Astronomy 2010

18 Aralık 2010 Cumartesi. Chapter 3, Problem 3. A 2-m telescope can collect a given amount of light in 1 hour. Under the same observing conditions, how much time would be required for a 6-m telescope to perform the same task? Tells us that the time to collect light is inversely. Proportional to the square of the diameter of the mirror. For this problem the diameters are 2 meters for the small telescope and 6 meters for the large telescope. Thus the ratio is 2 m 6 m. Chapter 3, Problem 4. Two ident.

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Astronomy 2010

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18 Aralık 2010 Cumartesi. Chapter 3, Problem 3. A 2-m telescope can collect a given amount of light in 1 hour. Under the same observing conditions, how much time would be required for a 6-m telescope to perform the same task? Tells us that the time to collect light is inversely. Proportional to the square of the diameter of the mirror. For this problem the diameters are 2 meters for the small telescope and 6 meters for the large telescope. Thus the ratio is 2 m 6 m. Chapter 3, Problem 4. Two ident.

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This web page ep351.blogspot.com states the following, "Chapter 3, Problem 3." We saw that the webpage said " A 2-m telescope can collect a given amount of light in 1 hour." It also said " Under the same observing conditions, how much time would be required for a 6-m telescope to perform the same task? Tells us that the time to collect light is inversely. Proportional to the square of the diameter of the mirror. For this problem the diameters are 2 meters for the small telescope and 6 meters for the large telescope. Thus the ratio is 2 m 6 m. Chapter 3, Problem 4."

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