Because 'accelerated motion' means any change in speed orany change in direction
away from a straight line. So motion on a circular path is always accelerated motion.
The motion of an athlete running on a circular track can be described as both translational motion (moving around the track) and rotational motion (legs moving in a circular path). This combination of motions allows the athlete to maintain speed and direction while covering the curved path of the track.
The motion of an athlete moving along a circular path is considered accelerated because even if the speed remains constant, the direction of the athlete's velocity is constantly changing. Acceleration is defined as a change in velocity, which includes changes in speed, direction, or both. In this case, the constant change in direction as the athlete moves along the curved path results in an acceleration towards the center of the circle, known as centripetal acceleration.
circular
The force diagram of circular motion illustrates the forces acting on an object moving in a circular path, such as centripetal force and friction, that keep the object moving in a curved trajectory.
The centripetal force is always perpendicular to the motion in circular motion. It acts towards the center of the circle, keeping the object moving in a circular path.
The motion of an athlete running on a circular track can be described as both translational motion (moving around the track) and rotational motion (legs moving in a circular path). This combination of motions allows the athlete to maintain speed and direction while covering the curved path of the track.
The motion of an athlete moving along a circular path is considered accelerated because even if the speed remains constant, the direction of the athlete's velocity is constantly changing. Acceleration is defined as a change in velocity, which includes changes in speed, direction, or both. In this case, the constant change in direction as the athlete moves along the curved path results in an acceleration towards the center of the circle, known as centripetal acceleration.
Circular Motion -a motion along a circular path or the motion of an object in a circular Example -blades of a ceiling fan when the fan is switched on. or The motion of body along the circular path is called circular motion
When an object is moving in a uniform circular motion while traveling in a circular path, this means it has a constant speed. When an object is moving in a circular path, this indicates it is constantly being pulled towards the center of the circle.
if an object moves along a circular path, the only change in its velocity is due to the change in the direction of the motion. The motion of the object moving along the circular path is, which is a uniform circular motion, is therefore an accelerated motion:):):):/
if an object moves along a circular path, the only change in its velocity is due to the change in the direction of the motion. The motion of the object moving along the circular path is, which is a uniform circular motion, is therefore an accelerated motion:):):):/
circular
The force diagram of circular motion illustrates the forces acting on an object moving in a circular path, such as centripetal force and friction, that keep the object moving in a curved trajectory.
The centripetal force is always perpendicular to the motion in circular motion. It acts towards the center of the circle, keeping the object moving in a circular path.
The type of motion that is present in circular or curved pathways is called rotational motion. Rotation involves an object moving in a circular path around a fixed axis.
A circular motion force diagram illustrates the forces acting on an object moving in a circular path, showing the centripetal force required to keep the object moving in a curved trajectory.
moving of earth round the sun moving of a bicycle's wheel