Image formed by a plane mirror is:
1. real
2. virtual
3. depends on the nature of the object
4. none of these

Subtopic:  Reflection at Plane Surface |
From NCERT
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Two plane mirrors, \(A\) and \(B\) are aligned parallel to each other, as shown in the figure. A light ray is incident at an angle of \(30^\circ\) at a point just inside one end of \(A\). The plane of incidence coincides with the plane of the figure. The maximum number of times the ray undergoes reflections (excluding the first one) before it emerges out is:
   
1. \(28\)                     
2. \(30\)
3. \(32\)         
4. \(34\)

Subtopic:  Reflection at Plane Surface |
 72%
From NCERT
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A point source of light \(B\) is placed at a distance \(L\) in front of the centre of a mirror of width \(d\) hung vertically on a wall. A man \((A)\) walks in front of the mirror along a line parallel to the mirror at a distance \(2L\) from it as shown. The greatest distance over which he can see the image of the light source in the mirror is:
                         
1. \(\frac{d}{2}\)
2. \(d\)
3. \(2d\)
4. \(3d\)

Subtopic:  Reflection at Plane Surface |
 58%
From NCERT
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If there had been one eye of a man, then:

1. image of the object would have been inverted
2. visible region would have decreased
3. image would have not been seen in three dimensional
4. Both (2) and (3)

Subtopic:  Human Eye |
 54%
From NCERT
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When a concave mirror of focal length \(f\) is immersed in water, its focal length becomes \(f'\), then:
1. \(f' = f\)
2.  \(f'<f\)
3.  \(f'>f\)
4.  The information is insufficient to predict
Subtopic:  Reflection at Spherical Surface |
 69%
From NCERT
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The distance between the object and its real image formed by a concave mirror is minimum when the distance of the object from the centre of curvature of the mirror is: [\(f\rightarrow\) focal length of the mirror]

1. Zero 2. \(\dfrac{f}{2}\)
3. \(f\) 4. \(2f\)
Subtopic:  Reflection at Spherical Surface |
From NCERT
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A luminous object is placed at a distance of \(30\) cm from the convex lens with a focal length of \(20\) cm. On the other side of the lens, at what distance from the lens, a convex mirror with a radius of curvature of \(10\) cm be placed in order to have an upright image of the object coincident with it?
1. \(12~\text{cm}\)   2. \(30~\text{cm}\)
3. \(50~\text{cm}\) 4. \(60~\text{cm}\)
Subtopic:  Lenses |
 51%
From NCERT
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A concave mirror of the focal length \(f_1\) is placed at a distance of \(d\) from a convex lens of focal length \(f_2\). A beam of light coming from infinity and falling on this convex lens-concave mirror combination returns to infinity. The distance \(d\) must be equal to:
1. \(f_1 +f_2\)
2. \(-f_1 +f_2\)
3. \(2f_1 +f_2\)
3. \(-2f_1 +f_2\)

Subtopic:  Refraction at Curved Surface |
From NCERT
AIPMT - 2012
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The graph between \(u\) and \(v\) for a convex mirror is:
1. 2.
3. 4.
Subtopic:  Reflection at Spherical Surface |
From NCERT
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A rod of length \(10\) cm lies along the principal axis of a concave mirror of focal length \(10\) cm in such a way that its end closer to the pole is \(20\) cm away from the mirror. The length of the image is:
1. \(10\) cm 2. \(15\) cm
3. \(2.5\) cm 4. \(5\) cm
Subtopic:  Reflection at Spherical Surface |
 60%
From NCERT
NEET - 2012
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