Q.With relevant diagrams, explain ionospheric propagation.
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🔒 Start your 14-day free trial to unlock the full solution →Concept understanding — Sky Wave Propagation
Sky-wave propagation lets radio signals travel over very long distances - well beyond the horizon - by bouncing off the ionosphere, a region of the upper atmosphere (roughly 65 km to 400 km up) that is rich in ions produced when air molecules absorb ultraviolet and other high-energy solar radiation. Because ionisation is low near the ground (radiation already absorbed higher up) and low at extreme heights (too few molecules left to ionise), it peaks at an intermediate altitude, spread across named layers - D, E, F1 and F2 - each affecting different frequency bands differently. The ionosphere reflects a specific band of roughly 3-40 MHz back do …
Signals beamed into the ionosphere are bent back to earth, allowing long-distance communication. …
[!TLDR]
Ionospheric (sky-wave) propagation refracts/reflects HF waves off the ionosphere back to earth for long-distance communication.
In ionospheric propagation, signals radiated by an antenna into the upper atmosphere are refracted and/or reflected by the ionized layers of the ionosphere and returned to the earth at a distant point (see the sky-wave diagram). Both reflection and refraction occur, and the behaviour depends on:
- the charge density of the ionospheric layer,
- the frequency of the radio wave, and
- the angle of incidence at which it enters the layer. …
- CBSE 2025Set ANNUAL1 markQ.Define sky wave propagation.
›Reveal solutionSolution
Sky wave propagation uses reflection off the ionosphere's charged layers to bounce radio waves back to Earth, allowing signals to travel far beyond the horizon.
In sky wave (or ionospheric) propagation, radio waves transmitted from an antenna travel upward and strike the ionosphere — the ionised layers of the Earth's upper atmosphere. Because of the way the refractive index of the ionosphere varies with electron density, waves of suitable frequency are bent back down towards the Earth's surface, where they can be received far beyond the line of sight, and can even reflect multiple times between the ionosphere and the Earth's surface for very long-distance communication.
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- CBSE 2022Set ANNUAL1 markMCQQ.Which of the following frequencies will be suitable for beyond the horizon communication of using sky waves?(a) 10 KHZ(b) 10 MHZ(c) 1 GHZ(d) 1000 GHZ.
›Reveal solutionSolution
Sky-wave propagation relies on ionospheric reflection, which works only over roughly the 2–30 MHz (HF) range; frequencies far below or above this either don't propagate this way or pass straight through the ionosphere.
For beyond-the-horizon communication using sky waves, the signal must be reflected back to Earth by the ionosphere. This total-internal-reflection-like bending works for frequencies roughly up to the ionosphere's critical frequency (typically tens of MHz). Checking the options:
- 10 kHz is far too low; such very-low frequencies propagate as ground/surface waves, not by ionospheric sky-wave reflection. …
- CBSE 2021Set TERM21 markMCQQ.Which of the following frequencies will be suitable for beyond the horizon communication using Sky waves?(a) 10 kHz(b) 10 MHz(c) 1 GHz(d) 1,000 GHz
›Reveal solutionSolution
Sky-wave propagation relies on ionospheric reflection, which works well only in the HF range (roughly 3–30 MHz); much lower or much higher frequencies don't reflect usefully off the ionosphere. This is from the Communication Systems chapter, not part of the current NCERT syllabus — answered for practice but flagged out-of-syllabus.
- 10 kHz — too low; very-low frequencies mostly follow ground-wave propagation, not sky wave.
- 10 MHz — squarely in the HF band; the ionosphere reflects HF waves back to Earth, enabling long-distance, beyond-the-horizon communication. ✓ …
- CBSE 2020Set ANNUAL1 markMCQQ.Long distance short-wave radio broadcasting uses(a) ground waves(b) sky waves(c) surface waves(d) space waves.
›Reveal solutionSolution
Long-distance short-wave (HF) broadcasting relies on the ionosphere reflecting the signal back to Earth — this is sky-wave propagation.
Radio waves can propagate in three main ways:
- Ground wave propagation — the wave travels along the surface of the earth; used for low-frequency signals (AM medium wave, up to ~2 MHz) but range is limited by ground absorption.
- Sky wave propagation — the wave is transmitted towards the sky and gets reflected by the ionosphere (a charged layer of the upper atmosphere) back down to earth. Because the ionosphere effectively acts like a mirror at these frequencies, the wave can bounce between the ionosphere and the ground (or ocean surface) multiple times and travel very long distances, well beyond line of sight. This is how short-wave (HF, roughly 3–30 MHz) broadcasting achieves long-distance/interna …
- CBSE 2019Set ANNUAL1 markQ.What is sky wave propagation? Mention the frequency range used by this type of propagation.
›Reveal solutionSolution
In sky-wave propagation, waves in the HF band (3–30 MHz) reflect off the ionosphere back to Earth, allowing signals to be received far beyond the horizon.
Sky wave propagation: A radio wave transmitted at a suitable angle towards the sky is bent back towards the Earth's surface by reflection from the ionosphere (a region of the upper atmosphere, roughly 100–400 km up, ionised by solar radiation). By undergoing one or more such reflections between the ionosphere and the Earth's surface, the signal can travel over very large distances — well beyond the line of sight/horizon that limits ground-wave propagation.
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- CBSE 2019Set ANNUAL1 markMCQQ.High frequency waves follow :(a) ionospheric propagation(b) the curvature of the earth(c) the ground wave propagation(d) the line of sight direction
›Reveal solutionSolution
HF radio waves (3-30 MHz) are reflected back to Earth by the ionosphere, so they travel by ionospheric (sky-wave) propagation rather than as ground waves or line-of-sight waves.
Radio wave propagation modes depend on frequency:
Ground wave (surface wave) propagation is used mainly for low and medium frequency (LF/MF) waves, which travel along the Earth's surface but suffer heavy attenuation at higher frequencies, limiting them to shorter ranges.
Sky wave (ionospheric) propagation applies to high frequency (HF, 3-30 MHz) waves: they are transmitted upward, reflected (refracted back) by the ionised layers of the ionosphere, and return to Earth, allowing them to be received far beyond the horizon -- even across continents -- through single or multiple hops.
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- CBSE 2018Set ANNUAL1 markMCQQ.The reflected waves from an ionosphere are ____.(a) ground waves(b) sky waves(c) space waves(d) very high frequency waves
›Reveal solutionSolution
This question is from Communication Systems, a topic no longer present in the current MSBSHSE Class-12 Physics chapter structure on this platform.
Radio waves that travel upward, reflect off the ionised layers of the ionosphere, and return to Earth are called sky waves — this is the mechanism used for long-distance shortwave radio propagation. (Ground waves travel along the Earth's surface; space waves travel in a strai …
- CBSE 2018Set 55/11 markQ.Write the range of frequencies of electromagnetic waves which propagate through sky wave mode.
›Reveal solutionSolution
Sky-wave mode works over about 3–30 MHz.
Concept. In sky-wave (skip) propagation the signal is radiated upward and reflected back to Earth by the ionosphere, allowing long-distance communication.
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