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  1. Students should understand the analogy between translational and rotational kinematics so they can write and apply relations among the angular acceleration, angular velocity, and angular displacement of a body that rotates about a fixed axis with constant angular acceleration.

  2. Rotational Kinematics, Physics Worksheet 1: Practice working with rotation and revolution Circular motion can involve rotation and/or revolution. Rotation occurs when the object spins about an internal axis. Revolution occurs when the axis lies outside of the object. Some objects do both at the same time! The time it takes for an

  3. physicscourses.colorado.edu › phys1110_fa15 › LectureNotesRotational Motion - Physics

    Curl fingers of right hand around rotation, thumb points in direction of vector. For rotational motion, there is a relation between tangential velocity and angular velocity . = rate at which is changing. speed v along rim = constant = r . Same equations, just different symbols.

  4. Physics Worksheets As .pdf files. HSPhysics 01 Motion Notes.pdf: 2.54Mb; HSPhysics 01-01 Introduction, Units, and Uncertainty.pdf ... HSPhysics 03-03 Kinematics of Rotational Motion.pdf: 290.24kb; HSPhysics 03-04 Torque.pdf: 494.92kb; HSPhysics 03-05 Moment of Inertia.pdf: ... Notes used for OpenStax College Physics 1st Edition available here.

  5. Unit 11: worksheet 1 p. 1 adg, 11/11/2009 Unit 11: Rotational Kinematics, General Physics . Worksheet 1: Practice working with rotation and revolution . Circular motion can involve rotation and/or revolution. Rotation occurs when the object spins about an internal axis. Revolution occurs when the axis lies outside of the object. Some objects do

  6. Worksheet: Rotational Motion Name_____ PHYSICSFundamentals © 2004, GPB 7-03 1. Choose the type of motion that matches each description: translational (T) or rotational (R) _____ All parts of object move together. _____ Some parts of object move faster than others. _____ Motion is around an axis.

  7. Identify the rotational term analogous to each of the following: acceleration, force, mass, translational kinetic energy, linear momentum, impulse. Explain why centripetal acceleration changes the direction of velocity in circular motion but not its magnitude.

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