A convex lens forms a real and inverted image of a needle at a distance of 50 cm from it.

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asked Jun 9, 2017 in Physics by Kundan kumar (49,132 points) 34 384 1028
A convex lens forms a real and inverted image of a needle at a distance of 50 cm from it. Where is the needle placed in front of the convex lens if the image is equal to the size of the object? Also, find the power of the lens.

1 Answer

+1 vote
answered Jun 9, 2017 by Vikash Kumar (144,729 points) 8 11 21
selected Jun 10, 2017 by Kundan kumar
 
Best answer

When an object is placed at the centre of curvature, 2F1, of a convex lens, its image is formed at the centre of curvature, 2F2, on the other side of the lens. The image formed is inverted and of the same size as the object, as shown in the given figure.

It is given that the image of the needle is formed at a distance of 50 cm from the convex
lens. Hence, the needle is placed in front of the lens at a distance of 50 cm.
Object distance, u = −50 cm
Image distance, v = 50 cm
Focal length = f
According to the lens formula,

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