a washing machine, electrons orbiting in an atom, and the most important is satellites revolving around earth.
Practical applications of circular motion include amusement park rides like the carousel and roller coasters, vehicles navigating curved roads or roundabouts, and objects in orbit around a celestial body. Understanding circular motion is also important in fields such as engineering for designing machinery with rotating components and in physics for analyzing the motion of particles in a circular path.
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
Circular motion refers to the movement of an object in a circular path around a central point. It produces a centripetal acceleration towards the center, causing a constant change in direction of the object's velocity. Circular motion is fundamental in various natural phenomena and engineering applications, such as planetary orbits, car steering, and roller coaster loops.
Circular Motion
Circular Motion
It is not. However, the projection of circular motion on a line is.
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:):):):/
Uniform circular 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:):):):/
Curve linear is antonym to linear. Circular is one among many curvelinear motions. In case of circular there will be a constant radius but in curvelinear radius would change at every instant
In circular motion the object travels in the circular trajectory because of the centripetal force exerted on it. Otherwise the velocity is always in tangential direction which means that stopping the centripetal force can send the object in a straight path.
translational motion and rotational motion