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Q.When a lens is dipped into water the magnitude of its focal length decreases. (Write True / False) OR How can a convex lens behave like a diverging lens?

West Bengal WbchseWest Bengal HS (WBCHSE) Board 2023Subjective· 1mImportance★★★★★
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The statement is False — the focal length of a convex (glass) lens increases in magnitude when dipped in water, because water reduces the relative refractive index of the lens.

By the lens maker's formula:

1f=(nlensnmedium−1)(1R1−1R2)\dfrac{1}{f} = \left(\dfrac{n_{lens}}{n_{medium}} - 1\right)\left(\dfrac{1}{R_1} - \dfrac{1}{R_2}\right)

For a glass lens (nglass≈1.5n_{glass} \approx 1.5) in air (nair=1n_{air} = 1), the relative refractive index is 1.5/1=1.51.5/1 = 1.5.

When the same lens is dipped in water (nwater≈1.33n_{water} \approx 1.33), the relative refractive index becomes 1.5/1.33≈1.131.5/1.33 \approx 1.13 — a much smaller value than in air.

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