# An object is placed at a distance of 40 cm from a concave mirror of a focal length of 15 cm. If the object is displaced through a distance of 20 cm towards the mirror, the displacement of the image will be: 1. 30 cm away from the mirror 2. 36 cm away from the mirror 3. 30 cm towards the mirror 4. 36 cm towards the mirror

Subtopic:  Reflection at Spherical Surface |
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A beam of light from a source L is incident normally on a plane mirror fixed at a certain distance x from the source. The beam is reflected back as a spot on a scale placed just above the source L. When the mirror is rotated through a small angle $\theta$, the spot of the light is found to move through a distance y on the scale. The angle $\theta$ is given by:

1. $\frac{y}{x}$

2. $\frac{x}{2y}$

3. $\frac{x}{y}$

4. $\frac{y}{2x}$

Subtopic:  Reflection at Plane Surface |
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A thin prism having refracting angle 100 is made of glass of refractive index 1.42. This prism is combined with another thin prism of a glass of refractive index 1.7. This combination produces dispersion without deviation. The refracting angle of the second prism should be:

1. 60
2. 80
3. 100
4. 40

Subtopic:  Prisms |
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An air bubble in a glass slab with a refractive index 1.5 (near-normal incidence) is 5 cm deep when viewed from one surface and 3 cm deep when viewed from the opposite face. The thickness (in cm) of the slab is:
1. 8
2. 10
3. 12
4. 16

Subtopic:  Refraction at Plane Surface |
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A person can see objects clearly only when they lie between 50 cm and 400 cm from his eyes. In order to increase the maximum distance of distinct vision to infinity, the type and power of the correcting lens, the person has to use, will be:

1. convex, +2.25 D

2. concave, -0.25 D

3. concave -0.2 D

4. convex, +0.5 D

Subtopic:  Human Eye |
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An astronomical refracting telescope will have large angular magnification and high angular resolution when it has an objective lens of:-

1. small focal length and large diameter

2. large focal length and small diameter

3. large focal length and large diameter

4. small focal length and small diameter

Subtopic:  Telescope |
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An astronomical telescope has an objective and eyepiece of focal lengths 40 cm and 4 cm respectively. To view an object 200 cm away from the objective, the lenses must be separated by a distance:

1. 46.0 cm

2. 50.0 cm

3. 54.0 cm

4. 37.3 cm

Subtopic:  Telescope |
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Match the corresponding entries of Column 1 with Column 2.
(Where m is the magnification produced by the mirror)

 Column 1 Column 2 A. m = -2 I. Convex mirror B. m = -1/2 II. Concave mirror C. m = +2 III. Real Image D. m = +1/2 IV. Virtual Image

 A B C D 1. I & III I & IV I & II III & IV 2. I & IV II & III II & IV II & III 3. III & IV II & IV II & III I & IV 4. II & III II & III II & IV I & IV
Subtopic:  Reflection at Spherical Surface |
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The angle of incidence for a ray of light at a refracting surface of a prism is 45o. The angle of the prism is 60o. If the ray suffers minimum deviation through the prism, the angle of minimum deviation and refractive index of the material of the prism respectively, are:
1. $$45^{0},~\sqrt{2}$$
2. $$30^{0},~\sqrt{2}$$
3. $$30^{0},~\frac{1}{\sqrt{2}}$$
4. $$45^{0},~\frac{1}{\sqrt{2}}$$

Subtopic:  Prisms |
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The refractive index of the material of a prism is and the angle of the prism is 30°. One of the two refracting surfaces of the prism is made a mirror inwards with a silver coating. A beam of monochromatic light entering the prism from the other face will retrace its path (after reflection from the silvered surface) if the angle of incidence on the prism is:

1. 60o
2. 45o
3. 30o
4. zero

Subtopic:  Prisms |
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