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4.2 Atoms and nuclear radiation

4.2 Atoms and nuclear radiation

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Question 3

A student measures the radiation count rate from three different radioactive sources, XXX, YYY, and ZZZ, using a Geiger-Müller (GM) tube and counter. To identify the type of radiation emitted, different absorbing materials are placed between the source and the detector.

The table below shows the measured count rates in counts per minute (cpm):

AbsorberNo source (background)Source XSource YSource ZNone25480650320Thin sheet of paper2447826322Aluminium sheet (5 mm)262325318 \begin{array}{|l|c|c|c|c|} \hline \textbf{Absorber} & \textbf{No source (background)} & \textbf{Source } X & \textbf{Source } Y & \textbf{Source } Z \\ \hline \text{None} & 25 & 480 & 650 & 320 \\ \hline \text{Thin sheet of paper} & 24 & 478 & 26 & 322 \\ \hline \text{Aluminium sheet (5 mm)} & 26 & 23 & 25 & 318 \\ \hline \end{array} AbsorberNoneThin sheet of paperAluminium sheet (5 mm)​No source (background)252426​Source X48047823​Source Y6502625​Source Z320322318​​

Based on these results:

a.

Identify which source emits only alpha radiation\textbf{only alpha radiation}only alpha radiation and explain your choice.

[3]
b.

Identify which source emits only beta radiation\textbf{only beta radiation}only beta radiation and explain your choice.

[3]
Markscheme

4.2 Atoms and nuclear radiation Questions

  1. GCSE
  2. /Physics
  3. /4.2 Atoms and nuclear radiation

6 exam-style questions on AQA GCSE Physics 4.2 Atoms and nuclear radiation, covering 4.2.1 Radioactive decay and nuclear radiation, 4.2.2 Nuclear equations, 4.2.3 Half-lives and the random nature of radioactive decay, and 4.2.4 Radioactive contamination. Each one has a worked solution and a mark scheme showing where the marks go.

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