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Linear shifting of a signal involves shifting its elements by a fixed number of positions, while circular shifting involves wrapping the signal around so that elements that shift off one end reappear at the other end. Linear shifting can cause elements to be lost or new elements to be added, whereas circular shifting maintains the same number of elements.
Uniform linear motion occurs when an object moves in a straight line with constant speed. Uniform circular motion, on the other hand, occurs when an object moves in a circle at a constant speed, where the direction of motion is constantly changing.
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
Linear momentum is the momentum of an object moving in a straight line, while angular momentum is the momentum of an object rotating around an axis. The main difference is the direction of motion - linear momentum is in a straight line, while angular momentum is in a circular motion. This difference impacts the motion of objects by determining how they move and interact with their surroundings. Objects with linear momentum will continue moving in a straight line unless acted upon by an external force, while objects with angular momentum will continue rotating unless a torque is applied to change their direction.
Uniform linear motion is when an object moves in a straight line at a constant speed, while uniform circular motion is when an object moves in a circle at a constant speed. In uniform linear motion, the velocity remains constant in both magnitude and direction, whereas in uniform circular motion, the object's velocity remains constant in magnitude but changes direction constantly.
Linear velocity is directly proportional to the radius of the rotating object and the angular velocity. This relationship is described by the equation v = ω * r, where v is the linear velocity, ω is the angular velocity, and r is the radius.