The distance travelled is 2h (it went up 'h' and came down 'h', having travelled 'h' distance twice), and the displacement is 0 (assuming it landed where it took off from).
No, displacement of a body is the change in position from beginning to end, regardless of the path taken, whereas the distance traveled by the body is the total length of the path taken by the body. These two quantities can be equal only if the body moves in a straight line.
Distance is the total length travelled where as displacement is the length between where you started and where you are now. example.. If you travel in a circular path, around the whole circle and wind up back where you started. Your displacement will be zero but your distance travelled will be the circumference of the circle.
Axial displacement refers to the movement of an object along its axis, either towards or away from a reference point. This displacement can be measured in terms of distance traveled or position change along the axis.
Distance is a scalar quantity, as it has only magnitude and no direction. An example equation for distance is d = rt, where d is distance, r is rate, and t is time. This equation is used to calculate distance traveled when speed and time are known.
To find how far the pigment traveled, you would multiply the Rf factor by the distance the solvent traveled. Distance traveled by pigment = Rf factor x Distance traveled by solvent Distance traveled by pigment = 0.8400 x 12 cm Distance traveled by pigment = 10.08 cm. Therefore, the pigment traveled 10.08 cm.
displacement is equal to the distance you traveled when the object is moving at shortest path
Distance traveled is equal to the magnitude of the displacement vector when the motion is in a straight line.
No, the displacement cannot be longer than the distance traveled. Displacement is the shortest distance between the starting and ending points regardless of the path taken, while distance traveled is the total length of the actual path taken.
No, the displacement can never be greater than the distance traveled. Displacement is a vector representing the straight-line distance between the start and end points, while the distance traveled is the actual length of the path taken. Since displacement is a straight-line measure, it can never exceed the distance traveled along a path with turns and curves.
No, displacement and distance traveled are two different measurements. Distance traveled is the total length of the path taken, while displacement is the change in position from the starting point to the ending point, taking into account direction.
Well, if you traveled a distance of, lets say, one million miles, then your displacement would be zero. That is the difference between distance and displacement. Distance is the total area of which you have moved, commonly expressed by using miles or kilometers. While displacement is the DISTANCE between your starting point and end point.
Displacement is just distance traveled and a direction. For example 40m east is a displacement distance
No. Displacement is how far an object is from its original position. This means that if an object traveled in a circle and returned to its original point, it will have a displacement of 0 while the distance will be whatever the circumference of the circle was. Hope that helps.
In general, the magnitude of displacement can be either greater than, equal to, or less than the magnitude of the distance traveled. This depends on the specific path taken by the object. If the path involves any changes in direction, the displacement can be shorter than the distance traveled. If the object moves in a straight line, the displacement and distance traveled will be equal.
Distance is equal to displacement when an object moves in a straight line without changing direction. In such cases, the magnitude of displacement is equal to the total distance traveled. Displacement is a vector quantity that takes into account both the distance traveled and the direction in which the object moved.
Displacement means a measure of distance traveled.
Displacement is the same as direction traveled when an object moves in a straight line with no change in direction. In this case, the distance traveled by the object is equal to its displacement.