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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 the 'skip zone' in HF propagation?

    Answer: The region between the end of ground-wave coverage and the point where sky-wave returns to Earth

    The skip zone is the area of no usable signal between where ground-wave fades out and where the first sky-wave hop returns to Earth.

  2. What is 'multipath propagation' and what audio effect does it cause?

    Answer: Signals arriving via different ionospheric paths causing selective fading and distortion

    Multipath propagation occurs when signals arrive via different paths with different delays, causing phase cancellation, selective fading, and audio distortion.

  3. How does the 11-year solar cycle affect HF propagation on the higher bands (15, 10 meters)?

    Answer: Near solar maximum, higher ionization raises the MUF, making 15 and 10 meters highly active for DX

    Near solar maximum, increased F-layer ionization raises the MUF above 28 MHz, opening the 10-meter band to worldwide propagation that may be absent at solar minimum.

  4. What causes 'long-path' propagation and how does it differ from 'short-path'?

    Answer: Long-path uses the longer great-circle route (the other way around the globe) and can offer cleaner signals

    Every great-circle path has two directions; the long-path goes the longer way around Earth and sometimes offers better propagation or unique signal characteristics.

  5. What is the typical one-way skip distance for a single F2-layer hop?

    Answer: 1,000-3,000 km

    A single F2 hop typically spans 1,000 to 3,000 km, and multiple hops can extend this range to cover intercontinental distances.

  6. What ionospheric phenomenon is associated with geomagnetic storms and degraded HF communications at high latitudes?

    Answer: Polar cap absorption (PCA)

    Polar cap absorption occurs when energetic solar protons penetrate the polar ionosphere and dramatically increase D-layer absorption, blacking out HF communications at high latitudes.

  7. Which factor most determines whether a given frequency will be refracted back to Earth or will pass through the ionosphere into space?

    Answer: Whether the frequency is above or below the Maximum Usable Frequency (MUF)

    Frequencies above the MUF pass through the ionosphere into space and are not returned to Earth, while frequencies below the MUF are refracted back.