A concave mirror of focal length \(10~\text{cm}\) forms an image which is double the size of object when the object is placed at two different positions. The distance between the two positions of the object is: (in cm)
1. \(50\)
2. \(30\)
3. \(10\)
4. \(40\)
Subtopic:  Reflection at Spherical Surface |
 77%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.

A rod of length \(10~\text{cm}\) lies along the principle axis of a concave mirror of focal length \(10~\text{cm}\) as shown in figure. The length of the image is: (in cm)
                        

1. \(2.5\)
2. \(5\)
3. \(7.5\)
4. \(7\) 
Subtopic:  Reflection at Spherical Surface |
 86%
Level 1: 80%+
Please attempt this question first.
Hints
Please attempt this question first.

In parallax method for the determination of focal length of a concave mirror, the object should always be placed:
1. between the focus (\(F\)) and the centre of curvature (\(C\)) of the mirror ONLY
2. at any point beyond the focus (\(F\)) of the mirror
3. beyond the centre of the curvature (\(C\)) of the mirror ONLY
4. between the pole (\(P\)) and the focus (\(F\)) of the concave mirror ONLY
Subtopic:  Reflection at Spherical Surface |
 59%
Level 3: 35%-60%
Please attempt this question first.
Hints
Please attempt this question first.

Distance between an object and three times magnified real image is \(40 ~\text{cm}.\) The focal length of the mirror used is: (in \(\text{cm}\))
1. \(-\dfrac{15}{2}\)
2. \(– 10\)
3. \(– 20\)
4. \( – 15\)
Subtopic:  Reflection at Spherical Surface |
 81%
Level 1: 80%+
Please attempt this question first.
Hints
Please attempt this question first.

A finite size object is placed normal to the principal axis at a distance of \(30 ~\text{cm}\) from a convex mirror of focal length \(30 ~\text{cm}.\) A plane mirror is now placed in such a way that the image produced by both the mirrors coincide with each other. The distance between the two mirrors is:
1. \(7.5 ~\text{cm}\)
2. \(22.5 ~\text{cm}\)
3. \(45 ~\text{cm}\)
4. \(15 ~\text{cm}\)
Subtopic:  Reflection at Spherical Surface |
 50%
Level 3: 35%-60%
Please attempt this question first.
Hints
Please attempt this question first.

Distance between object and its image (magnified by \(-1/3 \)) is \(30 ~\text{cm.}\) The focal length of the mirror used is \((x/4) ~\text{cm,}\) then the magnitude of value of \(x\) is:
1. \(26\) 
2. \(45 \)
3. \(17 \)
3. \(40\)
Subtopic:  Reflection at Spherical Surface |
 88%
Level 1: 80%+
Please attempt this question first.
Hints
Please attempt this question first.

When an object is placed \(40 ~\text{cm}\) away from a spherical mirror an image of magnification \(\dfrac{1}{2}\) is produced. To obtain an image with magnification of \(\dfrac{1}{3}\) the object is to be moved:
1. \(20 ~\text{cm}\) away from the mirror.
2. \(40 ~\text{cm}\) away from the mirror.
3. \(80 ~\text{cm}\) away from the mirror.
4. \(20 ~\text{cm}\) towards the mirror.
Subtopic:  Reflection at Spherical Surface |
 66%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.

A mirror is used to produce an image with magnification of \(\dfrac{1}{4}.\) If the distance between object and its image is \(40~\text{cm,}\) then the focal length of the mirror is:
1. \(10.7~\text{cm}\)
2. \(15~\text{cm}\)
3. \(12.7~\text{cm}\)
4. \(10~\text{cm}\)
Subtopic:  Reflection at Spherical Surface |
 76%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.

Two identical objects are placed in front of convex mirror and concave mirror having same radii of curvature of \(12 ~\text{cm,}\) at same distance of \(18 ~\text{cm}\) from the respective mirrors. The ratio of sizes of the images formed by convex mirror and by concave mirror is:
1. \(2\)

2. \(\dfrac{1}{2} \)

3. \(\dfrac{1}{3} \)

4. \(3\)
Subtopic:  Reflection at Spherical Surface |
 74%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.

A concave mirror produces an image of an object such that the distance between the object and image is \(20 ~\text{cm.}\) If the magnification of the image is \(-3,\) then the magnitude of the radius of curvature of the mirror is:
1. \(7.5~\text m\)
2. \(30~\text {cm}\)
3. \(3.75~\text{cm}\)
4. \(15~\text{cm}\)
Subtopic:  Reflection at Spherical Surface |
 60%
Level 2: 60%+
Please attempt this question first.
Hints
Please attempt this question first.