Particles, Antiparticles and Annihilation · seed 1 · A4, ink-friendly. The answer key prints on its own page for grown-ups.

Matter meets its mirror

Science · Matter & Materials · ages 17-18
Name ______________________   Date ____________
  1. An electron meeting a positron gives two photons leaving back to back.

    Circle one:   True   False

  2. How does an antiparticle compare with its particle?

    • Same mass, opposite charge
    • Double mass, same charge
    • No mass, double charge
  3. What signals does a PET scanner detect?

    • X-ray shadows of bones
    • Twin gamma rays from positron annihilation
    • Magnetic flips of protons
  4. What is the least photon energy that can create a particle pair?

    • Any tiny photon will do
    • Any photon past radio waves
    • At least twice one particle's mass energy
  5. An electron and positron annihilate at rest. Each holds 511 keV of mass energy. Give the total photon energy in keV.

    Answer: ______________

  6. Why does annihilation give two photons rather than one?

    • Photons always travel in pairs
    • One photon cannot balance energy and momentum
    • Electrons refuse single photons
  7. A photon carrying exactly one particle's mass energy attempts pair production. What happens?

    • It makes the pair slowly
    • It makes one particle only
    • Nothing; the energy falls short
  8. A photon makes one electron with no positron and nothing else. Is this allowed?

    • Yes, electrons appear freely
    • Yes, if the photon is bright
    • No, charge and lepton tallies fail
LightMySky · lightmysky.comW1-mt_-Ud20HRNJz-s1

Answer key

For grown-ups. Fold this page away before handing over the rest.

Matter meets its mirror W1-mt_-Ud20HRNJz-s1

  1. True · The pair converts fully to photons, split two ways to balance momentum.
  2. Same mass, opposite charge · Mirrors match in mass and spin, differing in charge and quantum numbers.
  3. Twin gamma rays from positron annihilation · Tracer positrons annihilate with electrons, and each meeting flashes two gammas.
  4. At least twice one particle's mass energy · Two masses must be built, so the photon must fund both through E equals m c squared.
  5. 1022 · Both masses convert fully: 511 plus 511 is 1022 keV.
  6. One photon cannot balance energy and momentum · A single photon cannot carry the full energy while keeping total momentum zero.
  7. Nothing; the energy falls short · Two masses need twice the funding, so a single share cannot start the job.
  8. No, charge and lepton tallies fail · The tallies must match both sides, and a lone electron breaks two of them.
Worksheet · LightMySky