In 1619, the German astronomer Johannes Kepler showed that the square of the period of a planet (how long it takes to go around the Sun) is directly proportional to the cube of of the semimajor axis of its eliptical orbit (how far it is from the Sun) with p² = D³ If the distance of the comet ATLAS from the Sun is 26.9158 AU, what is its period around the sun? Round to 2 decimal places. P = years

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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In 1619, the German astronomer Johannes Kepler showed that the square
of the period of a planet (how long it takes to go around the Sun) is
directly proportional to the cube of of the semimajor axis of its eliptical
orbit (how far it is from the Sun) with
p² = D³
If the distance of the comet ATLAS from the Sun is 26.9158 AU, what is its
period around the sun? Round to 2 decimal places.
P =
years
Transcribed Image Text:In 1619, the German astronomer Johannes Kepler showed that the square of the period of a planet (how long it takes to go around the Sun) is directly proportional to the cube of of the semimajor axis of its eliptical orbit (how far it is from the Sun) with p² = D³ If the distance of the comet ATLAS from the Sun is 26.9158 AU, what is its period around the sun? Round to 2 decimal places. P = years
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