Foundations of Astronomy (MindTap Course List)
Foundations of Astronomy (MindTap Course List)
14th Edition
ISBN: 9781337399920
Author: Michael A. Seeds, Dana Backman
Publisher: Cengage Learning
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Chapter 4, Problem 1SOP

Arrange the following in order of increasing distance from Earth according to the geocentric model of the Universe: Jupiter, Mercury, the Sun, Venus, Mars, Saturn, the stars

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Directions: Complete the given table by finding the ratio of the planet’s time of the revolution to its radius. Planet Average Radius of Orbit Times of Revolution     R3     T2     T2 /R3   Mercury 5.7869 × 1010 7.605 ×106       Venus 1.081 × 1011 1.941 ×107       Earth 1.496 × 1011 3.156 ×107       What pattern do you observe in the last column of data? Which law of Kepler's does this seem to support?
The picture below shows the model. Planets Moon Earth SUN Perihelion Heliocentric Aphelion Geocentric Solarcentric
Sort the characteristics according to whether they are part of the a cocentric model, the heliocentric madel, or both solar system models This model is Sun-centered. Retrograde motion is explained by the orbital speeds of planets. Epicycles and deferents help explain planetary motion. This model is Earth-centered. The brightness of a planet increases when the planet is closest to Earth. Planets move in circular orbits and with uniform motion. Retrograde motion is explained by epicycles. Geocentric Heliocentric Both geocentric and heliocentric

Chapter 4 Solutions

Foundations of Astronomy (MindTap Course List)

Ch. 4 - In Ptolemys model, which of the followingepicycle,...Ch. 4 - Why did Copernicus have to keep small epicycles in...Ch. 4 - Was the belief held by ancient astronomers that...Ch. 4 - When Tycho observed the new star of 1572, he could...Ch. 4 - Assume the night is clear and the Moons phase is...Ch. 4 - Does Tychos model of the Universe explain the...Ch. 4 - Name an empirical law. Why is it considered...Ch. 4 - How does Keplers first law of planetary motion...Ch. 4 - When Mercury is at aphelion (farthest from the...Ch. 4 - Prob. 20RQCh. 4 - What is P for Earth? What is a for Earth? Do these...Ch. 4 - Based Figure 4-13c, do planets with larger a take...Ch. 4 - How did the Alfonsine Tables, the Prutenic Tables,...Ch. 4 - Explain how each of Galileos telescopic...Ch. 4 - How did discovery of the Galilean moons disprove...Ch. 4 - Prob. 26RQCh. 4 - How Do We Know? Describe the differences between a...Ch. 4 - Draw and label a diagram of the western horizon...Ch. 4 - If you lived on Mars, which planets would exhibit...Ch. 4 - How long does it take for one retrograde cycle of...Ch. 4 - If a planet has an average distance from the Sun...Ch. 4 - If a space probe is sent into an orbit around the...Ch. 4 - Uranus orbits the Sun with a period of 84.0 years....Ch. 4 - An object takes 29.5 years to orbit the Sun. What...Ch. 4 - One planet is three times farther from the Sun...Ch. 4 - Galileos telescope showed him that Venus has a...Ch. 4 - Which is the phase of Venus when it is closest?...Ch. 4 - Galileos telescopes were not of high quality by...Ch. 4 - Arrange the following in order of increasing...Ch. 4 - Arrange the following in order of increasing...Ch. 4 - Prob. 1LTLCh. 4 - Study Figures 4-11 and 4-16 and describe the...Ch. 4 - What three astronomical objects are represented...Ch. 4 - Use the figure below to explain how the Ptolemaic...
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Kepler's Three Laws Explained; Author: PhysicsHigh;https://www.youtube.com/watch?v=kyR6EO_RMKE;License: Standard YouTube License, CC-BY