thin lenses: a convex and a concave lenses. One goal of this system is to obtain an image that is larger than what a single convex lens would yield of a distant object. Such lens system is common in photography. The focal lengths of both lenses are 5 cm and they are 4 cm apart. n=1 n= 1 n=1l 4 cm (a) Find the ABCD matrix of the telephoto lens system shown in the above figure. (b) Find the locations of the first and second principle planes of the system. (c) Find the effective focal length, front focal length, and back focal length. (d) Consider an object (with a height of 5 cm) located at 36 cm away (to the left) from the first convex lens, find the location and the magnification of the image. (e) Draw a ray diagram to show how the image is formed. (N.B. remember to specify all the cardinal points). (f) Comparing (d) with the case of only having a convex lens (same convex lens in the figure). What is the magnification of the image when using this convex lens alone?
thin lenses: a convex and a concave lenses. One goal of this system is to obtain an image that is larger than what a single convex lens would yield of a distant object. Such lens system is common in photography. The focal lengths of both lenses are 5 cm and they are 4 cm apart. n=1 n= 1 n=1l 4 cm (a) Find the ABCD matrix of the telephoto lens system shown in the above figure. (b) Find the locations of the first and second principle planes of the system. (c) Find the effective focal length, front focal length, and back focal length. (d) Consider an object (with a height of 5 cm) located at 36 cm away (to the left) from the first convex lens, find the location and the magnification of the image. (e) Draw a ray diagram to show how the image is formed. (N.B. remember to specify all the cardinal points). (f) Comparing (d) with the case of only having a convex lens (same convex lens in the figure). What is the magnification of the image when using this convex lens alone?
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