Question: Look at Video Lecture 21, Slide #17. The problem requires us to solve for the focal length of the bi-concave (diverging) lens using the Lens

Look at Video Lecture 21, Slide #17. The problem requires us to solve for the focal length of the bi-concave (diverging) lens using the Lens Maker's equation: (a) What are the values of (i) R1 and (ii) R2 for this problem? (b) Do the values of R1 and R2 depend on the color of light incident on the lens? Explain your answer with a sentence or two. Write you answer as: (a) (i) R1 = ________ cm; (ii) R2 = _________ cm (b) The values of R1 and R2 __________ (fill in the blank).

v G instructure.charlotte.edu/courses/238239/pages/week-14-lenses-aberrations-a C + G A concave mirror magnifies an upright arrow... X Week 14: Lenses, Aberrations Refracting... Quizzes 2 C The lens-maker's equation for a lens with in... G The height of an inverted image formed by a... Lec 21_Ch23_1-5_Mirror_Lens_Problem_F24.pdf Download Info X Close Page 17 of 26 - ZOOM + Phys 1102: 21 Farida Notes LO 23 3c, 3e Example - Bi-concave (Diverging) lens P23.49: The magnitudes of the radii of curvature are 35 cm and 45 cm for the two faces of a biconcave lens. The glass has index of refraction 1.53 for violet light and 1.51 for red light. (a) For a very distant object, locate the image formed by violet light. (Please answer to at least one decimal place. Give the image distance.) -37.15 cm (b) For a very distant object, locate the image formed by red light. -38.60 cm

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