mass.
The moment of inertia for rotation of a door on its hinges depends on the door's mass distribution and shape. It is a measure of how difficult it is to change the door's rotational motion.
The moment of inertia of a door is a measure of how difficult it is to change its rotational motion. It depends on the door's mass distribution and shape. A door with a larger moment of inertia will require more force to start or stop its rotation, making it harder to open or close.
The moment of inertia about the instantaneous center in a rotating rigid body is a measure of how difficult it is to change the body's rotational motion around that point. It depends on the mass distribution and shape of the body.
The moment of inertia of a rod with a mass attached to it is a measure of how difficult it is to change the rod's rotational motion. It depends on the mass of the rod and the mass of the attached object, as well as the distance between them and the axis of rotation.
The ability of a body to maintain its state, either in motion or in rest position against any external force is called Inertia while the moment of inertia is defined as the measure of an object's resistance to any change in its state of rotation.
The moment of inertia tells us how easy or how difficult it is to make something rotate.
Because it is a measure of the "resistence" of an object to be accelerated in its rotation. An object with a big moment of inertia is more difficult to increase/decrease its angular velocity (speed of rotation), than an object with a low moment of inertia.
The moment of inertia for rotation of a door on its hinges depends on the door's mass distribution and shape. It is a measure of how difficult it is to change the door's rotational motion.
The moment of inertia of a door is a measure of how difficult it is to change its rotational motion. It depends on the door's mass distribution and shape. A door with a larger moment of inertia will require more force to start or stop its rotation, making it harder to open or close.
The moment of inertia about the instantaneous center in a rotating rigid body is a measure of how difficult it is to change the body's rotational motion around that point. It depends on the mass distribution and shape of the body.
The moment of inertia of a rod with a mass attached to it is a measure of how difficult it is to change the rod's rotational motion. It depends on the mass of the rod and the mass of the attached object, as well as the distance between them and the axis of rotation.
You calculate it using your moment of inertia equations corresponding to the geometry of the object. There's no simple device I don't think that you can buy to just measure it.
The ability of a body to maintain its state, either in motion or in rest position against any external force is called Inertia while the moment of inertia is defined as the measure of an object's resistance to any change in its state of rotation.
define moment of inertia§ I is the moment of inertia of the mass about the center of rotation. The moment of inertia is the measure of resistance to torque applied on a spinning object (i.e. the higher the moment of inertia, the slower it will spin after being applied a given force).
physically it means that how difficult it is to shear a body
The moment of inertia of a cylinder is a measure of its resistance to changes in its rotational motion. It depends on the mass distribution of the cylinder and its distance from the axis of rotation. The formula for the moment of inertia of a solid cylinder is 1/2 mass radius2.
The physical quantity corresponding to inertia in rotational motion is moment of inertia. Moment of inertia is a measure of an object's resistance to changes in its rotational motion. It depends on both the mass and distribution of mass in an object.