Acceleration from a velocity-time graph
Acceleration from a velocity-time graph.
- A velocity–time graph shows velocity vertically and time horizontally.
- Its gradient gives acceleration; its signed area gives displacement.
- For distance, add the magnitudes of areas if the graph goes below the time axis.
Example 1
Find the acceleration during the first segment.
Example 2
Find the acceleration during the first segment.
Your turn
Question 1 Acceleration is the gradient of a velocity–time graph. Divide the change in velocity by the time taken.
Find the acceleration during the first segment.
Check answer
Question 2 Acceleration is the gradient of a velocity–time graph. Divide the change in velocity by the time taken.
Find the acceleration during the first segment.
Check answer
Question 3 Acceleration is the gradient of a velocity–time graph. Divide the change in velocity by the time taken.
Find the acceleration during the first segment.
Check answer
Question 4 Acceleration is the gradient of a velocity–time graph. Divide the change in velocity by the time taken.
Find the acceleration during the first segment.
Check answer
Question 5 Acceleration is the gradient of a velocity–time graph. Divide the change in velocity by the time taken.
Find the acceleration during the first segment.
Check answer
Find the acceleration during the first segment.
Find the acceleration during the first segment.
Find the acceleration during the first segment.
Find the acceleration during the first segment.
Find the acceleration during the first segment.