Q.What are the applications of microwaves?
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Microwaves are electromagnetic waves lying just below infrared in the spectrum, first discovered by Hertz in 1888. They are produced by special vacuum tubes/devices -- klystrons, magnetrons, and Gunn diodes -- since an ordinary capacitor-inductor oscillator circuit cannot practically reach microwave (GHz-range) frequencies designed to operate efficiently at these higher frequencies. Two properties are especially notable: microwaves heat certain substances on which they are incident, and they can be detected using crystal detectors. …
Microwaves are short-wavelength electromagnetic waves that can be transmitted as narrow, directional beams, which is what makes them useful in several practical applications. …
Microwaves (wavelength ~mm to ~30 cm) are short-wavelength radio waves used wherever a narrow, directional beam or high information-carrying capacity is needed.
Applications of microwaves:
- Radar systems – used in aircraft and ship navigation, and to guide aircraft for landing (their short wavelength allows small, directional antennas).
- Communication – used for point-to-point terrestrial links and satellite communication because of their large bandwidth and ability to travel in narrow beams.
- Microwave ovens – microwaves at ~2.45 GHz are absorbed by water molecules in food, heating it. …
- CBSE 2025Set ANNUAL1 markMCQQ.The frequency of microwaves is(a) less than the frequency of radio waves(b) more than the frequency of radio waves(c) more than the frequency of visible waves(d) more than the frequency of infrared rays
›Reveal solutionSolution
In order of increasing frequency, the electromagnetic spectrum runs radio waves -> microwaves -> infrared -> visible -> ultraviolet -> X-rays -> gamma rays, so microwaves have a higher frequency than radio waves but lower frequency than infrared, visible or UV.
Radio waves: roughly a few Hz up to about 10^9 Hz (~1 GHz).
Microwaves: roughly 10^9 Hz to 3 x 10^11 Hz (1 GHz to 300 GHz), i.e. above the radio band. …
- CBSE 2024Set ANNUAL1 markQ.Why microwaves are considered suitable for radar systems used in aircraft navigation ?
›Reveal solutionSolution
Microwaves suit radar because their short wavelength gives sharp, directional beams and good penetration through weather.
Radar needs to accurately locate the direction, distance and speed of an aircraft. Because microwaves have a short wavelength (mm–cm range) compared to ordinary radio waves, they can be formed into a narrow, highly directional beam using a comparatively small antenna/dish (diffraction spreading is small when wavelength << aperture size). This narrow beam lets radar pinpoint direction precisely, and the reflected pulse gives distance (from time delay) and speed (from Doppler shift). Microwaves also readily penetrate clou …
- CBSE 2023Set 55/4/11 markMCQQ.The electromagnetic waves used in radar systems are : (A) Infrared waves (B) Ultraviolet rays (C) Microwaves (D) X-rays
›Reveal solutionSolution
Radar systems use microwaves because they combine good penetration through the atmosphere with the ability to be focused into narrow beams for precise target detection. The correct option is (C).
Why This Question Tests a Key Distinction
This isn’t just about memorising a list — it’s about understanding why each part of the electromagnetic spectrum is suited to a particular job. Radar (Radio Detection And Ranging) needs waves that can travel long distances through air, reflect off objects, and be focused into a narrow beam. Let’s see which option fits.
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Infrared waves are absorbed by water vapour and other atmospheric gases, so they don’t travel far through the air. They’re great for night vision and thermal imaging, but useless for long-range radar.
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Ultraviolet rays are scattered and absorbed strongly by the atmosphere (especially the ozone layer). They also have very short wavelengths, which makes them hard to focus into a beam and gives them poor penetration through fog or rain. Not suitable.
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Microwaves have wavelengths from about 1 mm to 1 m. This range is ideal: they pass through the atmosphere with little absorption, can be focused into narrow beams using parabolic dishes, and reflect well from metal objects (like aircraft or ships). This is exactly what radar needs. …
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- CBSE 2023Set B1 markQ.Write True or False: Working of microwave oven is based on Radio wave.
›Reveal solutionSolution
Microwave ovens use microwaves (typically ~2.45 GHz) to heat food by agitating water molecules; microwaves and radio waves are different, though neighbouring, bands of the EM spectrum.
In the electromagnetic spectrum, radio waves and microwaves are separately classified bands — radio waves have longer wavelengths/lower frequencies (used for broadcasting/communication), while microwaves have shorter wavelengths and higher frequencies (roughly 1 mm to 1 m, or 300 MHz–300 GHz). A microwave oven generates microwaves (about 2.45 GHz) using a magnetron; these waves are absorbed by water, fat and sugar molecules in fo …
- CBSE 2023Set ANNUAL1 markQ.Write the name of the electromagnetic wave produced by a vacuum tube magnetron.
›Reveal solutionSolution
A magnetron is a vacuum-tube device that generates microwaves, used e.g. in radar and microwave ovens.
A magnetron uses a strong magnetic field together with an accelerating electric field inside a vacuum tube to make electrons execute curved paths past a set of resonant cavities, causing them to give up energy as electromagnetic radiation in the micr …
- CBSE 2023Set ANNUAL1 markMCQQ.Microwaves are the electromagnetic waves with frequency in the range of:(a) Micro hertz(b) Mega hertz(c) Giga hertz(d) Hertz
›Reveal solutionSolution
Microwaves occupy the electromagnetic spectrum roughly from 1 GHz to 300 GHz.
Microwaves are electromagnetic waves lying between radio waves and infrared radiation, with wavelengths from about 1 mm to 1 m. This corresponds to frequencies of order 109 Hz to 1011 Hz, i.e., in the gigahertz (GHz) range. They are prod …
- CBSE 2022Set ANNUAL1 markMCQQ.The electromagnetic waves used in telecommunications are:(a) ultraviolet(b) infrared(c) visible(d) microwaves
›Reveal solutionSolution
Microwaves (short-wavelength radio waves) are ideal for point-to-point communication because of their high frequency and ability to be focused into narrow beams with small antennas.
The electromagnetic spectrum includes radio waves, microwaves, infrared, visible, ultraviolet, X-rays and gamma rays, each suited to different applications based on wavelength/frequency.
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- CBSE 2017Set ANNUAL1 markQ.Microwaves are used in radar. Why?
›Reveal solutionSolution
Radar needs a highly directional beam and precise object-location capability; microwaves' short wavelength (compared to radio waves) makes both possible.
Radar (RAdio Detection And Ranging) works by transmitting electromagnetic pulses toward a target and analysing the reflected (echoed) signal to determine the target's distance, direction and speed. For this to work well:
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Directionality: By diffraction theory, the spreading of a wave is significant when its wavelength is comparable to the size of the aperture (antenna). Since microwaves have very small wavelengths (millimetres to centimetres), a relatively small antenna/dish can produce a narrow, well-collimated beam — essential for precisely locating a target's direction.
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Good reflection from small objects: Objects such as aircraft, ships, or storm clouds reflect electromagnetic waves efficiently when the wavelength is comparable to or smaller than the object size. Microwaves, being short-wavelength, reflect strongly off such objects, producing a detectable echo.
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