Centripetal acceleration is the acceleration pointing towards the center of rotation that a particle must have to follow a circular path. 4.5: Uniform Circular Motion Uniform circular motion is motion in a circle at constant speed.To solve projectile motion problems, we analyze the motion of the projectile in the horizontal and vertical directions using the one-dimensional kinematic equations for x and y. 4.4: Projectile Motion Projectile motion is the motion of an object subject only to the acceleration of gravity, where the acceleration is constant, as near the surface of Earth.Instantaneous acceleration is a vector in two or three dimension which can be found by taking the derivative of the velocity function with respect to time. The instantaneous acceleration is produced by a change in velocity taken over a very short time period. 4.3: Acceleration Vector In two and three dimensions, the acceleration vector can have an arbitrary direction and does not necessarily point along a given component of the velocity.Instantaneous velocity is graphed as a vector that gives the speed and direction of a particle at a specific time on its trajectory in two or three dimensions. The displacement vector gives the shortest distance between any two points on the trajectory of a particle in two or three dimensions. 4.2: Displacement and Velocity Vectors The position function is graphed as a vector from the origin of a chosen coordinate system to describe the position of a particle as a function of time of a particle moving in two or three dimensions.Thus, to describe the motion of any of the jets accurately, we must assign to each jet a unique position vector in three dimensions as well as a unique velocity and acceleration vector. Each jet follows a unique curved trajectory in three-dimensional airspace, as well as has a unique velocity and acceleration. 4.1: Prelude to Motion in Two and Three Dimensions Consider the Red Arrows, also known as the Royal Air Force Aerobatic team of the United Kingdom.
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