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Numerical · Q35

Q.The speed of light is 3×\times108^8 m/s. Calculate the frequency of red light of wavelength of 6.5×\times10−7^{-7} m.

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Applying ν=cλ\nu=\dfrac{c}{\lambda} with the given speed c=3×108c=3\times10^{8} m/s and wavelength λ=6.5×10−7\lambda=6.5\times10^{-7} m gives ν=3×1086.5×10−7≈4.615×1014 Hz≈4.6×1014\nu=\dfrac{3\times10^{8}}{6.5\times10^{-7}}\approx4.615\times10^{14}\ \text{Hz}\approx4.6\times10^{14} Hz. This value falls squarely within the visible-light frequency range of Table 13.1 (8×10148\times10^{14} to 4×10144\times10^{14} Hz), consistent with red light sitting at the lower-frequency (longer-wavelength) end of the visible band. [!ANSWER] ν≈4.6×1014\nu\approx4.6\times10^{14} Hz

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