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A beam of diameter 'd' is incident on a ...

A beam of diameter 'd' is incident on a glass hemisphere as shown. If the radius of curvature of the hemisphere is very large in comparison to d, then the diameter of the beam at the base of the hemisphere will be

A

`(3)/(4)d`

B

`d`

C

`(d)/(3)`

D

`(2)/(3)d`

Text Solution

Verified by Experts

The correct Answer is:
A

Using refraction formula at curved surface,
`(3)/(2v)-(1)/(infty)=(3/(2)-1)/(R) , (2)/(2V)=(1)/(3R),V=3R` ,

From figure `(x)/(2R)=(d)/(d)/(3R) , x=(2)/(3)d` .
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RESONANCE ENGLISH-GEOMATRICAL OPTICS -Exercise-1
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  2. A plano-concave lens is placed on a paper on which a flower is drawn. ...

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  3. A beam of diameter 'd' is incident on a glass hemisphere as shown. If ...

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  4. A convexo-concave convergent lens is made of glass of refractive index...

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  5. Two symmetric double convex lenses A and B have same focal length but ...

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  6. When a lens of power P (in air) made of material of refractive index m...

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  7. A lens behaves as a converging lens in air and a diverging lens in wat...

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  8. The sun subtends an angle of (1//2)^(@) on earth. The image of sun is ...

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  9. A lens having focal length f and aperture of diameter d forms an image...

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  10. A thin symmetrical double convex lens of power P is cut into three par...

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  11. In the figure shown, there are two convex lenses L(1) and L(2) having ...

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  12. An object is placed at a distance u from a concave mirror and its real...

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  13. A real inverted image in a concave mirror represented by graph (u, v, ...

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  14. What should be the value of distance d so that final image is formed o...

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  15. An object is kept on the principal axis of a concave mirror of focal l...

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  16. A biconvex lens is used to project a slide on screen. The slide is 2 c...

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  17. The minimum distance between a real object and its real image formed b...

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  18. Two planoconvex lenses each of the focal length of10cm&refractive inde...

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  19. A plano-convex lens when silvered in the plane side behaves like a con...

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  20. Define: Radius of curvature and centre of curvature

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