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The Orbit of Hale-Bopp Comet, Discovered in 1995, Is an Ellipse

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The orbit of Hale-Bopp comet, discovered in 1995, is an ellipse with eccentricity The orbit of Hale-Bopp comet, discovered in 1995, is an ellipse with eccentricity   and one focus at the Sun.The length of its major axis is   AU.[An astronomical unit (AU) is the mean distance between Earth and the Sun, about 93 million miles.] Find the maximum distance from the comet to the Sun.(The perihelion distance from a planet to the Sun is   and the aphelion distance is   Find theAnswer in AU and round to the nearest hundredth. and one focus at the Sun.The length of its major axis is The orbit of Hale-Bopp comet, discovered in 1995, is an ellipse with eccentricity   and one focus at the Sun.The length of its major axis is   AU.[An astronomical unit (AU) is the mean distance between Earth and the Sun, about 93 million miles.] Find the maximum distance from the comet to the Sun.(The perihelion distance from a planet to the Sun is   and the aphelion distance is   Find theAnswer in AU and round to the nearest hundredth. AU.[An astronomical unit (AU) is the mean distance between Earth and the Sun, about 93 million miles.] Find the maximum distance from the comet to the Sun.(The perihelion distance from a planet to the Sun is The orbit of Hale-Bopp comet, discovered in 1995, is an ellipse with eccentricity   and one focus at the Sun.The length of its major axis is   AU.[An astronomical unit (AU) is the mean distance between Earth and the Sun, about 93 million miles.] Find the maximum distance from the comet to the Sun.(The perihelion distance from a planet to the Sun is   and the aphelion distance is   Find theAnswer in AU and round to the nearest hundredth. and the aphelion distance is The orbit of Hale-Bopp comet, discovered in 1995, is an ellipse with eccentricity   and one focus at the Sun.The length of its major axis is   AU.[An astronomical unit (AU) is the mean distance between Earth and the Sun, about 93 million miles.] Find the maximum distance from the comet to the Sun.(The perihelion distance from a planet to the Sun is   and the aphelion distance is   Find theAnswer in AU and round to the nearest hundredth. Find theAnswer in AU and round to the nearest hundredth.

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