Q.What happens to the intensity of light from a bulb if the distance from the bulb is doubled? As a laser beam travels across the length of a room, its intensity essentially remains constant. What geometrical characteristic of LASER beam is responsible for the constant intensity which is missing in the case of light from the bulb?
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Start your 14-day free trial to unlock the full solution →The intensity of a bulb’s light falls to one-fourth when distance is doubled because it spreads spherically; a laser beam’s intensity stays nearly constant because it is highly collimated (very low divergence), so its cross‑sectional area hardly changes over room‑scale distances.
1. The core idea: intensity depends on how the power spreads
Intensity is power per unit area:
For a given source, if the same power is spread over a larger area , the intensity drops. The key difference between a bulb and a laser lies in how the beam’s cross‑sectional area changes with distance.
2. For a bulb: spherical spreading
A bulb emits light in all directions. At a distance , the light power is uniformly distributed over the surface of a sphere of radius :
So the intensity at distance is
If you double the distance to :
A common mistake is to think intensity halves when distance doubles. Because area depends on , the intensity actually falls by a factor of — the inverse‑square law.
3. For a laser: collimation keeps the area nearly constant
A laser beam is designed to be highly collimated — its rays are almost perfectly parallel. This means the beam’s diameter changes very little over ordinary distances (like across a room).
If the beam has a constant cross‑sectional area , then at any distance within the collimated region:
That’s why the intensity of a laser beam does not noticeably drop as it travels across a room. …
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