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13. [-/7.14 Points] SERPSE10 35.A.0P.043. ASK YOUR TEACHER PRACTICE ANOTHER Two lenses are placed along an optical rail. One is a converging lens, with a

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13. [-/7.14 Points] SERPSE10 35.A.0P.043. ASK YOUR TEACHER PRACTICE ANOTHER Two lenses are placed along an optical rail. One is a converging lens, with a focal length m'f1 = 30.2 em. The second lens, a diverging lens with a focal length off2 = 20.0 cm, is placed d = 110 cm to the right of the converging lens. An object ha = 2.01 em high Is placed Py = 40.5 m to the left of the converging lens. (a) Determine the position of the final image. (Enter the position in cm relative to the diverging lens.) magnitude [ lem ) direction -Select- of the diverging lens (b} Determine the magnification of the final image. (Indicate the orientation with the sign of your answer.) (e} Istheimage upright or inverted? () upright () inverted (d) Repeat parts (a) through (c) for the case in which the second lens is a converging lens having a focal length of 20.0 em. (Enter the pesition in cm relative to the second lens. Indicate the arientation of the magnification with the sign of your answer.) magnitude ' Jem direction .S-alecl Jc of the second lens magnification ] L J Is the image upright or inverted? () upright ) inverted Need Help? | Submit Answer 14. [-/7.18 Points] ASK YOUR TEACHER PRACTICE ANOTHER The figure below shows a thin converging lens for which the radii of curvature of its surfaces have magnitudes of .90 cm and 10.1 em. The lens is in front of a concave spherical mirror with the radius of curvature R = 8.38 em. Assume the focal points Fl and F, of the lens are 5.00 cm from the center of the lens. SERPSE10 35.C.OP.045. (a) Determine the index of refraction of the lens material. (b) The lens and mirrer are 20.0 em apart, and an object is placed 7.90 em to the left of the lens. Determine the positien (in cm) of the final image. (Give its magnitude and location with respect to the lens.) distance | cm location Select- 2 {c) Determine its magnification as seen by the eye in the figure. (d} Is the final image inverted or upright? () inverted O upright Explain. L This answer has not been graded yet. {e) What If? For what initial object distance (in cm) would the final image form at exactly the same location as the object? 9 cm What would be the magnification of the image in this case? M=

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