You, along with your team of intrepid planetary scientists, have been studying the small planet Dweezildorp. After much data collection you see that the density of the planet's atmosphere is given by: d = 5 - 0.0001 p where p is the distance from the planet's center. You've also measured the radius of Dweezildorp to be 1000 meters. Use the expression for Dweezildorp's atmospheric density to calculate the total mass of Dweezildorp's atmosphere from the planet's surface to an elevation of 5000 meters.

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You, along with your team of intrepid planetary scientists, have been studying the small planet Dweezildorp. After
much data collection you see that the density of the planet's atmosphere is given by:
d = 50.0001 p
where p is the distance from the planet's center.
You've also measured the radius of Dweezildorp to be 1000 meters. Use the expression for Dweezildorp's atmospheric
density to calculate the total mass of Dweezildorp's atmosphere from the planet's surface to an elevation of 5000
meters.
Transcribed Image Text:You, along with your team of intrepid planetary scientists, have been studying the small planet Dweezildorp. After much data collection you see that the density of the planet's atmosphere is given by: d = 50.0001 p where p is the distance from the planet's center. You've also measured the radius of Dweezildorp to be 1000 meters. Use the expression for Dweezildorp's atmospheric density to calculate the total mass of Dweezildorp's atmosphere from the planet's surface to an elevation of 5000 meters.
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