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  1. Problems with detailed solutions on displacement and distance of moving objects. Problem 1. An object moves from point A to point B to point C, then back to point B and then to point C along the line shown in the figure below. a) Find the distance covered by the moving object. b) Find the magnitude and direction of the displacement of the object.

  2. The variables include acceleration (a), time (t), displacement (d), final velocity (vf), and initial velocity (vi). If values of three variables are known, then the others can be calculated using the equations. This page demonstrates the process with 20 sample problems and accompanying solutions.

  3. 2. What is displacement? Answer: Displacement is the shortest distance between the initial and final position of an object, with a specified direction. 3. Can distance ever be less than displacement? Answer: No. Distance is always greater than or equal to displacement. 4.

  4. Distance and Displacement. No condition is permanent. Distance is a scalar measure of an interval measured along a path. Displacement is a vector measure of an interval measured along the shortest path.

  5. Displacement is a vector and vectors have direction, so it's best to diagram this problem (a procedure that's remarkably useful in general). The resultant displacement is the vector sum of the two displacements experienced during the trip.

  6. Distance is a scalar measure of an interval measured along a path. Displacement is a vector measure of an interval measured along the shortest path.

  7. The displacement is a vector quantity (magnitude and direction) that describes the difference between the final and initial positions of a moving object. It is the shortest distance moved in a certain direction.

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