25_InstSolManual_PDF_Part9

25_InstSolManual_PDF_Part9 - r 5 sf s 2 f 5 1 30.0 cm 21...

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25.43. Set Up: The unaided angular size of Jupiter is Solve: Need Reflect: The angular magnification is the ratio of the angular size of the image when the optical device is used divided by the angular size of the object. 25.44. Set Up: Use to find for each wavelength. Double concave means and Then use to find the image location. Solve: red light: and The red light image will be 19.2 cm in front of the lens. violet light: and The violet light image will be 16.3 cm in front of the lens. 25.45. Set Up: From Figure 23.29 in Section 23.9, for 700 nm, and for 400 nm, Use to find for each wavelength. Then use to find Double convex means and Solve: (a) (i) red light: (ii) violet light: (b) red light: violet light: 25.46. Set Up: Use to calculate Since the light is focused each image is real and Then use to calculate n . For a plano-convex lens, and Solve: green: so blue: n 5 1.60. 1 n 2 1 2 52 R 2 f 52 2 22.5 cm 37.5 cm 5 0.600. f 5 1 48.0 cm 21 171 cm 2 48.0 cm 1 171 cm 5 37.5 cm. n 5 1.55. 1 n 2 1 2 52 R 2 f 52 2 22.5 cm 40.9 cm 5 0.550. 1 f 5 1 n 2 1 2 1 2 1 R 2 2 f 5 ss r s 1 s r 5 1 48.0 cm 21 277 cm 2 48.0 cm 1 277 cm 5 40.9 cm. R 2 , 0. R 1 S ` 1 f 5 1 n 2 1 2 1 1 R 1 2 1 R 2 2 s r . 0. f . 1 s 1 1 s r 5 1 f s
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Unformatted text preview: r 5 sf s 2 f 5 1 30.0 cm 21 22.1 cm 2 30.0 cm 2 22.1 cm 5 83.9 cm. s r 5 sf s 2 f 5 1 30.0 cm 21 23.9 cm 2 30.0 cm 2 23.9 cm 5 118 cm. 1 f 5 1 1.66 2 1 2 1 1 0.250 m 2 1 2 0.350 m 2 5 22.1 cm 1 f 5 1 1.61 2 1 2 1 1 0.250 m 2 1 2 0.350 m 2 5 23.9 cm R 2 5 2 35.0 cm. R 1 5 25.0 cm s r . 1 s 1 1 s r 5 1 f f 1 f 5 1 n 2 1 2 1 1 R 1 2 1 R 2 2 n 5 1.66. n 5 1.61 s r 5 sf s 2 f 5 1 50.0 cm 21 2 24.1 cm 2 50.0 cm 2 1 2 24.1 cm 2 5 2 16.3 cm. f 5 2 24.1 cm. 1 f 5 1 1.57 2 1 2 1 1 2 0.320 m 2 1 0.240 m 2 s r 5 sf s 2 f 5 1 50.0 cm 21 2 31.2 cm 2 50.0 cm 2 1 2 31.2 cm 2 5 2 19.2 cm. f 5 2 31.2 cm. 1 f 5 1 1.44 2 1 2 1 1 2 0.320 m 2 1 0.240 m 2 1 s 1 1 s r 5 1 f R 2 5 1 24.0 cm. R 1 5 2 32.0 cm f 1 f 5 1 n 2 1 2 1 1 R 1 2 1 R 2 2 f 2 5 f 1 M 5 19.4 m 39.7 5 0.49 m. M 5 0.500° 0.0126° 5 39.7. f 1 5 19.4 m. M 5 u r u 5 2 f 1 f 2 . u 5 138,000 km 6.28 3 10 8 km 5 2.20 3 10 2 4 rad 5 0.0126°. Optical Instruments 25-9...
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This note was uploaded on 03/06/2009 for the course PHYS 114 taught by Professor Shoberg during the Spring '07 term at Pittsburg State Uiversity.

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