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Home > Courses > 1P91_DAgostino > Ch6 
  • Introduction
  • Chapter 1: Representing Motion
  • Chapter 2: Motion in One Dimension
  • Chapter 3: Vectors and Motion in Two Dimensions
  • Chapter 4: Forces and Newton's Laws of Motion
  • Chapter 5: Applying Newton's laws
  • Chapter 6: Circular Motion, Orbits, and Gravity
    • Rotational kinematics equations
      • Example: Ferris wheel
      • Example: Graphical analysis
      • Example: Bicycle wheel
      • Example: Optimum banking angle for a curved road
      • Example: Minimum speed to "loop the loop"
    • Newton's law of gravity
      • Example: Gravitational force exerted by one person on another
      • Example: Gravitational force exerted by a proton on an electron
      • Example: Gravitational force exerted by earth on moon, sun on earth
      • Example: Gravitational force exerted by earth on an object of mass m
      • Example: Local values of g on other planets
    • Gravity and orbits
      • Example: Geostationary satellites
      • Example: Determining the mass of the sun
  • Chapter 7: Rotational Motion
  • Chapter 9: Momentum
  • Chapter 10: Energy and Work
  • Chapter 27: Relativity
  • Summary
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[Disclaimer] Updated: 21-Aug-2013 14:35