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

2. - E1A05

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

SelectAnswer
A100 watts PEP effective radiated power relative to the gain of a half-wave dipole
B100 watts PEP effective radiated power relative to an isotropic radiator
C50 watts PEP effective radiated power relative to a dipole
D50 watts PEP effective radiated power relative to an isotropic radiator

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
A10 kHz
B20 kHz
C15 kHz
D3 kHz

4. - E1C07

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

SelectAnswer
A3 dB
B26 dB
C6 dB
D23 dB

5. - E1D03

What is a space telecommand station?

SelectAnswer
AAn amateur station that receives telemetry from a satellite or balloon more than 50 kilometers above the surface of the Earth
BAn amateur station that transmits communications to initiate, modify or terminate functions of a space station
CAn amateur station located on the surface of the Earth for communication with other Earth stations by means of Earth satellites
DAn amateur station located in a satellite or a balloon more than 50 kilometers above the surface of the Earth

6. - E1E02

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

SelectAnswer
AThe FCC
BThe VECs
CThe VEs
DThe ARRL

7. - E1F01

On what frequencies are spread spectrum transmissions permitted?

SelectAnswer
AOnly on amateur frequencies above 222 MHz
BOnly on amateur frequencies above 50 MHz
COnly on amateur frequencies above 420 MHz
DOnly on amateur frequencies above 144 MHz

8. - E2A11

What type of antenna can be used to minimize the effects of spin modulation and Faraday rotation?

SelectAnswer
AA linearly polarized antenna
BA log-periodic dipole array
CA circularly polarized antenna
DAn isotropic antenna

9. - E2B10

What aspect of an analog slow-scan television signal encodes the brightness of the picture?

SelectAnswer
ATone amplitude
BSync frequency
CTone frequency
DSync amplitude

10. - E2C12

What technique do individual nodes use to form a mesh network?

SelectAnswer
ACustom code plugs for the local trunking systems
BDiscovery and link establishment protocols
CForward error correction and Viterbi codes
DActing as store-and-forward digipeaters

11. - E2D08

What type of packet frame is used to transmit APRS beacon data?

SelectAnswer
AUnnumbered Information
BConnect
CAcknowledgement
DDisconnect

12. - E2E12

How do ALE stations establish contact?

SelectAnswer
AALE constantly scans a list of frequencies, activating the radio when the designated call sign is received
BALE radios monitor an internet site for the frequency they are being paged on
CALE radios send a constant tone code to establish a frequency for future use
DALE radios activate when they hear their signal echoed by back scatter

13. - E3A03

When scheduling EME contacts, which of these conditions will generally result in the least path loss?

SelectAnswer
AWhen the MUF is above 30 MHz
BWhen the moon is at perigee
CWhen the moon is full
DWhen the moon is at apogee

14. - E3B01

What is transequatorial propagation?

SelectAnswer
APropagation between points located on the magnetic equator
BPropagation between a point on the equator and its antipodal point
CPropagation between two mid-latitude points at approximately the same distance north and south of the magnetic equator
DPropagation between points at the same latitude

15. - E3C11

What does VOACAP software model?

SelectAnswer
AAC voltage and impedance
BAC current and impedance
CHF propagation
DVHF radio propagation

16. - E4A06

What is the effect of aliasing on a digital oscilloscope caused by setting the time base too slow?

SelectAnswer
AAll signals will have a DC offset
BCalibration of the vertical scale is no longer valid
CExcessive blanking occurs, which prevents display of the signal
DA false, jittery low-frequency version of the signal is displayed

17. - E4B11

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

SelectAnswer
AReflection coefficient
BAll these choices are correct
CInput impedance
DOutput impedance

18. - E4C10

What is an advantage of having a variety of receiver IF bandwidths from which to select?

SelectAnswer
AReceiver power consumption can be reduced when wider bandwidth is not required
BMultiple frequencies can be received simultaneously if desired
CThe noise figure of the RF amplifier can be adjusted to match the modulation type, thus increasing receiver sensitivity
DReceive bandwidth can be set to match the modulation bandwidth, maximizing signal-to-noise ratio and minimizing interference

19. - E4D07

Which of the following reduces the likelihood of receiver desensitization?

SelectAnswer
ASwitch from fast AGC to slow AGC
BRaise the receiver IF frequency
CDecrease the RF bandwidth of the receiver
DIncrease the receiver front end gain

20. - E4E06

What is one type of electrical interference that might be caused by a nearby personal computer?

SelectAnswer
AThe appearance of unstable modulated or unmodulated signals at specific frequencies
BA whining type noise that continually pulses off and on
CA loud AC hum in the audio output of your station receiver
DA clicking noise at intervals of a few seconds

21. - E5A13

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

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

22. - E5B10

What is the relationship between the AC current through an inductor and the voltage across an inductor?

