Lesson 2.1.2

2.1.2 Displacement, velocity and acceleration graphs Quiz: Pearson Edexcel Physics, Unit 2

20 questions

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Lesson 2.1.2, Displacement, velocity and acceleration graphs: 20 multiple choice questions for the Pearson Edexcel Physics (9PH0), Unit 2: Mechanics, written with Revision Ninja.

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The 20 questions

  1. The gradient of a displacement-time graph gives:

    • Momentum
    • Force
    • Velocity
    • Acceleration
  2. The area under a velocity-time graph represents:

    • Force
    • Velocity
    • Acceleration
    • Displacement
  3. The gradient of a velocity-time graph gives:

    • Velocity
    • Acceleration
    • Jerk
    • Displacement
  4. A velocity-time graph rises in a straight line from 0 at t = 0 to 20 m s^-1 at t = 4 s, then stays constant at 20 m s^-1 until t = 10 s. What is the total displacement?

    • 40 m
    • 200 m
    • 160 m
    • 120 m
  5. A displacement-time graph has a steadily increasing gradient. What does this indicate about the motion?

    • The velocity is increasing.
    • The acceleration is zero.
    • The velocity is decreasing.
    • The displacement is decreasing.
  6. An acceleration-time graph is a horizontal line at 2 m s^-2 from t = 0 to t = 5 s. What is the change in velocity?

    • 5 m s^-1
    • 0.4 m s^-1
    • 2 m s^-1
    • 10 m s^-1
  7. A velocity-time graph has a negative gradient while the velocity is positive. What does this mean for the acceleration?

    • The acceleration is positive, so the object is speeding up.
    • The acceleration is positive, so the object is at rest.
    • The acceleration is zero, so the velocity is constant.
    • The acceleration is negative, so the object is slowing down.
  8. On a curved velocity-time graph with non-uniform acceleration, what does the gradient of the tangent at a point give?

    • The average acceleration over the whole motion.
    • The instantaneous acceleration at that time.
    • The displacement at that time.
    • The average velocity over the whole motion.
  9. A displacement-time graph is a horizontal straight line. What is the velocity?

    • Zero
    • Increasing
    • Constant and non-zero
    • Negative
  10. A velocity-time graph starts at 2 m s^-1 and has a gradient of 3 m s^-2 for 4 s. What is the final velocity?

    • 6 m s^-1
    • 14 m s^-1
    • 10 m s^-1
    • 12 m s^-1
  11. An area below the time axis on a velocity-time graph represents:

    • Acceleration in the negative direction
    • Change in speed
    • Displacement in the negative direction
    • Distance that is always positive
  12. A car's velocity rises uniformly from 0 to 10 m s^-1 in 5 s and then falls uniformly to 0 in a further 10 s. What is the total distance travelled?

    • 25 m
    • 150 m
    • 50 m
    • 75 m
  13. Using the motion in the previous scenario (75 m in 15 s), what is the average velocity over the whole journey?

    • 7.5 m s^-1
    • 5 m s^-1
    • 2.5 m s^-1
    • 10 m s^-1
  14. A displacement-time graph passes through (2 s, 4 m) and (6 s, 20 m). What is the velocity between these points?

    • 4 m s^-1
    • 16 m s^-1
    • 0.25 m s^-1
    • 5 m s^-1
  15. Which shape on a displacement-time graph indicates constant velocity?

    • A horizontal straight line
    • A curve with decreasing gradient
    • A curve with increasing gradient
    • A straight line with constant non-zero gradient
  16. A velocity-time graph is a curve. How is the displacement found from it?

    • Estimate the area under the curve, for example by counting squares or using trapeziums.
    • Multiply the maximum velocity by the total time.
    • Divide the final velocity by the total time.
    • Read the gradient of the curve at t = 0.
  17. An object has zero acceleration from 0 to 2 s and then an acceleration of 3 m s^-2 from 2 s to 6 s. What is the change in velocity over the whole interval?

    • 12 m s^-1
    • 6 m s^-1
    • 18 m s^-1
    • 3 m s^-1
  18. A velocity-time graph shows velocity falling from 8 m s^-1 to 2 m s^-1 in 3 s. What is the acceleration?

    • -2 m s^-2
    • -0.67 m s^-2
    • +2 m s^-2
    • -6 m s^-2
  19. The gradient of a tangent drawn to a displacement-time curve at a point gives:

    • The instantaneous velocity at that point.
    • The acceleration at that point.
    • The total displacement at that point.
    • The average velocity over the whole journey.
  20. On the same axes, object A's velocity-time graph is steeper than object B's over the same interval. Which statement is correct?

    • A has the larger magnitude of acceleration.
    • A has the larger displacement.
    • B has the larger acceleration.
    • The two accelerations are equal.

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