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  1. It is used in physics to represent the change in a variable. When placed before a variable (y ‍ ) it refers to the difference between the final value (y f ‍ ) and initial value (y 0 ‍ ) of that variable.

  2. Distance is the length of the path taken by an object whereas displacement is the simply the distance between where the object started and where it ended up. For example, lets say you drive a car. You drive it 5 miles east and then 3 miles west.

  3. 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 position is displacement. Use distance to describe the shortest path between starting and ending points, and use displacement to describe the total path between starting ...

  4. Displacement is a vector quantity describes a change in position of an object or how far an object is displaced from its initial position and is given by below formula \[ \Delta \vec x = x_f - x_i \] Where the starting and ending positions are denoted by $x_i$ and $x_f$, respectively.

  5. Distance is the absolute value of the displacement. Distance is always positive and tells how far something is from something else but does not tell us whether it is to the right or to the left. Units are important in Physics (and in all of Science).

  6. The change in position (∆s) is called the displacement or distance (depending on circumstances) and some people prefer writing the second equation of motion like this. s = v 0 t + ½ at 2 [2]

  7. 🔢 **Calculating Distance**: Distance is calculated by subtracting the initial position from the final position and taking the absolute value, represented as |final position - initial position|. 📐 **Calculating Displacement**: Displacement is calculated as the final position minus the initial position (ΔX = final position - initial ...

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