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Numerical Problems · Q8

Q.In Young's double slit experiment, the slits are 2 mm apart and are illuminated with a mixture of two wavelengths λ0=750\lambda_0 = 750 nm and λ=900\lambda = 900 nm. What is the minimum distance from the common central bright fringe on a screen 2 m from the slits where a bright fringe from one interference pattern coincides with a bright fringe from the other?

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Step 1. Given: d=2d=2 mm =2×10−3=2\times10^{-3} m, D=2D=2 m, λ0=750\lambda_0=750 nm, λ=900\lambda=900 nm.

Step 2. A bright fringe of order n1n_1 for λ0\lambda_0 coincides with a bright fringe of order n2n_2 for λ\lambda when n1λ0=n2λn_1\lambda_0=n_2\lambda, i.e. n1n2=λλ0=900750=65\dfrac{n_1}{n_2}=\dfrac{\lambda}{\lambda_0}=\dfrac{900}{750}=\dfrac{6}{5}.

Step 3. The smallest integers satisfying this ratio are n1=6n_1=6, n2=5n_2=5 (checking: 6×750=45006\times750=4500 and 5×900=45005\times900=4500, exactly equal). …

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