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Radio Wave Propagation Flashcards

7 cards from real Ham Radio General Class Test practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

Read the first 7 Radio Wave Propagation flashcards as text
  1. What is 'antenna reciprocity' as it applies to propagation path selection?

    Answer: A directional antenna used for reception will have the same pattern for transmission, so the best transmit bearing is also the best receive bearing

    By the reciprocity principle, an antenna's transmit and receive patterns are identical, so pointing a beam for the strongest received signal is also optimal for transmitting.

  2. During a geomagnetic storm, which HF bands are typically most affected?

    Answer: The higher HF bands (15, 10 meters) suffer the worst degradation at high latitudes while lower bands may still work

    Geomagnetic storms raise the LUF and lower the MUF, most severely impacting high-latitude paths on the upper HF bands while lower bands often remain workable.

  3. What is the approximate maximum distance for reliable ground-wave propagation on 40 meters?

    Answer: 200-500 km

    Ground-wave propagation on 40 meters can reach roughly 200-500 km over average terrain; at lower frequencies like 160 meters this range extends farther.

  4. What is 'chordal hop' propagation?

    Answer: A single very low-angle sky-wave hop that stays within the ionosphere between two points without touching Earth, enabling very long paths with low loss

    In chordal hop, signals travel within the ionosphere from one point to another without returning to Earth, reducing ground-reflection losses and enabling very efficient long-distance paths.

  5. How does sea-water ground conductivity compare to average soil for ground-wave propagation?

    Answer: Sea water is an excellent conductor and dramatically extends ground-wave range compared to average soil

    Sea water has very high conductivity (~5 S/m vs ~0.005 S/m for average soil), which greatly reduces ground-wave attenuation and extends range, especially on lower HF and MF bands.

  6. What is the significance of the 'critical frequency' (fo) of the ionosphere?

    Answer: It is the highest frequency that is refracted back to Earth at vertical incidence; it sets the baseline for calculating MUF at any angle

    The critical frequency is measured by vertical-incidence sounders (ionosondes) and represents the highest frequency returned straight down; MUF for any oblique path is derived from it using a secant factor.

  7. What propagation characteristic is most responsible for the 'dead band' phenomenon sometimes observed on 10 meters?

    Answer: When solar flux is low, the MUF rarely rises above 28 MHz, leaving 10 meters with neither reliable skip nor adequate ground-wave range

    At solar minimum, the MUF often stays below 28 MHz, so 10 meters has no usable sky-wave propagation and ground-wave range is very limited, making the band appear dead.