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1 | Question | Answer | ||||||||||||||||||||||||
2 | Which of the following is a safety hazard of a 12-volt storage battery that lacks internal protection circuitry? Choice A: Touching both terminals with your hands can cause electrical shock. Choice B: Shorting the terminals can cause burns, fire, or an explosion. Choice C: RF emissions from a nearby transmitter can cause the electrolyte to emit poison gas. Choice D: All these choices are correct. | Shorting the terminals can cause burns, fire, or an explosion | ||||||||||||||||||||||||
3 | What health hazard is posed by electrical current flowing through the body? Choice A: It may cause injury by heating body tissue. Choice B: It may disrupt the electrical functions of cells. Choice C: It may cause involuntary muscle contractions. Choice D: All these choices are correct. | All these choices are correct | ||||||||||||||||||||||||
4 | In the United States, what circuit does black wire insulation indicate in a three-wire 120 V AC cable? Choice A: Neutral. Choice B: Hot. Choice C: Equipment ground. Choice D: Negative. | Hot | ||||||||||||||||||||||||
5 | What is the purpose of a fuse in an electrical circuit? Choice A: To prevent power supply ripple from damaging a component. Choice B: To remove power in case of an overload. Choice C: To limit current and prevent shocks. Choice D: All these choices are correct. | To remove power in case of an overload | ||||||||||||||||||||||||
6 | Why should a 5-ampere fuse never be replaced with a 20-ampere fuse? Choice A: The larger fuse would be likely to blow because it is rated for higher current. Choice B: The power supply ripple would greatly increase. Choice C: Excessive current could cause a fire. Choice D: Voltage drop in the higher current fuse could result in excessively low voltage to the device. | Excessive current could cause a fire | ||||||||||||||||||||||||
7 | What is a good way to guard against electrical shock at your station? Choice A: Use three-wire cords and plugs for all AC powered equipment. Choice B: Connect all AC powered station equipment to a common safety ground. Choice C: Ensure all capacitors used for high-voltage DC are fully discharged before working inside equipment. Choice D: All these choices are correct. | All these choices are correct | ||||||||||||||||||||||||
8 | Where should a lightning arrester be installed in a coaxial feed line? Choice A: At the output connector of a transceiver. Choice B: At the antenna feed point. Choice C: At the AC power service panel. Choice D: On a grounded panel near where feed lines enter the building. | On a grounded panel near where feed lines enter the building | ||||||||||||||||||||||||
9 | Where should a fuse or circuit breaker be installed in a 120V AC power circuit? Choice A: In series with the hot conductor only. Choice B: In series with the hot and neutral conductors. Choice C: In parallel with the hot conductor only. Choice D: In parallel with the hot and neutral conductors. | In series with the hot conductor only | ||||||||||||||||||||||||
10 | What should be done to all external ground rods or earth connections? Choice A: Waterproof them with silicone caulk or electrical tape. Choice B: Keep them as far apart as possible. Choice C: Bond them together with heavy wire or conductive strap. Choice D: Tune them for resonance on the lowest frequency of operation. | Bond them together with heavy wire or conductive strap | ||||||||||||||||||||||||
11 | What hazard exists when rapidly charging or discharging an unprotected battery? Choice A: Overheating or out-gassing. Choice B: Excess output ripple. Choice C: Electric shock. Choice D: Overvoltage. | Overheating or out-gassing | ||||||||||||||||||||||||
12 | What hazard exists in a power supply immediately after turning it off? Choice A: Circulating currents in the dc filter. Choice B: Leakage flux in the power transformer. Choice C: Voltage transients from kickback diodes. Choice D: Charge stored in filter capacitors. | Charge stored in filter capacitors | ||||||||||||||||||||||||
13 | Which of the following precautions should be taken when measuring high voltages with a voltmeter? Choice A: Ensure that the voltmeter has very low impedance. Choice B: Ensure that the voltmeter and its leads are rated for use at the voltages being measured. Choice C: Ensure that the circuit is grounded through the voltmeter. Choice D: Ensure that the voltmeter is set to the correct frequency. | Ensure that the voltmeter and its leads are rated for use at the voltages being measured | ||||||||||||||||||||||||
