Inertia and angular velocity

    • [DOC File]UNIT 10 - Physics and Astronomy | Physics and Astronomy | TTU

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      The angular momentum of the system (person and weights) is conserved. When, sitting on a rotating stool, you stretch your hands the system has a larger rotational inertia and a smaller angular velocity. When the hands are pulled inward towards the body the rotational inertia decreases and hence the angular velocity increases. Falling cats

      angular moment of inertia


    • [DOC File]Chapter 8: Rotational Motion

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      where I1 is the initial moment of inertia, I2 is the final moment of inertia, 1 is the initial angular velocity and 2 is the final angular velocity. The product of the total moment of inertia and the angular velocity, I , is called the angular momentum, L (). If there is no net torque on an object, the angular momentum is conserved; the initial ...

      angular acceleration moment of inertia


    • [DOC File]Solutions to Rotational dynamics 2-angular momentum

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      For that shape we will approximate the moment of inertia I to be that of a thin, wide rectangle. Where ... is the angular acceleration of the object rotating about a fixed center, and r is the radial distance from the center to the object. ... So if the attacker has a linear velocity of 4.13 m/s, the angular velocity of the outermost portion of ...

      moment of inertia and speed


    • [DOC File]rotational dynamics 2 – angular momentum

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      : Determine the moment of inertia, I, of a disk by measuring the angular acceleration, α, when a constant toque is applied. Reading: Introduction: This week in class you are learning about rotation and how it is analogous to one dimensional linear motion.

      angular speed and inertia


    • [DOC File]Phys 21 Rotational Inertia and Torque

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      What is the angular velocity of the merry-go-round and the rabbit? Example: A disk with a moment of inertia I1 is rotating with angular velocity (1 about a frictionless shaft. It drops onto another disk with moment of inertia I2 initially at rest. Because of surface friction, the two disks eventually attain a common angular velocity. What is it?

      moment of inertia and velocity


    • [DOC File]Phys 21 Rotational Inertia

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      2) Spin the body as fast as possible while still being able to count the revolutions. The angular velocity will then be comparable to a typical final angular velocity in Part I. 3) Start the time and count the number, N, of revolutions during the time, TN, required for …

      momentum of inertia equation


    • Momentum Machine: Physics & Mechanics Science Activity ...

      2) Spin the body as fast as possible while still being able to count the revolutions. The angular velocity will then be comparable to a typical final angular velocity in Part I. 3) Start the time and count the number, 31, of revolutions during the time, 32, required for …

      angular velocity formula


    • [DOC File]Boddeker's Mechanics Notes

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      The angular momentum of the system (person and weights) is conserved. When, sitting on a rotating stool, you stretch your hands the system has a larger rotational inertia and a smaller angular velocity. When the hands are pulled inward towards the body the rotational inertia decreases and hence the angular velocity increases. Bicycle wheel

      rotational inertia and angular velocity


    • [DOC File]Physics 24 Laboratory Report - Physics – Physics

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      angular velocity. ω is an angular displacement of short duration divided by the time. All points on the disk undergo the same angular displacement during the same time, so they all have the same angular velocity. The SI units of ω are rad/s. Because radians are dimensionless, the dimension of angular velocity is that of reciprocal time, T−1.

      angular moment of inertia


    • [DOC File]Rotational motion is all around us

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      Same answer for both…angular velocity doesn’t depend on radius. 10.2: Rotational Kinematics d = ½at2 + v0t + d0 . θ = ½αt2 + ω0t + θ0 Example. If the angular position is described by the following equation, θ = 6t2 - 5t - 20, what is the angular acceleration at 4 seconds? ω = dθ / dt. α = dω / dt α = d2θ / dt2

      angular acceleration moment of inertia


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