[20 points) Two converging lenses are separated by a distance L = 65 (cm). The focal length of each lens is equal to f1
Posted: Fri May 20, 2022 11:30 pm
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[20 points) Two converging lenses are separated by a distance L = 65 (cm). The focal length of each lens is equal to f1 + f2 = 10 [cm]. An object is placed at distance so = 40 (cm) to the left of Lens-1 (The image is not to scale). Object Lens 1 Lens 2 F F2 So L A. [5 points) Calculate the image distance s'ı formed by Lens-1. si [cm] B. (2 points] Using the formula sheet, which formula can be used to calculate the transverse magnification? - C. [3 points) If the image distance formed by Lens-l is s'; = 15, calculate the transverse magnification M of Lens-1. Mi = D. [5 points) If the image distance formed by Lens-l is s'i = 15, find the distance sz between Lens-2 and the image formed by Lens-1. S2 = [cm] E. [5 points] If the distance between Lens-2 and the image formed by Lens-1 is S2 = 20 (cm), calculate the final image distance s'2. s'2 = [cm]
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[20 points) Two converging lenses are separated by a distance L = 65 (cm). The focal length of each lens is equal to f1 + f2 = 10 [cm]. An object is placed at distance so = 40 (cm) to the left of Lens-1 (The image is not to scale). Object Lens 1 Lens 2 F F2 So L A. [5 points) Calculate the image distance s'ı formed by Lens-1. si [cm] B. (2 points] Using the formula sheet, which formula can be used to calculate the transverse magnification? - C. [3 points) If the image distance formed by Lens-l is s'; = 15, calculate the transverse magnification M of Lens-1. Mi = D. [5 points) If the image distance formed by Lens-l is s'i = 15, find the distance sz between Lens-2 and the image formed by Lens-1. S2 = [cm] E. [5 points] If the distance between Lens-2 and the image formed by Lens-1 is S2 = 20 (cm), calculate the final image distance s'2. s'2 = [cm]