1.1. Mars is (on average) 237 × 109 m from the Sun. (a) How long does it take light to get from the Sun to Mars? Give your answer in both meters and minutes. (b) If a spaceship is able to travel straight from Mars to the Sun at 60% the speed of light (B = 0.6), how long does the trip take? Give your answer in both meters and minutes. (c) If a particle from the Sun takes 18 min to get directly to Mars, what is the speed of this particle? Give your answer as either a percentage of the speed of light or in terms of ẞ.

Astronomy
1st Edition
ISBN:9781938168284
Author:Andrew Fraknoi; David Morrison; Sidney C. Wolff
Publisher:Andrew Fraknoi; David Morrison; Sidney C. Wolff
Chapter19: Celestial Distances
Section: Chapter Questions
Problem 7E: While a meter is the fundamental unit of length, most distances traveled by humans are measured in...
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1.1. Mars is (on average) 237 × 109 m from the Sun.
(a) How long does it take light to get from the Sun to Mars? Give your answer in both
meters and minutes.
(b) If a spaceship is able to travel straight from Mars to the Sun at 60% the speed of light
(60.6), how long does the trip take? Give your answer in both meters and minutes.
(c) If a particle from the Sun takes 18 min to get directly to Mars, what is the speed of this
particle? Give your answer as either a percentage of the speed of light or in terms of ẞ.
Transcribed Image Text:1.1. Mars is (on average) 237 × 109 m from the Sun. (a) How long does it take light to get from the Sun to Mars? Give your answer in both meters and minutes. (b) If a spaceship is able to travel straight from Mars to the Sun at 60% the speed of light (60.6), how long does the trip take? Give your answer in both meters and minutes. (c) If a particle from the Sun takes 18 min to get directly to Mars, what is the speed of this particle? Give your answer as either a percentage of the speed of light or in terms of ẞ.
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