(a) Calculate the focal length of the mirror formed by the convex side of a shiny spoon that has a 2.40 cm radius of curvature. 1.20 How are the radius of curvature and focal length of a spherical mirror related? m (b) What is its power in diopters? 83.3
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- (a) Calculate the focal length of the mirror formed by the convex side of a shiny spoon that has a 2.27 cm radius of curvature. ___m(b) What is its power in diopters? ___D(a) Calculate the focal length (in m) of the mirror formed by the shiny bottom of a spoon that has a 3.55 cm radius of curvature. m (b) What is its power in diopters? DYou are looking for a mirror that will enable you to see a 3.8-times magnified virtual image of an object that is placed 4.3 cm from the mirror’s vertex. What should the mirror’s radius of curvature be, in centimeters? R = ? P.S: The answer I have put were 6.14, -6.14, 6.808, -6.808 and all were wrong PLs Help
- 2.1)(a) What is the power and the focal length of the eye when viewing an object 50.0 cm away? (b) Calculate the power and the focal length of the eye when viewing an object 3.00 m away.A convex mirror has a focal length of magnitude 8.85 cm. (a) If the image is virtual, what is the object location for which the magnitude of the image distance is one third the magnitude of the object distance? (Enter distance in cm from the front of the mirror. If the image is real, enter NONE.) 11.8 Your response differs from the correct answer by more than 10%. Double check your calculations. cm (b) Find the magnification of the image. 0.33 State whether it is upright or inverted. upright inverted
- A prescription for an eyeglass lens calls for +3.50 diopters. The lensmaker grinds the lens from a “blank” withand convex front surface of radius of curvature n=1.56of 30.0 cm. What should be the radius of curvature of theother surface?A spherical mirror is to be used to form an image, five times as tall as an object, on a screen positioned 5.8 m from the mirror. (a) Describe the type of mirror required. The mirror is a Mirror Type-mirror and it has a focal length of (b) Where should the mirror be positioned relative to the object? m. Submit Answer The object should be m in front of the mirror.Either all parts or none.... Vll upvote
- Problem 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 mirror produces an image that is located 34.0 cm behind the mirror, when the object is located 9.70 cm in front of the mirror. (a) What is the focal length of the mirror? (b) Is the mirror concave or convex?