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

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1. - E0A09

Which insulating material commonly used as a thermal conductor for some types of electronic devices is extremely toxic if broken or crushed and the particles are accidentally inhaled?

SelectAnswer
ABeryllium Oxide
BZinc oxide
CMica
DUranium Hexafluoride

2. - E1A07

What is the maximum power permitted on the 2200 meter band?

SelectAnswer
A50 watts PEP
B5 watts EIRP (Equivalent isotropic radiated power)
C100 watts PEP
D1 watt EIRP (Equivalent isotropic radiated power)

3. - E1B03

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

SelectAnswer
A1 mile
B10 miles
C3 miles
D30 miles

4. - E1C07

At what level below a signal's mean power level is its bandwidth determined according to FCC rules?

SelectAnswer
A26 dB
B3 dB
C6 dB
D23 dB

5. - E1D10

Which amateur stations are eligible to be telecommand stations of space stations (subject to the privileges of the class of operator license held by the control operator of the station)?

SelectAnswer
AAny amateur station designated by NASA
BAll these choices are correct
CAny amateur station so designated by the space station licensee
DAny amateur station so designated by the ITU

6. - E1E12

What must the VE team do with the application form if the examinee does not pass the exam?

SelectAnswer
AMaintain the application form with the VEC's records
BDestroy the application form
CSend the application form to the FCC and inform the FCC of the grade
DReturn the application document to the examinee

7. - E1F09

Which of the following conditions apply when transmitting spread spectrum emissions?

SelectAnswer
AA station transmitting SS emission must not cause harmful interference to other stations employing other authorized emissions
BAll these choices are correct
CThe transmitting station must be in an area regulated by the FCC or in a country that permits SS emissions
DThe transmission must not be used to obscure the meaning of any communication

8. - E2A03

How is the signal inverted by an inverting linear transponder?

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

9. - E2B12

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

SelectAnswer
ASpecific tone frequencies
BA two-tone signal
CElapsed time
DSpecific tone amplitudes

10. - E2C08

Which of the following contacts may be confirmed through the U.S. QSL bureau system?

SelectAnswer
ARepeater contacts between U.S. club members
BContacts between a U.S. station and a non-U.S. station
CSpecial event contacts between stations in the U.S.
DContacts using tactical call signs

11. - E2D02

Which of the following is a good technique for making meteor scatter contacts?

SelectAnswer
A15-second timed transmission sequences with stations alternating based on location
BShort transmissions with rapidly repeated call signs and signal reports
CUse of special digital modes
DAll these choices are correct

12. - E2E03

How is the timing of FT4 contacts organized?

SelectAnswer
AAlternating transmissions at 7.5 second intervals
BStations take turns on alternate days
CIt depends on the lunar phase
DBy exchanging ACK/NAK packets

13. - E3A06

What might help to restore contact when DX signals become too weak to copy across an entire HF band a few hours after sunset?

SelectAnswer
AWait 24 hours before attempting another communication on the band
BSwitch to a lower frequency HF band
CWait 90 minutes or so for the signal degradation to pass
DSwitch to a higher frequency HF band

14. - E3B10

Why is chordal hop propagation desirable?

SelectAnswer
AThe MUF for chordal hop propagation is much lower than for normal skip propagation
BSignals travel faster along ionospheric chords
CThe signal experiences less loss compared to multi-hop using Earth as a reflector
DAtmospheric noise is lower in the direction of chordal hop propagation

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 four times the distance
DBy approximately 15 percent of the distance

16. - E4A11

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

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

17. - E4B11

Which of the following can be measured with a vector network analyzer?

SelectAnswer
AReflection coefficient
BInput impedance
CAll these choices are correct
DOutput impedance

18. - E4C01

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

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

19. - E4D05

What transmitter frequencies would cause an intermodulation-product signal in a receiver tuned to 146.70 MHz when a nearby station transmits on 146.52 MHz?

SelectAnswer
A146.34 MHz and 146.61 MHz
B146.10 MHz and 147.30 MHz
C146.88 MHz and 146.34 MHz
D173.35 MHz and 139.40 MHz

20. - E4E08

What current flows equally on all conductors of an unshielded multi-conductor cable?

SelectAnswer
AReturn current
BReactive current only
CDifferential-mode current
DCommon-mode current

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 current leads the voltage by 90 degrees
CThe voltage and current are in phase
DThe voltage leads the current by 90 degrees

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
AOne time constant
BA time factor of one
CAn exponential rate of one
DOne exponential period

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 4
BPoint 2
CPoint 5
DPoint 6

24. - E5D13

How many watts are consumed in a circuit consisting of a 100-ohm resistor in series with a 100-ohm inductive reactance drawing 1 ampere?

SelectAnswer
A100 watts
B200 watts
C141.4 watts
D70.7 watts

25. - E6A09

What is a depletion-mode FET?

SelectAnswer
AAny FET for which holes are the majority carriers
BAny FET without a channel
CAn FET that has no current flow between source and drain when no gate voltage is applied
DAn FET that exhibits a current flow between source and drain when no gate voltage is applied

26. - E6B10

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

SelectAnswer
A6
B5
C1
D7

27. - E6C02

What happens when the level of a comparator's input signal crosses the threshold?

