Lesson 3.2.1.3

3.2.1.3 Particles, antiparticles and photons Quiz: AQA Physics, Unit 2

20 questions

In partnership with Revision Ninja

Lesson 3.2.1.3, Particles, antiparticles and photons: 20 multiple choice questions for the AQA Physics (7408), Unit 2: Particles and radiation, 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 is the antiparticle of the electron?

    • antiproton
    • neutrino
    • positron
    • proton
  2. What is the antiparticle of the neutrino?

    • antineutrino
    • antiproton
    • neutron
    • positron
  3. In the photon model, what is the energy of a photon of frequency f?

    • hf^2
    • f/h
    • hf
    • h/f
  4. What is the approximate value of the Planck constant?

    • 6.63 × 10^-34 J s
    • 3.00 × 10^8 J s
    • 6.63 × 10^-19 J s
    • 1.60 × 10^-19 J s
  5. What is produced when an electron and a positron annihilate at low energy?

    • Two electrons moving apart
    • A proton and a neutron
    • Two gamma photons moving in opposite directions
    • One gamma photon at rest
  6. What is the minimum photon energy needed for pair production of an electron-positron pair?

    • about 0.51 MeV
    • about 10.2 MeV
    • about 2.04 MeV
    • about 1.02 MeV
  7. How does a positron compare with an electron?

    • Opposite mass, same charge
    • Same mass, same charge
    • Half the mass, same charge
    • Same mass, opposite charge
  8. What is the energy of a photon of wavelength 500 nm, using h = 6.63 × 10^-34 J s and c = 3.0 × 10^8 m/s?

    • 4.0 × 10^-31 J
    • 4.0 × 10^-19 J
    • 4.0 × 10^-13 J
    • 4.0 × 10^-25 J
  9. A photon has energy 3.0 × 10^-19 J. What is its frequency, using h = 6.63 × 10^-34 J s?

    • 4.5 × 10^-15 Hz
    • 2.0 × 10^15 Hz
    • 2.0 × 10^14 Hz
    • 4.5 × 10^14 Hz
  10. Each photon from slow electron-positron annihilation has energy 0.511 MeV. What is its frequency?

    • 2.4 × 10^20 Hz
    • 1.2 × 10^14 Hz
    • 6.1 × 10^19 Hz
    • 1.2 × 10^20 Hz
  11. What is the rest energy of an electron in MeV?

    • 51 MeV
    • 5.1 MeV
    • 0.0051 MeV
    • 0.51 MeV
  12. What is the charge on an antiproton?

    • 0
    • +2 e
    • -1 e
    • +1 e
  13. Which particle has the same mass as the proton but opposite charge?

    • antiproton
    • positron
    • antineutron
    • neutron
  14. A photon of energy 2.0 MeV produces an electron-positron pair. What total kinetic energy is shared between the pair?

    • 2.00 MeV
    • 1.02 MeV
    • 0.98 MeV
    • 0.49 MeV
  15. Why must pair production take place near a nucleus?

    • To conserve momentum
    • To change the nucleus into a neutron
    • To increase the photon wavelength
    • Because a nucleus emits the positron
  16. Gamma photons from annihilation have frequency 1.2 × 10^20 Hz. What is their wavelength?

    • 2.4 × 10^-12 m
    • 2.4 × 10^-9 m
    • 4.1 × 10^-12 m
    • 2.4 × 10^-15 m
  17. What is the energy of a 0.511 MeV photon in joules?

    • 1.6 × 10^-14 J
    • 8.2 × 10^-13 J
    • 8.2 × 10^-14 J
    • 8.2 × 10^-16 J
  18. What is the total energy of the two photons from electron-positron annihilation at rest?

    • 8.2 × 10^-14 J
    • 3.3 × 10^-13 J
    • 1.6 × 10^-13 J
    • 1.6 × 10^-19 J
  19. Which expression gives the wavelength of a photon of energy E?

    • h/Ec
    • E/hc
    • hc/E
    • Ehc
  20. Which conservation law explains why electron-positron annihilation at rest produces two photons rather than one?

    • Conservation of baryon number
    • Conservation of charge
    • Conservation of momentum
    • Conservation of lepton number

All AQA Physics quizzes