GCSE Physics: Radioactivity

Radioactivity carries some of the most reliably-asked questions in GCSE Physics: the properties table for the three radiation types, half-life data handling, and the contamination-versus-irradiation distinction appear year after year. This quiz drills all of them with concrete numbers.

The properties questions cover alpha, beta and gamma as the specification tabulates them: what each actually is (a helium nucleus, a fast electron from the nucleus, high-energy electromagnetic radiation), their penetrating power against paper, aluminium and lead, and the inverse relationship between ionising power and penetration that makes alpha the most ionising but least penetrating. A stopping-materials question applies the table practically.

The decay questions work the nuclear bookkeeping: in alpha decay the mass number falls by 4 and the atomic number by 2 (uranium-238 to a daughter of mass 234), while in beta decay a neutron becomes a proton, raising the atomic number by 1 with the mass number unchanged. Both directions — predicting the daughter and identifying what changed — are covered.

The half-life questions use realistic data: an 800 Bq source with a 2-hour half-life read forward through three halvings to 100 Bq, and the reverse skill of extracting a 5-minute half-life from a count rate falling from 120 to 15 in 15 minutes. The random, unpredictable nature of individual decays gets its own conceptual question, as does the contamination/irradiation distinction — radioactive material on or in an object versus exposure to radiation from outside — which the specification calls out explicitly and students routinely blur. Worked explanations show every halving chain and every mass-number ledger in full.

  • Compare alpha, beta and gamma radiation by composition, penetration and ionising power
  • Track mass number and atomic number changes through alpha and beta decay
  • Calculate remaining activity after a given number of half-lives
  • Determine a half-life from count-rate data
  • Distinguish contamination from irradiation and explain the random nature of decay

Topic scope follows the Atomic structure section of the Department for Education's GCSE combined science and physics subject content: the properties of alpha, beta and gamma radiation, nuclear equations, half-life, the random nature of radioactive decay, and radioactive contamination versus irradiation.

Sample question

Which of the following statements correctly describe the properties of alpha radiation?

See the answer

It consists of two protons and two neutrons., It has a high ionising power.

Alpha particles are helium nuclei, consisting of two protons and two neutrons. Because they are relatively large and carry a +2 charge, they are highly ionising but have very low penetration, being stopped by a sheet of paper.

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