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  1. The quantity \ (mr^2\) is called the rotational inertia or moment of inertia of a point mass \ (m\) a distance \ (r\) from the center of rotation. Figure \ (\PageIndex {2}\): An object is supported by a horizontal frictionless table and is attached to a pivot point by a cord that supplies centripetal force.

  2. Calculating Rotational Inertia for Continuous Objects. Our task is to compute the rotational inertia, for which the formula in terms of masses and their positions is different from the one for center of mass (see Section 4.2), but the procedure is exactly the same.

  3. 2 Αυγ 2023 · Moment of inertia, also known as rotational inertia or angular mass, is a physical quantity that resists a rigid body’s rotational motion. It is analogous to mass in translational motion. It determines the torque required to rotate an object by a given angular acceleration.

  4. Rotational Inertia. Let us now use the result in Equation \ref{KE-4ms} to write down the rotational analog of kinetic energy: \[KE_{rot}\equiv\frac{1}{2}I\omega^2\] where I, is the rotational inertia of a object consisting of point masses: \[I\equiv\sum_{i=1}^{N}m_ir_i^2\label{Ipoint}\] The SI units of rotational inertia are \( kg \cdot{m^2}\).

  5. introduction & theory. Logic behind the moment of inertia: Why do we need this? Definition for point bodies. I = mr2. It's a scalar quantity (like its translational cousin, mass), but has unusual looking units. [kg m 2] Say it, kilogram meter squared and don't say it some other way by accident. For a collection of objects, just add the moments.

  6. Understand the relationship between force, mass and acceleration. Study the turning effect of force. Study the analogy between force and torque, mass and moment of inertia, and linear acceleration and angular acceleration.

  7. Overview of the key terms, equations, and skills related to rotational inertia, including how to analyze rotation inertia and how it relates to Newton's second law.

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