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Translational and Rotational statics and dynamics

Translational and Rotational statics and dynamics. Robert Arscott , Cooper Lund, Sarah Jensen, and Tyne Jones. Battle Royale. Scalars. Mass Speed Distance Traveled. Vectors. Velocity Acceleration Displacement Force. Vector Diagrams. Vector Addition. Split into x and y components

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Translational and Rotational statics and dynamics

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  1. Translational and Rotational statics and dynamics Robert Arscott, Cooper Lund, Sarah Jensen, and Tyne Jones

  2. Battle Royale Scalars Mass Speed Distance Traveled Vectors • Velocity • Acceleration • Displacement • Force

  3. Vector Diagrams

  4. Vector Addition • Split into x and y components • x= McosѲ • y= MsinѲ • Add them using the Pythagorean Theorem • V= √(x2 + y2) • Find the angle • Ѳ = tan-1

  5. Newton’s Laws 1. Law of Inertia- an object at rest stays at rest and an object in motion stays in motion unless acted on by an unbalanced force 2. F=ma 3. For every action there is an equal and opposite reaction

  6. Friction and Inclines Ffr= on a normal plane

  7. Kinematics

  8. Universal Gravitation G=

  9. Rotational Motion

  10. Force on loops

  11. Kepler’s Laws 1. Planets travel in elliptical orbits 2. Planets cover equal areas in equal amounts of time (regardless of speed or distance from the sun) 3. T2/R3

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