Moment of inertia is a property of a rotating body that defines its resistance
to a change in angular velocity about an axis of rotation.
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By carefully reading and analyzing the treatment above, we are
lead to infer that the actual answer to the question is 'yes'.
Inertia of motion is the resistance mass has to motion. It also is the resistance in change in momentum. Momentum includes two things: velocity and direction. When an object changes its velocity, the momentum of the object resists the change. Also, when an object does change its velocity, its momentum is directly changed. In general, the inertia of motion is matter's unwillingness to change velocity or momentum.
An object that is rotating at constant angular velocity will remain rotating unless it is acted upon by an external torque.
Angular momentum is a vector quantity. Angular velocity, which is a vector quantity, is multiplied by inertia, which is a scalar quantity.
The object's angular momentum
Angular velocity means how fast something rotates. The exact definition of angular momentum is a bit more complicated, but it is the rotational equivalent of linear momentum. It is the product of moment of inertia and angular speed.
Centrifugal governors respond to angular velocity. Inertia governors respond to angular acceleration.
Inertia of motion is the resistance mass has to motion. It also is the resistance in change in momentum. Momentum includes two things: velocity and direction. When an object changes its velocity, the momentum of the object resists the change. Also, when an object does change its velocity, its momentum is directly changed. In general, the inertia of motion is matter's unwillingness to change velocity or momentum.
An object that is rotating at constant angular velocity will remain rotating unless it is acted upon by an external torque.
Angular momentum is a vector quantity. Angular velocity, which is a vector quantity, is multiplied by inertia, which is a scalar quantity.
The object's angular momentum
Angular velocity means how fast something rotates. The exact definition of angular momentum is a bit more complicated, but it is the rotational equivalent of linear momentum. It is the product of moment of inertia and angular speed.
inertia in-er-sha amount of resistance to change in velocity
Inertia. Inertia applies to both increases and decreases in velocity.
The resistance of an object to changes in its motion is known as inertia. Changes in an objects motion include changes in its speed and direction.
either resistance or inertia
Inertia indicates to scientists resistance to change in velocity.
momentum is product of moment of inertia and angular velocity. There is always a 90 degree phase difference between velocity and acceleration vector in circular motion therefore angular momentum and acceleration can never be parallel