SelectAnswer
AThe feedback loop becomes unstable
BThe IC input can be damaged
CThe comparator enters latch-up
DThe comparator changes its output state

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 series
BMotional capacitance, motional inductance, and loss resistance in series, all in parallel with a shunt capacitor representing electrode and stray capacitance
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 parallel

29. - E6E10

What advantage does surface-mount technology offer at RF compared to using through-hole components?

SelectAnswer
AShorter circuit-board traces
BAll these choices are correct
CSmaller circuit area
DComponents have less parasitic inductance and capacitance

30. - E6F08

Why are optoisolators often used in conjunction with solid-state circuits when switching 120 VAC?

SelectAnswer
AOptoisolators provide impedance matching between the control circuit and power circuit
BOptoisolators provide a low impedance link between a control circuit and a power circuit
COptoisolators provide a very high degree of electrical isolation between a control circuit and the circuit being switched
DOptoisolators eliminate the effects of reflected light in the control circuit

31. - E7A06

What is a characteristic of a monostable multivibrator?

SelectAnswer
AIt stores one bit of data in either a 0 or 1 state
BIt produces a continuous square wave oscillating between 1 and 0
CIt switches momentarily to the opposite binary state and then returns to its original state after a set time
DIt maintains a constant output voltage, regardless of variations in the input voltage

32. - E7B09

Which of the following describes how the loading and tuning capacitors are to be adjusted when tuning a vacuum tube RF power amplifier that employs a Pi-network output circuit?

SelectAnswer
AThe loading capacitor is adjusted to minimum plate current while alternately adjusting the tuning capacitor for maximum allowable plate current
BThe loading capacitor is set to maximum capacitance and the tuning capacitor is adjusted for minimum allowable plate current
CThe tuning capacitor is set to maximum capacitance and the loading capacitor is adjusted for minimum plate permissible current
DThe tuning capacitor is adjusted for minimum plate current, and the loading capacitor is adjusted for maximum permissible plate current

33. - E7C07

Which describes a Pi-L-network used for matching a vacuum tube final amplifier to a 50-ohm unbalanced output?

SelectAnswer
AA network with only three discrete parts
BA matching network in which all components are isolated from ground
CA Phase Inverter Load network
DA Pi-network with an additional series inductor on the output

34. - E7D08

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

SelectAnswer
AGrounded emitter amplifier
BLinear voltage regulator
CSwitching voltage regulator
DMonostable multivibrator

35. - E7E06

Why is de-emphasis commonly used in FM communications receivers?

SelectAnswer
AFor compatibility with transmitters using phase modulation
BFor higher efficiency
CTo reduce impulse noise reception
DTo remove third-order distortion products

36. - E7F12

Which of the following is an advantage of a Finite Impulse Response (FIR) filter vs an Infinite Impulse Response (IIR) digital filter?

SelectAnswer
AFIR filters can delay all frequency components of the signal by the same amount
BFIR filters are easier to implement for a given set of passband rolloff requirements
CAll these choices are correct
DFIR filters can respond faster to impulses

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. - E7H03

How is positive feedback supplied in a Hartley oscillator?

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

39. - E8A06

What is the approximate ratio of PEP-to-average power in a typical single-sideband phone signal?

SelectAnswer
A1 to 1
B2.5 to 1
C100 to 1
D25 to 1

40. - E8B02

How does the modulation index of a phase-modulated emission vary with RF carrier frequency?

SelectAnswer
AIt varies with the square root of the RF carrier frequency
BIt decreases as the RF carrier frequency increases
CIt increases as the RF carrier frequency increases
DIt does not depend on the RF carrier frequency

41. - E8C10

How may data rate be increased without increasing bandwidth?

SelectAnswer
AIt is impossible
BUsing forward error correction
CIncreasing analog-to-digital conversion resolution
DUsing a more efficient digital code

42. - E8D04

What is the primary effect of extremely short rise or fall time on a CW signal?

SelectAnswer
AMore difficult to copy
BLimits data speed
CThe generation of key clicks
DThe generation of RF harmonics

43. - E9A06

What is the effective radiated power relative to a dipole of a repeater station with 200 watts transmitter power output, 4 dB feed line loss, 3.2 dB duplexer loss, 0.8 dB circulator loss, and 10 dBd antenna gain?

SelectAnswer
A317 watts
B300 watts
C2000 watts
D126 watts

44. - E9B03

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

SelectAnswer
A14 dB
B18 dB
C24 dB
D12 dB

45. - E9C12

Which of the following describes an Extended Double Zepp antenna?

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

46. - E9D05

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

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

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
A50 ohms
B75 ohms
C450 ohms
D62 ohms

48. - E9F07

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

SelectAnswer
ASmaller reflection coefficient
BLower loss
CLower velocity factor
DHigher SWR

49. - E9G08

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

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

50. - E9H04

What is an advantage of placing a grounded electrostatic shield around a small loop direction-finding antenna?

SelectAnswer
AIt increases signal strength by providing a better match to the feed line
BIt eliminates tracking errors caused by strong out-of-band signals
CIt adds capacitive loading, increasing the bandwidth of the antenna
DIt eliminates unbalanced capacitive coupling to the surroundings, improving the nulls

Figure E5-1

Figure E6-2

Figure E7-2

Figure E9-1