Lesson 3.3.1.3

3.3.1.3 Superposition and stationary waves Quiz: AQA Physics, Unit 3

20 questions

In partnership with Revision Ninja

Lesson 3.3.1.3, Superposition and stationary waves: 20 multiple choice questions for the AQA Physics (7408), Unit 3: Waves, 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. What does the principle of superposition state?

    • The resultant displacement is the sum of the individual displacements
    • The resultant frequency is the average of the frequencies
    • Waves cancel each other after overlapping
    • The resultant speed is the sum of the individual speeds
  2. What is a node in a stationary wave?

    • A point where the wave is at its fastest
    • A point of maximum amplitude
    • A point of zero amplitude
    • A point where the wave has no energy
  3. What is an antinode in a stationary wave?

    • A point at which the particles are stationary
    • A point of zero amplitude
    • A point of maximum amplitude
    • A point of minimum speed
  4. How are stationary waves formed?

    • By waves of zero frequency
    • By a single wave reflected at a free end only
    • By two waves of different frequencies travelling in the same direction
    • By two waves of the same frequency travelling in opposite directions
  5. What is the distance between adjacent nodes of a stationary wave?

    • a quarter of a wavelength
    • one wavelength
    • half a wavelength
    • twice the wavelength
  6. What is the formula for the fundamental frequency of a stretched string?

    • f = (1/l) (T/mu)
    • f = (1/2l) sqrt(mu/T)
    • f = 2l sqrt(T/mu)
    • f = (1/2l) sqrt(T/mu)
  7. A string of length 0.80 m is fixed at both ends and vibrates in its first harmonic. What is the wavelength?

    • 1.6 m
    • 3.2 m
    • 0.80 m
    • 0.40 m
  8. A string of length 0.5 m under tension 20 N has mass per unit length 0.002 kg/m. What is its first harmonic frequency?

    • 50 Hz
    • 100 Hz
    • 10 Hz
    • 200 Hz
  9. For the string in the previous case, what is the frequency of the second harmonic?

    • 100 Hz
    • 400 Hz
    • 200 Hz
    • 50 Hz
  10. If the tension on a string is quadrupled, what happens to the first harmonic frequency?

    • It halves
    • It doubles
    • It is unchanged
    • It quadruples
  11. If the length of a string is halved with the same tension, what happens to the first harmonic frequency?

    • It halves
    • It doubles
    • It quadruples
    • It is unchanged
  12. How many antinodes does the third harmonic of a string have?

    • 6
    • 3
    • 4
    • 2
  13. Points on either side of a node are in what phase relation?

    • in phase
    • a quarter cycle apart
    • half a wavelength apart
    • antiphase
  14. Two waves of amplitude 2 cm and 3 cm are in phase. What is the resultant amplitude at a point where they meet?

    • 5 cm
    • 1 cm
    • 6 cm
    • 2.5 cm
  15. Two waves of amplitude 3 cm and 2 cm meet in antiphase. What is the resultant amplitude?

    • 5 cm
    • 1 cm
    • 6 cm
    • 0 cm
  16. A string has first harmonic frequency 40 Hz. What is the frequency of its fifth harmonic?

    • 200 Hz
    • 80 Hz
    • 40 Hz
    • 400 Hz
  17. A string of length 1.2 m vibrates in its third harmonic. What is the wavelength?

    • 0.80 m
    • 2.4 m
    • 1.2 m
    • 0.40 m
  18. To double the frequency of the first harmonic of a string, by what factor must the tension be increased?

    • 2
    • 4
    • 8
    • 1.4
  19. Why does a node have zero amplitude?

    • The particles are moving at maximum speed
    • The wave has no energy there
    • The two travelling waves arrive there in antiphase and cancel
    • The medium there is absent
  20. Which harmonic of a stretched string has the longest wavelength?

    • the second harmonic
    • the third harmonic
    • the fifth harmonic
    • the first harmonic

All AQA Physics quizzes