The position, the velocity, and the acceleration.
The speed of an object in circular motion remains constant while the direction of the velocity changes continuously.
The direction of velocity changes continuously during uniform circular motion. The magnitude of velocity remains constant, but its direction is constantly changing as the object moves around the circle.
Inertia is not a physical quantity but rather a property of matter. It is the tendency of an object to resist changes in its motion. Its SI unit is the kilogram (kg).
the conversion factor merely changes the number in such a way that it fits the new units the physical quantity is not changed
In circular motion, centripetal acceleration occurs, which is the acceleration directed towards the center of the circular path. This acceleration is necessary to keep an object moving in a circle, as it continually changes the direction of the object's velocity.
A region of space that has a physical quantity is referred to as a field. Fields describe how a physical quantity, such as gravitational force or electromagnetic radiation, is distributed and how it changes with distance or time in a given region of space. Examples include gravitational fields, electromagnetic fields, and temperature fields.
the gradient of a scalar function of any quantity is defined as a vector field having magnitude equal to the maximum space rate of change of the quantity and having a direction identical with the direction of displacement along which the rate of change is maximum.
While the speed may be constant, the velocity changes because velocity is a vector quantity that includes direction. As the car drives around the circular track, its direction constantly changes, causing the velocity to change even though the speed remains the same. This change in velocity is due to the centripetal acceleration required to keep the car moving in a circular path.
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.
No, moment of inertia cannot be negative as it is a physical quantity that represents an object's resistance to changes in its rotation. Negative values for moment of inertia do not have physical meaning.
The physical quantity related to inertia is mass. Mass is a measure of an object's resistance to changes in its motion, and it is directly proportional to the object's inertia. Objects with greater mass have greater inertia.
As you run circular laps at a constant speed, your speed remains constant, but your velocity changes because velocity is a vector quantity that includes direction. Your acceleration points towards the center of the circle, providing the centripetal force needed to keep you moving in a circular path.