What is the angular resolution limit (degrees) set by diffraction for the 224-cm mirror diameter telescope (A=560 nm)? Express your answer using three significant figures. 17 ΑΣΦ| 0= Submit Request Answer ➜ PHO ?
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What is the angular resolution limit (degrees) set by diffraction for the 224-cm mirror diameter telescope (560 nm)?
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- The Hubble Telescope has a mirror diameter of 2.40 m. What wavelength of light IN NANOMETERS must it use to barely resolve details on the Moon (3.84×108 m away) that are 125 m apart? [?] nm Hints: Solve for A! The answer should be between 400 and 700. Remember, nano means 10-9.The lens of a giant human eye is about 7.4 cm in diameter. For visible light at 643nm, what is the diffraction limit in arcsec of a giant human eye?What is the angular resolution limit (degrees) set by diffraction for the 224-cmcm mirror diameter telescope (λλ=560 nmnm)?
- Your telescope has a diameter of D = 0.934 m. You use it to look at craters on the moon, which is L = 3.84e8 m away. Assuming you're observing with a wavelength of λ = 627 nm, what is the size (y) of the smallest crater you can resolve?Find the minimum telescope aperture that could resolve an object with angular diameter 0.35 arcsecond, observed at 520-nm wave- length. (Note: 1 arcsec = 1/3600°.)What is bandwidth in an optical instrument? How does it relate to resolution and noise in an optical instrument?
- Two stars are separated by 1 x 10" m and are 4 light years away. Calculate the resolving power of the Hubble Space Telescope, with a diameter of 2.4m, at this distance. Can the Hubble Space Telescope resolve the two stars? Assume the wavelength of light is 650nm. (Hint: Look up the conversion of light years to meters.)These images show one of the large `VLT’ telescopes at the European Southern Observatory’s facility at Cerro Paranal, Chile. The place where the laser beam comes out (seen in the inset photo) is just out of sight off of the top edge of the large photo. Also note that if you look down the telescope tube (in the main photo), you can see the tube’s front-end structure. Imagine that this telescope had a flaw similar to the Hubble Space Telescope’s - its light-gathering element was shaped wrong. What problem would this cause for the telescope? Group of answer choices It would not be able to bring rays of light from a distant object to a focus. The imperfect shape would mean that it could focus rays of visible light, but not rays of light of any other wavelength. It wouldn’t be able to gather much light compared to the pupil of a human eye. It would mean that the telescope could only work if placed above the Earth’s atmosphere, like the Hubble telescope.Spy planes fly at extremely high altitudes (25 km) to avoidinterception. If their cameras are to discern features assmall as 5 cm, what is the minimum aperture of the cameralens to afford this resolution? (Use λ=580nm )