14 | Which of the following is good practice when installing ground wires on a tower for lightning protection? Choice A: Put a drip loop in the ground connection to prevent water damage to the ground system. Choice B: Make sure all ground wire bends are right angles. Choice C: Ensure that connections are short and direct. Choice D: All these choices are correct. | Ensure that connections are short and direct | ||||||||||||||||||||||||
15 | What is required when climbing an antenna tower? Choice A: Have sufficient training on safe tower climbing techniques. Choice B: Use appropriate tie-off to the tower at all times. Choice C: Always wear an approved climbing harness. Choice D: All these choices are correct. | All these choices are correct | ||||||||||||||||||||||||
16 | Under what circumstances is it safe to climb a tower without a helper or observer? Choice A: When no electrical work is being performed. Choice B: When no mechanical work is being performed. Choice C: When the work being done is not more than 20 feet above the ground. Choice D: Never. | Never | ||||||||||||||||||||||||
17 | Which of the following is an important safety precaution to observe when putting up an antenna tower? Choice A: Wear a ground strap connected to your wrist at all times. Choice B: Insulate the base of the tower to avoid lightning strikes. Choice C: Look for and stay clear of any overhead electrical wires. Choice D: All these choices are correct. | Look for and stay clear of any overhead electrical wires | ||||||||||||||||||||||||
18 | What is the purpose of a safety wire through a turnbuckle used to tension guy lines? Choice A: Secure the guy line if the turnbuckle breaks. Choice B: Prevent loosening of the turnbuckle from vibration. Choice C: Provide a ground path for lightning strikes. Choice D: Provide an ability to measure for proper tensioning. | Prevent loosening of the turnbuckle from vibration | ||||||||||||||||||||||||
19 | What is the minimum safe distance from a power line to allow when installing an antenna? Choice A: Add the height of the antenna to the height of the power line and multiply by a factor of 1.5. Choice B: The height of the power line above ground. Choice C: 1/2 wavelength at the operating frequency. Choice D: Enough so that if the antenna falls, no part of it can come within 10 feet of the power wires. | Enough so that if the antenna falls, no part of it can come within 10 feet of the power wires | ||||||||||||||||||||||||
20 | Which of the following is an important safety rule to remember when using a crank-up tower? Choice A: This type of tower must never be painted. Choice B: This type of tower must never be grounded. Choice C: This type of tower must not be climbed unless it is retracted, or mechanical safety locking devices have been installed. Choice D: All these choices are correct. | This type of tower must not be climbed unless it is retracted, or mechanical safety locking devices have been installed | ||||||||||||||||||||||||
21 | Which is a proper grounding method for a tower? Choice A: A single four-foot ground rod, driven into the ground no more than 12 inches from the base. Choice B: A ferrite-core RF choke connected between the tower and ground. Choice C: A connection between the tower base and a cold-water pipe. Choice D: Separate eight-foot ground rods for each tower leg, bonded to the tower and each other. | Separate eight-foot ground rods for each tower leg, bonded to the tower and each other | ||||||||||||||||||||||||
22 | Why should you avoid attaching an antenna to a utility pole? Choice A: The antenna will not work properly because of induced voltages. Choice B: The antenna may unbalance the power transformer, causing power fluctuations. Choice C: The antenna could contact high-voltage power lines. Choice D: All these choices are correct. | The antenna could contact high-voltage power lines | ||||||||||||||||||||||||
23 | Which of the following is true when installing grounding conductors used for lightning protection? Choice A: Use only non-insulated wire. Choice B: Wires must be carefully routed with precise right-angle bends. Choice C: Sharp bends must be avoided. Choice D: Common grounds must be avoided. | Sharp bends must be avoided | ||||||||||||||||||||||||
24 | Which of the following establishes grounding requirements for an amateur radio tower or antenna? Choice A: FCC Part 97 rules. Choice B: Local electrical codes. Choice C: FAA tower lighting regulations. Choice D: UL recommended practices. | Local electrical codes | ||||||||||||||||||||||||
