C-jX
DOmega

24. - E5D04

Why are short connections used at microwave frequencies?

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

25. - E6A07

Which of the following indicates that a silicon NPN junction transistor is biased on?

SelectAnswer
ABase-to-emitter resistance of approximately 0.6 to 0.7 ohms
BBase-to-emitter voltage of approximately 0.6 to 0.7 volts
CBase-to-emitter voltage of approximately 6 to 7 volts
DBase-to-emitter resistance of approximately 6 to 7 ohms

26. - E6B03

What type of bias is required for an LED to emit light?

SelectAnswer
AForward bias
BReverse bias
CZero bias
DInductive bias

27. - E6C11

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

SelectAnswer
A2
B6
C4
D5

28. - E6D02

What is the equivalent circuit of a quartz crystal?

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

29. - E6E02

Which of the following device packages is a through-hole type?

SelectAnswer
ABall grid array
BDIP
CPLCC
DSOT

30. - E6F04

What is the photovoltaic effect?

SelectAnswer
AThe conversion of voltage to current when exposed to light
BThe conversion of electrical energy to mechanical energy
CThe tendency of a battery to discharge when exposed to light
DThe conversion of light to electrical energy

31. - E7A05

Which of the following is a circuit that continuously alternates between two states without an external clock?

SelectAnswer
AMonostable multivibrator
BJ-K flip-flop
CAstable multivibrator
DT flip-flop

32. - E7B12

What type of amplifier circuit is shown in Figure E7-1?

SelectAnswer
ACommon emitter
BEmitter follower
CCommon collector
DCommon base

33. - E7C05

Which filter type is described as having ripple in the passband and a sharp cutoff?

SelectAnswer
AA passive op-amp filter
BA Chebyshev filter
CA Butterworth filter
DAn active LC filter

34. - E7D09

What is the main reason to use a charge controller with a solar power system?

SelectAnswer
AMatching of day and night charge rates
BPrevention of battery damage due to overcharge
CPrevention of battery undercharge
DControl of electrolyte levels during battery discharge

35. - E7E07

What is meant by the term "baseband" in radio communications?

SelectAnswer
AThe basic oscillator frequency in an FM transmitter that is multiplied to increase the deviation and carrier frequency
BThe lowest frequency band that the transmitter or receiver covers
CThe unmodulated bandwidth of the transmitted signal
DThe frequency range occupied by a message signal prior to modulation

36. - E7F06

What is the minimum number of bits required for an analog-to-digital converter to sample a signal with a range of 1 volt at a resolution of 1 millivolt?

SelectAnswer
A6 bits
B8 bits
C10 bits
D4 bits

37. - E7G11

What absolute voltage gain can be expected from the circuit in Figure E7-3 when R1 is 3300 ohms and RF is 47 kilohms?

SelectAnswer
A7
B28
C14
D0.07

38. - E7H15

Which of these functions can be performed by a phase-locked loop?

SelectAnswer
APhotovoltaic conversion, optical coupling
BWide-band AF and RF power amplification
CComparison of two digital input signals, digital pulse counter
DFrequency synthesis, FM demodulation

39. - E8A04

What is "dither" with respect to analog-to-digital converters?

SelectAnswer
AAn error caused by irregular quantization step size
BAn abnormal condition where the converter cannot settle on a value to represent the signal
CA method of decimation by randomly skipping samples
DA small amount of noise added to the input signal to allow more precise representation of a signal over time

40. - E8B01

What is the modulation index of an FM signal?

SelectAnswer
AThe type of modulation used by the transmitter
BThe ratio of modulating signal amplitude to frequency deviation
CThe bandwidth of the transmitted signal divided by the modulating signal frequency
DThe ratio of frequency deviation to modulating signal frequency

41. - E8C05

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

SelectAnswer
A104 Hz
B26 Hz
C52 Hz
D13 Hz

42. - E8D11

What is one advantage of using ASCII code for data communications?

SelectAnswer
AIt contains fewer information bits per character than any other code
BIt is possible to transmit both upper and lower case text
CIt includes built-in error correction features
DIt uses one character as a shift code to send numeric and special characters

43. - E9A02

What is the effective radiated power relative to a dipole of a repeater station with 150 watts transmitter power output, 2 dB feed line loss, 2.2 dB duplexer loss, and 7 dBd antenna gain?

SelectAnswer
A1977 watts
B78.7 watts
C286 watts
D420 watts

44. - E9B07

How does the total amount of radiation emitted by a directional gain antenna compare with the total amount of radiation emitted from a theoretical isotropic antenna, assuming each is driven by the same amount of power?

SelectAnswer
AThe total amount of radiation from the directional antenna is stronger by its front-to-back ratio
BThe total amount of radiation from the directional antenna is increased by the gain of the antenna
CThe radiation from the isotropic antenna is 2.15 dB stronger than that from the directional antenna
DThey are the same

45. - E9C07

What is the approximate feed point impedance at the center of a two-wire folded dipole antenna?

SelectAnswer
A50 ohms
B450 ohms
C72 ohms
D300 ohms

46. - E9D05

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

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

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. - E9F04

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

SelectAnswer
AVery high impedance
BThe same as the output impedance of the generator
CThe same as the characteristic impedance of the line
DVery low impedance

49. - E9G10

What do the arcs on a Smith chart represent?

SelectAnswer
APoints with constant resistance
BSWR
CPoints with constant reactance
DFrequency

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 increasing the number of turns and/or the area
CBy reducing the permeability of the loop shield
DBy utilizing high impedance wire for the coupling loop

Figure E6-3

Figure E7-1

Figure E7-3