Q.What physical quantity is the same for X-rays of wavelength , red light of wavelength and radiowaves of wavelength ?
The speed of light in vacuum is the same for all electromagnetic waves, regardless of wavelength — so the common physical quantity is speed, specifically .
The question lists three very different electromagnetic waves: X-rays (), red light (), and radiowaves (). The wavelengths span an enormous range — from atomic scales to hundreds of metres. Yet all three are fundamentally the same kind of phenomenon: electromagnetic radiation.
The key insight is that all electromagnetic waves travel at the same speed in vacuum. This speed, denoted , is a universal constant of nature. It does not depend on wavelength, frequency, or intensity. Whether it's gamma rays or long radio waves, in empty space they all move at .
A common mistake is to think that frequency or wavelength is the same for all. They are not — each wave has its own frequency and wavelength, related by . Only the product is constant (equal to ), not the individual quantities.
Let's verify this step by step.
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Identify the nature of the waves. X-rays, visible light, and radiowaves are all electromagnetic waves. They differ only in wavelength (or frequency), but their physical origin is the same — oscillating electric and magnetic fields propagating through space.
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Recall the universal constant for electromagnetic waves. In vacuum, Maxwell's equations predict that all electromagnetic waves travel at a speed
This is a fundamental constant, independent of the wave's wavelength or frequency.
- Check the relationship between speed, frequency, and wavelength. For any wave,
For electromagnetic waves in vacuum, , so
If you know the wavelength, you can find the frequency, but the speed remains unchanged.
- Apply to the given waves.
- X-rays: →
- Red light: →
- Radiowaves: → The frequencies are wildly different, but the speed is the same for all three.
You don't need to compute frequencies at all. The moment you recognise that all three are electromagnetic waves in vacuum, the answer is immediate: speed in vacuum is the only quantity that is identical.
In a medium (like glass or water), the speed of light depends on the wavelength — this is called dispersion. But the question does not mention any medium, so we assume propagation in vacuum (or air, which is very close to vacuum for this purpose).
The physical quantity that is the same for all three is the speed in vacuum, which is .
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