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  1. Use distance to describe the shortest path between starting and ending points, and use displacement to describe the total path between starting and ending points. Measurement from your initial position to your final position is distance traveled, and the measurement of the total length of your path from the starting position to the final ...

  2. A position is a vector because it has both a magnitude and a direction: it is some distance from a zero point (the point we call the origin) in a particular direction. With one-dimensional motion, we can define a straight line along which the object moves.

  3. The displacement is simply the difference in the position of the two marks and is independent of the path taken when traveling between the two marks. The distance traveled, however, is the total length of the path taken between the two marks.

  4. 12 wrz 2022 · Distance traveled x Total, is the total length of the path traveled between two positions. In the previous problem, the distance traveled is the sum of the magnitudes of the individual displacements:

  5. Distance is the actual path length that an object moves away from its original position. Distance is a scalar. We use the symbol d for distance. Displacement is the straight-line path between the starting point and the endpoint of a journey i.e. the distance moved in a particular direction. Displacement is a vector.

  6. b Distance travelled is given by the area under the graph. (Divide area into a rectangle and a triangle.) = (5 s × 20 m) + (0.5 × 5 s × 15 s) = 137.5 m. 9 a Average speed is found by dividing the total distance a body has travelled by the time it has taken; the speed may vary from moment to moment during this time.

  7. 12 sty 2024 · Distance traveled \(x_{total}\) l, is the total length of the path traveled between two positions. In the previous problem, the distance traveled is the sum of the magnitudes of the individual displacements: