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Lab 10 The Simple Lens Lab 10 The Simple Lens 3. Referring to the values obtained above and the sign conventions, circle the appropriate 5.

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Lab 10 The Simple Lens Lab 10 The Simple Lens 3. Referring to the values obtained above and the sign conventions, circle the appropriate 5. How well do the image heights from the experimental measurements in Table 1 agree answer for the following questions. (6 pts) with the ray diagram measurements in Table 2? Show work. (Don't forget to convert the Lens A measurements). (2 pts) Icm = 2cm a. di is 0 real virtual b. The image is a image image 6. How well do the image distance from the experimental measurements in Table 1 agree with the ray diagram measurements in Table 2? Show work. (Don't forget to convert the c. hi measurements). (2 pts) d. The transverse magnification m is With respect to the object upright inverted the image is f. The magnitude of the transverse magnification /m B. The object located between one and two focal lengths from the lens. (38 pts) IS Table 3 Lens B Data (16 pts) 4. Complete the Ray Diagram. (8 pts) cm 15 + 1 - 43 43 420 7 720 - 9.76 -7 for. = 9.8 Lens A 43-15 cm cm 8.4 cm fexp cm %error (0 cm m= 28 - 15 -1.8 40 50 %difference 9.18 % - 50 m = 12- 2.05 141 di = 35 1. How well does the experimental focal point agree with the referenced value? Show work. (2 pts) 10 - 9.8 Table 2 Lens A Ray Diagram Data * 100 = 2.00%% Distance conversion 1 cm = 10 cm 3 2 cm Height conversion 1 cm = 2 cm 4 1 2. How well do the two magnifications agree with each other? Show work. (2 pts) 2.6 cm ( - 2.05 - (- 1.87 ) - 2,05 + ( - 187 ) X100 = 9.1836 = 9.18 2

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