Questions 10 - 11 refer to the following information: Planetary Data of Solar System Distance from the Sun (billion meters) 57.9 Orbital Period (Earth years) Planet Mercury Earth 0.241 149.6 1.0 Mars 227.9 1.88 Saturn 29.5 Uranus 84.0 2,870 20,000 Planet X The chart above shows our Solar System's planetary data applied to the Kepler's Third Law, which states that the square of the period of any planet is proportional to the cube of its distance from the Sun. For any planets in the Solar System, the square of the orbital period divided by the cube of its distance from the Sun should be a constant. 10. If Saturn has the period of 29.5 Earth years, find its distance from the Sun, in billion meters? (Round your answer to the nearest whole number.)
Questions 10 - 11 refer to the following information: Planetary Data of Solar System Distance from the Sun (billion meters) 57.9 Orbital Period (Earth years) Planet Mercury Earth 0.241 149.6 1.0 Mars 227.9 1.88 Saturn 29.5 Uranus 84.0 2,870 20,000 Planet X The chart above shows our Solar System's planetary data applied to the Kepler's Third Law, which states that the square of the period of any planet is proportional to the cube of its distance from the Sun. For any planets in the Solar System, the square of the orbital period divided by the cube of its distance from the Sun should be a constant. 10. If Saturn has the period of 29.5 Earth years, find its distance from the Sun, in billion meters? (Round your answer to the nearest whole number.)
Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter11: Topics From Analytic Geometry
Section: Chapter Questions
Problem 47RE
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