Lesson 3C.5.1

3C.5.1 Oblique impact of spheres Quiz: Pearson Edexcel Further Maths, Unit 29

20 questions

In partnership with Revision Ninja

Lesson 3C.5.1, Oblique impact of spheres: 20 multiple choice questions for the Pearson Edexcel Further Maths (9FM0), Unit 29: Oblique impact, written with Revision Ninja.

Host it live on the board and students join with a game code on their own devices, or revise alone with Free Play. The answers are revealed in the game.

Host this setFree Play

The 20 questions

  1. In an oblique impact of smooth spheres, what is the line of centres?

    • The line joining the centres of the two spheres at the moment of impact
    • The common tangent at the point of contact
    • The direction of the initial velocity of either sphere
    • The horizontal direction, always
  2. In an oblique impact of smooth spheres, what happens to the velocity components perpendicular to the line of centres?

    • They reverse direction
    • They are unchanged by the impact
    • They are multiplied by e
    • They become zero
  3. To which velocity components does Newton's experimental law apply in an oblique impact?

    • Only the components perpendicular to the line of centres
    • It is not used in oblique impacts
    • The full speeds of the spheres
    • Only the components along the line of centres
  4. When a smooth sphere strikes a smooth fixed plane obliquely, what happens to the component parallel to the plane?

    • It is reversed
    • It is unchanged
    • It is reduced by a factor of e
    • It increases
  5. When a sphere strikes a smooth fixed plane obliquely, how is the normal component of velocity affected?

    • It is increased by e
    • It is divided by e
    • It is reversed and multiplied by e
    • It is multiplied by (1 - e)
  6. In an oblique impact of smooth spheres, which quantities are conserved?

    • Momentum along the line of centres, and the perpendicular velocity components
    • Only kinetic energy is conserved in every case
    • Momentum perpendicular to the line of centres changes
    • The sum of the velocities is zero
  7. A sphere with velocity components (parallel component u_t, normal component u_n) strikes a smooth fixed plane. What is its speed after impact?

    • u_t + e u_n
    • sqrt(u_t^2 + u_n^2)
    • sqrt(u_t^2 + e^2 u_n^2)
    • e times the total speed
  8. A sphere has velocity (6i + 8j) m/s and hits a fixed smooth vertical wall whose normal is along i, with e = 0.5. What is its velocity after impact?

    • -6i + 4j m/s
    • -3i - 8j m/s
    • 3i + 8j m/s
    • -3i + 8j m/s
  9. In the previous setting, what is the speed of the sphere after impact, to 2 decimal places?

    • 10 m/s
    • 8 m/s
    • 8.54 m/s, from sqrt(73)
    • sqrt(41) m/s
  10. In the same setting (speed 10 m/s, e = 0.5), how much kinetic energy per unit mass is lost in the impact?

    • 13.5 J/kg
    • 25 J/kg
    • 36.5 J/kg
    • 50 J/kg
  11. A sphere of mass 2 kg with velocity (5i + 5j) m/s hits a smooth vertical wall with e = 1. What is the impulse on the sphere?

    • -20i N s
    • -10i N s
    • 20i N s
    • -20j N s
  12. A sphere approaches a smooth fixed plane at 30 degrees to the plane with speed 10 m/s, with e = 0.5. What is the component normal to the plane after impact?

    • 2.5 m/s
    • 1.25 m/s
    • 8.66 m/s
    • 5 m/s
  13. Two equal smooth spheres of mass m lie with line of centres along x. Sphere 1 has velocity (4i + 2j) and sphere 2 is at rest. With e = 0.5, what is the velocity of sphere 1 after impact?

    • 2i + 2j
    • i + 2j
    • 3i + 2j
    • i
  14. A sphere moving at 8 m/s makes an angle of 60 degrees with a smooth fixed plane and strikes it, with e = 0.6. What is its speed after impact, to 2 decimal places?

    • 4.16 m/s
    • 5.77 m/s
    • 4.00 m/s
    • 8.00 m/s
  15. A sphere has velocity (3i + 4j) and hits a smooth horizontal plane whose normal is along j, with e = 0.25. What is its velocity after impact?

    • 0.75i - j
    • 3i - 4j
    • 3i - j
    • 3i + 0.25j
  16. Two equal smooth spheres of mass m have line of centres along x. Sphere 1 has velocity 6i and sphere 2 is at rest, with e = 0.8. What is the velocity of sphere 2 after impact?

    • 6.0i m/s
    • 3.0i m/s
    • 4.8i m/s
    • 5.4i m/s
  17. A smooth sphere approaches a smooth fixed plane at 30 degrees to the plane with speed 10 m/s and e = 0.5. What angle does its velocity make with the plane after impact, to 1 decimal place?

    • 30.0 degrees
    • 60.0 degrees
    • 16.1 degrees
    • 8.1 degrees
  18. What is the direction of the impulse from a smooth fixed plane on a sphere striking it obliquely?

    • Parallel to the plane
    • Perpendicular to the plane
    • Zero, since the impact is oblique
    • At 45 degrees to the plane, always
  19. Which quantity is unchanged by each impact of a sphere with a smooth fixed plane?

    • The component of velocity parallel to the plane
    • The component of velocity normal to the plane
    • The angle to the plane
    • The total kinetic energy
  20. For a perfectly elastic (e = 1) oblique impact with a smooth plane, what is the relation between the angles of approach and rebound?

    • The speed halves and the angle doubles
    • The angle of rebound equals the angle of approach, measured to the plane
    • The angle of rebound is always 90 degrees
    • Only the normal component is preserved

All Pearson Edexcel Further Maths quizzes