Universe
11th Edition
ISBN: 9781319039448
Author: Robert Geller, Roger Freedman, William J. Kaufmann
Publisher: W. H. Freeman
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Chapter 12, Problem 18Q
To determine
The actual internal energy source for Saturn and Jupiter, which gives off infrared
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Saturn is even further at 1434X109m from the sun. Calculate the approximate strength of the greenhouse effect on Jupiter. The observed surface temperature is 133K, the albedo is 0.47, the solar constant is 15W/m2.
Fill out this data table with information you have collected about the solar system planets.
Characteristics
Unit
Mercury
Venus
Earth
330
10 g
4,870
5,970
Mass
61
928
1,083
Volume
1024 cm
5.4
5.4
50
Density
g/cm
Distance from Sun
58
10° km
100
100
Radius
km
Crust Thickness
km
Atmosphere Height
km
Axial Tilt
degrees
Force of Gravity on
a1 kg test mass
N
Length of Day
4223
4,223
88
hours
225
365
Length of Orbit
Earth days 88
167
464
15
Mean Temperature
° C
ТЕВОС
Mars
Jupiter
Saturn
Uranus
Neptune
102,000
642
| 1,898,000
568.000
86,800
What is the density of Jupiter’s moon Europa (see Appendix G for data on moons)?
Chapter 12 Solutions
Universe
Ch. 12 - Prob. 1CCCh. 12 - Prob. 2CCCh. 12 - Prob. 3CCCh. 12 - Prob. 4CCCh. 12 - Prob. 5CCCh. 12 - Prob. 6CCCh. 12 - Prob. 7CCCh. 12 - Prob. 8CCCh. 12 - Prob. 9CCCh. 12 - Prob. 10CC
Ch. 12 - Prob. 11CCCh. 12 - Prob. 1QCh. 12 - Prob. 2QCh. 12 - Prob. 3QCh. 12 - Prob. 4QCh. 12 - Prob. 5QCh. 12 - Prob. 6QCh. 12 - Prob. 7QCh. 12 - Prob. 8QCh. 12 - Prob. 9QCh. 12 - Prob. 10QCh. 12 - Prob. 11QCh. 12 - Prob. 12QCh. 12 - Prob. 13QCh. 12 - Prob. 14QCh. 12 - Prob. 15QCh. 12 - Prob. 16QCh. 12 - Prob. 17QCh. 12 - Prob. 18QCh. 12 - Prob. 19QCh. 12 - Prob. 20QCh. 12 - Prob. 21QCh. 12 - Prob. 22QCh. 12 - Prob. 23QCh. 12 - Prob. 24QCh. 12 - Prob. 25QCh. 12 - Prob. 26QCh. 12 - Prob. 27QCh. 12 - Prob. 28QCh. 12 - Prob. 29QCh. 12 - Prob. 30QCh. 12 - Prob. 31QCh. 12 - Prob. 33QCh. 12 - Prob. 34QCh. 12 - Prob. 35QCh. 12 - Prob. 36QCh. 12 - Prob. 37QCh. 12 - Prob. 38QCh. 12 - Prob. 39QCh. 12 - Prob. 40QCh. 12 - Prob. 41QCh. 12 - Prob. 42QCh. 12 - Prob. 43QCh. 12 - Prob. 44QCh. 12 - Prob. 45QCh. 12 - Prob. 46QCh. 12 - Prob. 47QCh. 12 - Prob. 48QCh. 12 - Prob. 49QCh. 12 - Prob. 50QCh. 12 - Prob. 51QCh. 12 - Prob. 52QCh. 12 - Prob. 53QCh. 12 - Prob. 54QCh. 12 - Prob. 55QCh. 12 - Prob. 56QCh. 12 - Prob. 57QCh. 12 - Prob. 58QCh. 12 - Prob. 59Q
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- NASA Scientists want to measure the current distance between two of Jupiter's Moons, Ganymede and Europa. They set up a laser on the surface of Ganymede, shine it at a mirror on the surface of Europa and measure how long it takes for the laser light to return to a detector on the surface of Ganymede. They calculated the current distance between the two moons to be 787 million meters. How long did it take the light to make it to Europa and back? *Give answers to at least three significant figures. DO NOT submit answers in scientific notation. Use symbols for units (i.e. m, s, kg, N)*arrow_forwardAssume that Jupiter receives its solar energy over a one-hour-long noon period. How much energy is heating 1 square meter of the surface of Jupiter during this peak time? Express your answer in scientific notations.arrow_forwardSaturn is ten times as far from the Sun as is the Earth. How does the flux of solar energy at Saturn compare with that at the Earth?arrow_forward
- Calculate the escape velocity of Titan.arrow_forwardPart 2 of 3 The Roche limit for Jupiter is given by: R = 2.44r R = km Submit Skip (you cannot come back)arrow_forwardThe water clouds believed to be present on Jupiter and Saturn exist at temperatures and pressures similar to those in the clouds of the terrestrial atmosphere. What would it be like to visit such a location on Jupiter or Saturn? In what ways would the environment differ from that in the clouds of Earth?arrow_forward
- What are the seasons like on Jupiter?arrow_forwardThe ring systems around Jupiter and Saturn lie outside those planets respective Roche limits. True or false? How do you know?arrow_forwardIf the temperature at Saturn's cloud tops is 97 K and the planet radiates three times more energy than it receives from the Sun, use Stefan's law to calculate what the temperature would be in the absence of any internal heat source.arrow_forward
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