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

23. - E5C07

Where is the impedance of a pure resistance plotted on rectangular coordinates?

SelectAnswer
AOn a line through the origin, slanted at 45 degrees
BOn the horizontal axis
COn a horizontal line, offset vertically above the horizontal axis
DOn the vertical axis

24. - E5D03

What is microstrip?

SelectAnswer
APrecision printed circuit conductors above a ground plane that provide constant impedance interconnects at microwave frequencies
BMiniature coax used for low power applications
CShort lengths of coax mounted on printed circuit boards to minimize time delay between microwave circuits
DLightweight transmission line made of common zip cord

25. - E6A11

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

SelectAnswer
A2
B1
C3
D6

26. - E6B11

What is used to control the attenuation of RF signals by a PIN diode?

SelectAnswer
AA sub-harmonic pump signal
BForward DC bias current
CCapacitance of an RF coupling capacitor
DReverse voltage larger than the RF signal

27. - E6C01

What is the function of hysteresis in a comparator?

SelectAnswer
ATo increase the sensitivity
BTo allow the comparator to be used with AC input signals
CTo cause the output to change states continually
DTo prevent input noise from causing unstable output signals

28. - E6D01

Why should core saturation of an impedance matching transformer be avoided?

SelectAnswer
AHarmonics and distortion could result
BMagnetic flux would increase with frequency
CTemporary changes of the core permeability could result
DRF susceptance would increase

29. - E6E01

Why is gallium arsenide (GaAs) useful for semiconductor devices operating at UHF and higher frequencies?

SelectAnswer
AHigher electron mobility
BHigher noise figures
CLower transconductance
DLower junction voltage drop

30. - E6F09

What is the efficiency of a photovoltaic cell?

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

31. - E7A09

What logical operation is performed by an exclusive NOR gate?

SelectAnswer
AIt produces logic 1 at its output if only one input is logic 1
BIt produces logic 1 at its output only if all inputs are logic 1
CIt produces logic 0 at its output if only one input is logic 1
DIt produces logic 0 at its output only if all inputs are logic 0

32. - E7B10

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

SelectAnswer
ASelf bias
BLoad resistors
CFeedback
DVoltage divider bias

33. - E7C05

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

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

34. - E7D08

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

SelectAnswer
ASwitching voltage regulator
BGrounded emitter amplifier
CLinear voltage regulator
DMonostable multivibrator

35. - E7E02

What is the function of a reactance modulator?

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

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

37. - E7G09

What will be the output voltage of the circuit shown in Figure E7-3 if R1 is 1000 ohms, RF is 10,000 ohms, and 0.23 volts DC is applied to the input?

SelectAnswer
A0.23 volts
B2.3 volts
C-0.23 volts
D-2.3 volts

38. - E7H15

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

SelectAnswer
AFrequency synthesis, FM demodulation
BPhotovoltaic conversion, optical coupling
CComparison of two digital input signals, digital pulse counter
DWide-band AF and RF power amplification

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
CDifferential analysis
DVector analysis

40. - E8B01

What is the modulation index of an FM signal?

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

41. - E8C01

How is Forward Error Correction implemented?

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

42. - E8D10

What are some of the differences between the Baudot digital code and ASCII?

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

43. - E9A05

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

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

44. - E9B03

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

SelectAnswer
A24 dB
B14 dB
C12 dB
D18 dB

45. - E9C07

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

SelectAnswer
A72 ohms
B50 ohms
C300 ohms
D450 ohms

46. - E9D04

Why should an HF mobile antenna loading coil have a high ratio of reactance to resistance?

SelectAnswer
ATo swamp out harmonics
BTo lower the radiation angle
CTo minimize losses
DTo minimize the Q

47. - E9E09

Which of the following is used to shunt-feed a grounded tower at its base?

SelectAnswer
AGamma match
BAll these choices are correct
CHairpin match
DDouble-bazooka match

48. - E9F09

What is the approximate physical length of a foam polyethylene dielectric coaxial transmission line that is electrically 1/4 wavelength long at 7.2 MHz?

SelectAnswer
A10.4 meters
B5.2 meters
C8.3 meters
D6.9 meters

49. - E9G06

On the Smith chart shown in Figure E9-3, what is the name for the large outer circle on which the reactance arcs terminate?

SelectAnswer
APrime axis
BPolar axis
CImpedance axis
DReactance axis

50. - E9H10

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

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

Figure E6-1

Figure E7-1

Figure E7-2

Figure E7-3

Figure E9-1

Figure E9-3