A virtual image is formed 21.0 cm from a concave mirror having a radius of curvature of 35.0 cm. (a) Find the position of the object. cm in front of the mirror (b) What is the magnification of the mirror?
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A virtual image is formed 21.0 cm from a concave mirror having a radius of curvature of 35.0 cm.
cm in front of the mirror
(b) What is the magnification of the mirror?

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- A dentist uses a mirror to examine a tooth that is 1.25 cm in front of the mirror. The image of the tooth is formed 14.0 cm behind the mirror. (a) Determine the mirror's radius of curvature. cm (b) Determine the magnification of the image. XEither all parts or none.... Vll upvoteProblem 6: You are looking for a mirror that will enable you to see a 3.4-times magnified virtual image of an object that is placed 4.2 cm from the mirror’s vertex. A concave mirror will be used Part (b) What should the mirror’s radius of curvature be, in centimeters?
- A doctor examines a mole with a 15.5 cm focal length magnifying glass held 11.5 cm from the mole. (a) Where is the image? (Enter the image distance in meters. Include the sign of the value in your answer.) m (b) What is its magnification? (c) How big in millimeters is the image of a 4.65 mm diameter mole? mmA virtual image is formed 18.5 cm from a concave mirror having a radius of curvature of 35.5 cm. (a) Find the position of the object. cm in front of the mirror (b) What is the magnification of the mirror? Submit AnswerA dental hygienist uses a small concave mirror to look at the back of a patient's tooth. If the mirror is 1.58 cm from the tooth and the magnification is 1.80, what is the mirror's focal length? (Include the sign of the value in your answer.) cm