What this quiz covers
This quiz focuses on Images Formed By Mirrors, giving you a quick way to practice the rules, question types, and explanations that matter most for College Physics.
A concave mirror with focal length f=15 cm forms an image of an object placed 30 cm from the mirror. If the object is then moved to a position 10 cm from the mirror, how does the image distance change?
College Physics Quiz
Practice Images Formed By Mirrors in College Physics with focused quiz questions that help you check what you know, review explanations, and build confidence with test-style prompts.
This quiz focuses on Images Formed By Mirrors, giving you a quick way to practice the rules, question types, and explanations that matter most for College Physics.
Try each quiz question before looking at the correct answer. Use the explanations to review missed ideas, then come back to similar questions until the pattern feels familiar.
A concave mirror with focal length f=15 cm forms an image of an object placed 30 cm from the mirror. If the object is then moved to a position 10 cm from the mirror, how does the image distance change?
An object is placed in front of a convex mirror. As the object is moved from very far away to very close to the mirror surface, the image formed by the mirror:
A concave shaving mirror has a focal length of 20 cm. A person's face is positioned 15 cm from the mirror. What type of image does the person see, and what happens to this image as the person slowly moves away from the mirror?
A dentist uses a concave mirror with a 25 cm focal length to examine a patient's tooth. If the tooth is positioned 20 cm from the mirror, what are the characteristics of the image the dentist sees?
An object placed 40 cm from a concave mirror produces a real image 20 cm from the mirror. If a plane mirror is now placed 10 cm behind the concave mirror (on the side opposite to the object), where will the final image appear after reflection from both mirrors?
A concave mirror has a focal length of 30 cm. An object is moved from a position 60 cm from the mirror to a position 20 cm from the mirror. How do the image distance and magnification change?
A concave mirror is used to project an image of a light bulb onto a screen. The bulb is 50 cm from the mirror and the screen is 25 cm from the mirror. If the screen is moved to 50 cm from the mirror, where should the bulb be repositioned to maintain a focused image on the screen?
A concave mirror produces an image that is 3 times larger than the object and located 45 cm from the mirror. If this is a real image, what is the object distance?
A spherical mirror forms an image with magnification m=−0.5 when an object is placed 30 cm from it. What type of mirror is this, and what is its focal length?
A makeup mirror (concave) has a focal length of 40 cm. A person holds the mirror 30 cm from their face. What is the apparent distance of the person's face from the mirror surface as seen in the image?
A convex mirror in a store has a focal length of magnitude 30 cm. A customer standing 90 cm from the mirror appears to be what distance from the mirror in the image, and what is the magnification?
Two concave mirrors with the same focal length are placed facing each other. An object is placed between them, closer to mirror A than to mirror B. The image formed by mirror A serves as the object for mirror B. Which statement best describes the final image characteristics?
Refer to the ray diagram. A ray diagram shows a concave mirror with center of curvature C and focal point F marked. An object is placed between F and the mirror surface. Two incident rays from the top of the object are drawn: one parallel to the principal axis and one toward the center of curvature.
Use the diagram to answer the question. The ray diagram shows a concave mirror with an object placed beyond the center of curvature C. Two rays are drawn from the object: one through the focal point F and one through the center of curvature C.
An object is placed in front of a convex spherical mirror. The image formed has a height that is exactly one-third the height of the object. If the focal length of the mirror is −24 cm, what is the object distance?
A concave shaving mirror has a radius of curvature of 40 cm. When an object is placed 15 cm in front of the mirror, what is the lateral magnification of the image, and where should a screen be placed to capture the image?
A spherical mirror produces an image that is located at the same distance from the mirror as the object, but on the opposite side. Which statement correctly describes this situation?