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Q.Use the lens equation 1/u + 1/v = 1/f and prove that for a convex lens when the object is placed within the focal length, the image will be virtual.

Odisha ChseOdisha CHSE +2 Science Board Exam 2018Subjective· 2mImportance★★★★★
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With object distance u less than focal length f, the lens formula yields v less than 0, i.e. a virtual image.

Use the lens formula (real-is-positive form of the given relation):

1v−1u=1f\dfrac{1}{v} - \dfrac{1}{u} = \dfrac{1}{f}, so 1v=1f+1u\dfrac{1}{v} = \dfrac{1}{f} + \dfrac{1}{u} (with the Cartesian convention a real object has u<0u<0).

Let the object be at distance xx from the lens with x<fx < f (object within the focal length). Taking magnitudes with u=−xu = -x and f>0f>0 for a convex lens:

1v=1f−1x\dfrac{1}{v} = \dfrac{1}{f} - \dfrac{1}{x}.

Step 1 — Since x<fx < f, we have 1x>1f\dfrac{1}{x} > \dfrac{1}{f}.

Step 2 — Therefore 1v=1f−1x<0\dfrac{1}{v} = \dfrac{1}{f} - \dfrac{1}{x} < 0, which makes vv negative.

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