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  1. To determine the displacement of an object, you only have to consider the change in position between the starting point and the ending point. The path followed from one point to the other does not matter.

  2. 2-1 Position, Displacement, and Distance In describing an object’s motion, we should first talk about position – where is the object? A position is a vector because it has both a magnitude and a direction: it is some distance from a

  3. EXAMPLE: A 9.0-h trip is made at an average speed of 50 km/h. If the first half of the distance is covered at an average speed of 45 km/h, what is the average speed for the second half of the trip? Before beginning any calculation, estimate the answer. The total distance of the trip must be given by distance = speed * time = 50 km/h * 9.0 h ...

  4. 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:

  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. Position: Defined in terms of a frame of reference: x or y axis in 1D. - The object’s position is its location with respect to the frame of reference. The smooth curve is a guess as to what happened between the data points. Position-Time graph: shows the motion of the particle (car).

  7. How far would you drive? The distance an object moves is the length of the path between its initial position and its final position. The distance you drive to your friend's house depends on your path. As shown in Figure 2.5, distance is different from the length of a straight line between two points. The distance you drive to your friend's ...