Calculate the mass (in kg) of the Sun based on data for Mars's orbit. (Use G = 6.67 x 10-11 N. m2/kg2 in your calculations. Round your answer to at least four significant figures.) kg Compare the above calculated value with the Sun's actual mass. (Round your answer to at least three decimal places.) m calculated mactual
Calculate the mass (in kg) of the Sun based on data for Mars's orbit. (Use G = 6.67 x 10-11 N. m2/kg2 in your calculations. Round your answer to at least four significant figures.) kg Compare the above calculated value with the Sun's actual mass. (Round your answer to at least three decimal places.) m calculated mactual
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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
Transcribed Image Text:Celestial
Mean Distance
Period of Revolution
Period of
Eccentricity
of Orbit
from Sun (million
km)
(d = days) (y = years)
Object
Rotation at
Equator
Sun
27 d
Mercury
57.9
88 d
59 d
0.206
Venus
108.2
224.7 d
243 d
0.007
Earth
149.6
365.26 d
23 h 56 min 4 s
0.017
Mars
227.9
687 d
24 h 37 min 23 s
0.093
Jupiter
778.4
11.9 y
9 h 50 min 30 s
0.048
Saturn
1426.7
29.5 6
10 h 14 min
0.054
Uranus
2871.0
84.0 y
17 h 14 min
0.047
Neptune
4498.3
164.8 y
16 h
0.009
Earth's
149.6 (0.386 from
Earth)
27.3 d
27.3 d
0.055
Мoon
Equatorial Diameter
(km)
Celestial
Mass (Earth = 1)
Density (g/cm³)
%3D
Object
Sun
1,392,000
333,000.00
1.4
Mercury
4879
0.06
5.4
Venus
12,104
0.82
5.2
Earth
12,756
1.00
5.5
Mars
6794
0.11
3.9
Jupiter
142,984
317.83
1.3
Saturn
120,536
95.16
0.7
Uranus
51,118
14.54
1.3
Neptune
49,528
17.15
1.6
Earth's
3476
0.01
3.3
Мoon
Table D1 Astronomical Data
Other Data:
Mass of Earth: 5.97 x 1024 kg
Mass of the Moon: 7.36 x 1022 kg
Mass of the Sun: 1.99 x 103° kg

Transcribed Image Text:For the following questions, use the data found in Appendix D.
6.67 x 10-11 N •m²/kg2 in your calculations. Round your answer to at least four significant figures.)
Calculate the mass (in kg) of the Sun based on data for Mars's orbit. (Use G =
kg
Compare the above calculated value with the Sun's actual mass. (Round your answer to at least three decimal places.)
m calculated
mactual
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