25 | What type of radiation are radio signals? Choice A: Gamma radiation. Choice B: Ionizing radiation. Choice C: Alpha radiation. Choice D: Non-ionizing radiation. | Non-ionizing radiation | ||||||||||||||||||||||||
26 | Which of the following bands has the lowest maximum permissible exposure for RF safety? Choice A: 3.5 megahertz. Choice B: 50 megahertz. Choice C: 440 megahertz. Choice D: 1296 megahertz. | 50 megahertz | ||||||||||||||||||||||||
27 | How does the allowable power density for RF safety change if duty cycle changes from 100 percent to 50 percent? Choice A: It increases by a factor of 3. Choice B: It decreases by 50 percent. Choice C: It increases by a factor of 2. Choice D: There is no adjustment allowed for lower duty cycle. | It increases by a factor of 2 | ||||||||||||||||||||||||
28 | What factors affect the RF exposure of people near an amateur station antenna? Choice A: Frequency and power level of the RF field. Choice B: Distance from the antenna to a person. Choice C: Radiation pattern of the antenna. Choice D: All these choices are correct. | All these choices are correct | ||||||||||||||||||||||||
29 | Why do exposure limits vary with frequency? Choice A: Lower frequency RF fields have more energy than higher frequency fields. Choice B: Lower frequency RF fields do not penetrate the human body. Choice C: Higher frequency RF fields are transient in nature. Choice D: The human body absorbs more RF energy at some frequencies than at others. | The human body absorbs more RF energy at some frequencies than at others | ||||||||||||||||||||||||
30 | Which of the following is an acceptable method to determine whether your station complies with FCC RF exposure regulations? Choice A: By calculation based on FCC OET Bulletin 65. Choice B: By calculation based on computer modeling. Choice C: By measurement of field strength using calibrated equipment. Choice D: All these choices are correct. | All these choices are correct | ||||||||||||||||||||||||
31 | What hazard is created by touching an antenna during a transmission? Choice A: Electrocution. Choice B: RF burn to skin. Choice C: Exposure to ionizing radiation. Choice D: All these choices are correct. | RF burn to skin | ||||||||||||||||||||||||
32 | Which of the following actions can reduce exposure to RF radiation? Choice A: Relocate antennas. Choice B: Relocate the transmitter. Choice C: Increase the duty cycle. Choice D: All these choices are correct. | Relocate antennas | ||||||||||||||||||||||||
33 | How can you make sure your station stays in compliance with RF safety regulations? Choice A: By informing the FCC of any changes made in your station. Choice B: By re-evaluating the station whenever an item in the transmitter or antenna system is changed. Choice C: By making sure your antennas have low SWR. Choice D: By using only Underwriter Laboratories approved transmitting equipment. | By re-evaluating the station whenever an item in the transmitter or antenna system is changed | ||||||||||||||||||||||||
34 | Why is duty cycle one of the factors used to determine safe RF radiation exposure levels? Choice A: It affects the average exposure to radiation. Choice B: It affects the peak exposure to radiation. Choice C: It takes into account the antenna feed line loss. Choice D: It takes into account the thermal effects of the final amplifier. | It affects the average exposure to radiation | ||||||||||||||||||||||||
35 | What is the definition of duty cycle during the averaging time for RF exposure? Choice A: The difference between the lowest and highest power output of a transmitter. Choice B: The difference between the PEP and the average power output of a transmitter. Choice C: The percentage of time that a transmitter is transmitting. Choice D: The percentage of time that a transmitter is not transmitting. | The percentage of time that a transmitter is transmitting | ||||||||||||||||||||||||
36 | How does RF radiation differ from ionizing radiation (radioactivity)? Choice A: RF radiation does not have sufficient energy to cause chemical changes in cells and damage DNA. Choice B: RF radiation can only be detected with an RF dosimeter. Choice C: RF radiation is limited in range to a few feet. Choice D: RF radiation is perfectly safe. | RF radiation does not have sufficient energy to cause chemical changes in cells and damage DNA | ||||||||||||||||||||||||
37 | Who is responsible for ensuring that no person is exposed to RF energy above the FCC exposure limits? Choice A: The FCC. Choice B: The station licensee. Choice C: Anyone who is near an antenna. Choice D: The local zoning board. | The station licensee | ||||||||||||||||||||||||
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