Angular equations of motion

    • [DOC File]PHYS 201 Equations Sheet - Winthrop Chemistry

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      When considering angular motion, a torque will cause an _____ _____ (consider both torque equations) What must be the centripetal force that keeps the lady bug moving in a circle? _____ Why does this force eventually fail? _____ _____ Reset all, and set the force back to 1 N. Observe the acceleration vector as you start.

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    • [DOC File]Comparison of Linear Motion and Rotational Motion, PHY ...

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      Angular displacement, angular velocity, and angular acceleration. Solving rotational motion problems using kinematic equations. Relating linear quantities with angular quantities using radius. Rotational Dynamics. Torque, center of gravity, moment of inertia, rotational work, rotational kinetic energy, and angular momentum.

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    • [DOC File]Chapter 9: Equations of motion in a rotating frame and ...

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      d. Equations of motion. We start, as we do every night, with Newton’s Second “Law.” Decompose:: : The angular equation says that the quantity is a constant of the motion, namely the angular momentum. The radial equation includes the same centrifugal term that arises in the rotating reference frame. e. Energy

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    • [DOC File]PHYS 201 Equations Sheet

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      Linear Motion. Displacement Velocity Acceleration Constant acceleration equations. Mass m. Momentum Force F. Power Newton’s 2nd Law Equilibrium Kinetic Energy Rotational Motion. Angular Displacement Angular Velocity Angular Acceleration Constant angular acceleration equations. Moment of Inertia Angular Momentum Torque Power Newton’s 2nd Law ...

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    • [DOC File]Physics Web Search: Torque

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      Imagine a point P that oscillates back and forth with simple harmonic motion. The period, T, the frequency, f, and the angular frequency, , of point P are defined using the following equations. The linear motion of point P as a function of time is sinusoidal in nature. Assume that the position x= 0 is defined as the central location of the motion.

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    • [DOC File]Chapter 8: Rotational Motion

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      Solving rotational motion problems using kinematic equations. Chapter-9: Rotational Dynamics. Torque, center of gravity, moment of inertia, rotational work, rotational kinetic energy, and angular momentum. Solving problems involving objects in equilibrium using the conditions for equilibrium. Conservation of angular momentum.

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    • [DOC File]Part 1: Introduction & 1-D Kinematics

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      Rotational Motion. Sec 8-1. Rigid Body – the distance between any two particles remains constant. In general the motion of a rigid body consists of translation of the center of mass plus rotation about the center of mass (CM). Angular Movement of a Rigid Body. Consider a particle P at position PI moving along a circular arc (S. Linear Speed ...

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    • Angular Kinematics | Brilliant Math & Science Wiki

      Equations of motion in a rotating frame Consider an orthogonal coordinate system which is rotating about an arbitrary axis with constant angular velocity as seen in figure 3. Figure 3 – The circular trajectories mapped out by the tips of each of the unit vectors of an orthogonal coordinate system being rotated about an arbitrary constant ...

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    • [DOC File]Physics 201 2009

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      Equations of Motion for Constant Angular Acceleration. Example: A typical roulette wheel is initially spun at 18 radians per second and takes 10 seconds to stop. Its diameter is 80 cm. Find the following. initial tangential speed of a point on the rim of the wheel.

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