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  1. How to Find Distance in Speed-Time Graph. The diagram below shows a speed-time graph of a car. A straight line indicates a constant speed for a length of time. In order to calculate distance traveled, you’ll need to consider the horizontal axis and vertical axis as length and breadth.

  2. We're going to look at position versus time graphs, and use them in order to figure out displacement and distance traveled. So this first question says, a 3.2 kilogram iguana runs back and forth along the ground. The following graph shows the horizontal position of the iguana in meters over time.

  3. It works because displacement is the product of velocity and time. And in our graph when you multiply velocity and time you're basically multiplying two lengths in our graph and that gives us the area. And so that's the secret to calculating displacements and from a velocity time graph.

  4. How does a distance-time graph work? Distance-time graphs show distance from a fixed point at different times. Distance is on the vertical axis, and time is on the horizontal axis. The gradient of the graph is the speed. A positive gradient represents the object (or person) moving away from the starting point.

  5. 2 wrz 2019 · Distance Time Graphs Practice Questions. Click here for Questions. Click here for Answers. travel graphs, distance-time. Practice Questions. Previous: Stem and Leaf Practice Questions. Next: Indices Practice Questions. The Corbettmaths Practice Questions on Distance-Time Graphs.

  6. How to read a position vs. time graph. Using the graph to determine displacement, distance, average velocity, average speed, instantaneous velocity, and instantaneous speed. Created by David SantoPietro.

  7. Key learning points. Velocity of an object is equal to the gradient of a displacement-time graph. A direction in which velocity and displacement are measured needs to be chosen. A negative gradient on a displacement-time graph (sloping downwards) represents velocity in the opposite direction.