average velocity
No, instantaneous velocity is the correct term for the speed and direction of an object at a specific moment. It describes how fast and in which direction an object is moving at an exact instant in time.
speed if no direction is needed velocity if direction is needed
Instantaneous velocity is the velocity of an object at a specific instant in time. It represents the object's speed and direction at that moment. It is calculated as the limit of the average velocity as the time interval approaches zero.
The speed of an object in a specific direction is known as velocity. Velocity is a vector quantity that includes both the speed and direction of an object's motion. It provides information on how fast an object is moving in a specific direction.
Velocity is the speed of an object in a specific direction. It includes not just how fast an object is moving, but also the direction in which it is moving.
The specific direction of an object's speed is known as velocity. Velocity includes both the speed of the object and the direction in which it is moving.
velocity. It represents the rate at which an object is changing its position at that specific moment, without consideration for direction.
If the speed of an object is cited and its direction of motion is also cited, we have the velocity of the object. Velocity is speed plus a direction vector.
The speed of an object at a specific moment in time is called instantaneous speed.
Work - or energy transferred is the product of force and the distance that the object moves in the direction of the force. I just ate poo
Velocity is a vector quantity that includes both speed and direction, while instantaneous speed is the magnitude of velocity at a specific moment in time without considering direction. In other words, velocity accounts for the object's motion in a specific direction, whereas instantaneous speed is the rate at which an object is moving at a given instant, regardless of direction.
Work is applied to an object and the object is moved over a distance in the same direction of the applied force.