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Q.When monochromatic red light is used instead of blue light in a convex lens, its focal length

(a) does not change
(b) increases
(c) decreases
(d) remain same
Manipur CohsemCOHSEM Manipur Higher Secondary Board 2025MCQ· 1mImportance★★★★★
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Red light has a lower refractive index than blue (dispersion), and f∝1/(n−1)f \propto 1/(n-1), so lower nn gives a larger ff.

By the lens maker's formula, 1f=(n−1)(1R1−1R2)\dfrac{1}{f} = (n-1)\left(\dfrac{1}{R_1}-\dfrac{1}{R_2}\right), so f∝1(n−1)f \propto \dfrac{1}{(n-1)} for fixed geometry. Due to dispersion, the refractive index of a material is slightly higher for blue light than for red light (nblue>nredn_{blue} > n_{red}, since blue light bends more). Using red …

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