|| Mars (6800 km diameter) is viewed through a telescope on a night when it is 1.1 × 10º km from the earth. Its angular size as seen through the eyepiece is 0.50°, the same size as the full moon seen by the naked eye. If the eyepiece focal length is 25 mm, how long is the telescope?
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- 6. A nearsighted man uses his ideally prescribed eyeglasses that have a refractive power of -3.00 diopters. He would like a prescription for contact lenses. What is the correct contact lens distance of 2.0 cm from his eyes? diopters ssf60 ss prescription if he normally wears his eyeglasses a f60 ssf60 pre 0 ssf60 sta8SC ↓ Exam in Progress 57°F Sunny C2 121 A/ The refractive power of a lens of focal length +40 cm is Ⓒ +4.0 D. O +0.16 D. O +0.40 D. O +2.5 D. O -2.5 D. Q Search *43 3 -- $ WILE S|D % R LO Il app.honorlock.com is sharing your screen. 99+ TI hp a Stop s 55 ㄱis: On H 5 T Key Idea Stock of Data Solution Sanity Check 7. For a converging lens with a focal length of 12 cm viewing an object at a distance of 6 cm. Where is the image located? Physics-Problem Solving Entries Key Idea Stock of Data Solution Sanity Check Accessibility: Good to go Q Search F6 F7 & 6 7 Y U F8 * 0 8 8 11 1 F9 F10 9 O O O F11 ) 0 P F12 H Prt
- AsapQ1 a) The eyepiece of a refracting telescope has a focal length of 9.00cm. The distance between objective and eyepiece is 1.80m, and the final image is at infinity. What is the angular magnification of the telescope? F=580×10² 144. (b) You find two positive lenses fi=5.0 cm and f2 =30 cm from the storage room. How would you arrangefor them to construct a telescope? What is the magnification of your telescope? Is the image upright orinverted?
- Ch25,P20Photographs at a scale of S are required to cover an area X - mi square. The camera has a focal length and focal plane dimensions of 9 * 9in . If endlap is 60% and sidelap 30\% how many photos will be required to cover the area for the data given below? ▾ Part A S = 1/6500 ; X = 8 f = 152.4mn Express your answer as an integer.q42 Mr ASHER is a nearsighted person, who has a far point of 29.0 cm. Calculate the refractive power (in D) needed for his contact lenses. Enter the numerical part of your answer to two decimal figures. Hint: Remember that the sign of the refractive power is significant.