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Q.If the energy of a photon corresponding to wavelength 6000 Å is 9.92 × 10⁻¹⁹ joule, then what will be the energy of the photon corresponding to wavelength 4000 Å?

Chhattisgarh CgbseCGBSE Intermediate Board 2022Subjective· 3mImportance★★★★★
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Since photon energy E = hc/λ is inversely proportional to wavelength, the energy at the shorter wavelength (4000 Å) is found by scaling the given energy by the ratio of wavelengths.

The energy of a photon of wavelength λ is

E=hcλE = \frac{hc}{\lambda}

So for two different wavelengths λ₁ and λ₂, with corresponding energies E₁ and E₂:

E2E1=λ1λ2\frac{E_2}{E_1} = \frac{\lambda_1}{\lambda_2}

Given: E₁ = 9.92 × 10⁻¹⁹ J at λ₁ = 6000 Å, find E₂ at λ₂ = 4000 Å.

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