About This Chapter
How It Works:
- Identify the lessons in Prentice Hall Conceptual Physics' Satellite Motion chapter with which you need help.
- Find the corresponding video lessons within this companion course chapter.
- Watch fun videos that cover the satellite motion topics you need to learn or review.
- Complete the quizzes to test your understanding.
- If you need additional help, rewatch the videos until you've mastered the material or submit a question for one of our instructors.
Students will learn:
- Natural and artificial satellites
- Orbits of planets and satellites
- Kepler's laws of planetary motion
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1. Satellite: Definition & Uses
In this lesson, you will learn what a satellite is, the distinction between natural and artificial satellites, and some of their practical uses. A short quiz will follow.
2. What is Orbit? - Planets & Satellites
This lesson talks about what an orbit is and defines some common terms associates with orbit. We also talk specifically about orbits of planets and satellites.
3. Kepler's Three Laws of Planetary Motion
Find out about the interesting life and major contributions of Johannes Kepler. This lesson will also teach you how to find out how long it takes a planet to revolve around the sun!
4. Gravitational Field: Definition & Formula
This lesson defines what a gravitational field is and some practical examples encountered in the real world. We also develop the equations governing the gravitational field and explain what the units of measurement mean.
5. Circular Velocity & Escape Velocity
This lesson will describe the concepts of circular velocity, escape velocity, open orbits, closed orbits, and geosynchronous satellites. It will provide the equations necessary for you to be able to calculate out circular and escape velocity as well.
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Other chapters within the Prentice Hall Conceptual Physics: Online Textbook Help course
- Chapter 1: About Science
- Chapter 2: Mechanical Equilibrium
- Chapter 3: Newton's First Law of Motion-Inertia
- Chapter 4: Linear Motion
- Chapter 5: Projectile Motion
- Chapter 6: Newton's Second Law of Motion - Force and Acceleration
- Chapter 7: Newton's Third Law of Motion - Action and Reaction
- Chapter 8: Momentum
- Chapter 9: Energy
- Chapter 10: Circular Motion
- Chapter 11: Rotational Equilibrium
- Chapter 12: Rotational Motion
- Chapter 13: Universal Gravitation
- Chapter 15: Special Relativity - Space and Time
- Chapter 16: Relativity - Momentum, Mass, Energy, and Gravity
- Chapter 17: The Atomic Nature of Matter
- Chapter 18: Solids
- Chapter 19: Liquids
- Chapter 20: Gases
- Chapter 21: Temperature, Heat, and Expansion
- Chapter 22: Heat Transfer
- Chapter 23: Change of Phase
- Chapter 24: Thermodynamics
- Chapter 25: Vibrations and Waves
- Chapter 26: Sound
- Chapter 27: Light
- Chapter 28: Color
- Chapter 29: Reflection and Refraction
- Chapter 30: Lenses
- Chapter 31: Diffraction and Interference
- Chapter 32: Electrostatics
- Chapter 33: Electric Fields and Potential Energy
- Chapter 34: Electric Current
- Chapter 35: Electric Circuits
- Chapter 36: Magnetism
- Chapter 37: Electromagnetic Induction
- Chapter 38: The Atom and the Quantum
- Chapter 39: The Atomic Nucleus and Radioactivity
- Chapter 40: Nuclear Fission and Fusion