Assessment
Plane Mirrors and Spherical Mirrors
Plane Mirrors and Spherical Mirrors
ninja coder
Physics
Grade10
10 Plays
100 Participants
1.
Multiple Choice
1 pts•30 sAnswer choicesWhat type of image is formed by a plane mirror?
Real and inverted
Virtual and erect
Real and erect
Virtual and inverted
2.
Multiple Choice
1 pts•30 sAnswer choicesIdentify the characteristic of the image formed by a plane mirror in terms of size.
Magnified
Same size as the object
Diminished
Variable depending on distance
3.
Multiple Choice
1 pts•30 sAnswer choicesWhich type of spherical mirror has its reflecting surface curved inward?
Convex mirror
Concave mirror
Plane mirror
Parabolic mirror
4.
Multiple Choice
1 pts•30 sAnswer choicesName the point where parallel rays converge after reflection in a concave mirror.
Center of curvature
Principal focus
Pole
Radius of curvature
5.
Multiple Choice
1 pts•30 sAnswer choicesDetermine the type of image formed by a convex mirror.
Real and inverted
Virtual and erect
Real and erect
Virtual and inverted
6.
Multiple Choice
1 pts•30 sAnswer choicesWhat is the distance between the pole and the principal focus of a spherical mirror called?
Focal length
Radius of curvature
Object distance
Image distance
7.
Multiple Choice
1 pts•30 sAnswer choicesSpecify the nature of the image formed by a concave mirror when the object is placed beyond the center of curvature.
Virtual and erect
Real and inverted
Virtual and inverted
Real and erect
8.
Multiple Choice
1 pts•30 sAnswer choicesRecognize the use of convex mirrors in vehicles.
To magnify objects
To provide a wider field of view
To focus light
To create real images
9.
Multiple Choice
1 pts•30 sAnswer choicesWhich type of mirror is used in a dentist’s tool to examine teeth?
Plane mirror
Concave mirror
Convex mirror
Cylindrical mirror
10.
Multiple Choice
1 pts•30 sAnswer choicesClarify the relationship between the focal length and radius of curvature for a spherical mirror.
Focal length is twice the radius of curvature
Focal length is half the radius of curvature
Focal length equals the radius of curvature
Focal length is unrelated to radius of curvature