2) A converging (concave) mirror has R = 5 cm and a 3 cm tall object is placed 2 cm in front of this mirror facing the m
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2) A converging (concave) mirror has R = 5 cm and a 3 cm tall object is placed 2 cm in front of this mirror facing the m
2) A converging (concave) mirror has R = 5 cm and a 3 cm tall object is placed 2 cm in front of this mirror facing the mirror's reflecting surface. A person places a converging (convex) thin lens (f = 6 cm) 13 cm from the center of the converging mirror and on the same side of the mirror as the 3 cm tall object, as shown below. 13 cm rs The person may see two images when their eye is positioned correctly. One from the original object placed in front of the mirror and/or from the image of the object formed by the mirror. a) Using correct Ray Tracing techniques, determine the position(s) of the image(s) the person sees when looking through the thin lens. b) Determine the minimum distance away from the thin lens the person's eye has to be to see both images. Draw a sketch of what the person sees. Justify you answer. c) Suppose the person places their eye 10 cm away from the left side of the thin lens. Describe in detail what the person sees when looking through the thin lens.
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