Question:

For a colour of light the wavelength for air is 6000 \AA\ and in water the wavelength is 4500 \AA. Then the speed of light in water will be

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Refractive index \(n = \lambda_{vacuum}/\lambda_{medium} = c/v_{medium}\). Frequency remains unchanged when light passes through different media.
Updated On: Apr 8, 2026
  • \(5 \times 10^4\) m/s
  • \(2.25 \times 10^8\) m/s
  • \(4.0 \times 10^8\) m/s
  • zero
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The Correct Option is B

Solution and Explanation

Step 1: Understanding the Concept:
\(n = \lambda_{air}/\lambda_{water}\) and \(v = c/n\).
Step 2: Detailed Explanation:
\[ n = \frac{\lambda_{air}}{\lambda_{water}} = \frac{6000}{4500} = \frac{4}{3} \] \[ v = \frac{c}{n} = \frac{3 \times 10^8}{4/3} = \frac{3 \times 10^8 \times 3}{4} = 2.25 \times 10^8 \text{ m/s} \]
Step 3: Final Answer:
Speed of light in water \(= \mathbf{2.25 \times 10^8}\) m/s.
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