E.3.13—Background radiation

Syllabus
First assessment 2025
Objective
Level
SL

Correct for Background

Separate sample and background

A detector count rate can include decays from the sample plus background radiation. The measured rate is Rmeasured=Rsample+RbackgroundR_{measured}=R_{sample}+R_{background}.

Subtract before analysing

Estimate the background count rate with the source absent or from the long-time plateau, then calculate Rnet=RmeasuredRbackgroundR_{net}=R_{measured}-R_{background}. Use the net rate for half-life comparisons.

Worked example — subtract, decay, restore

A detector reads 260Bq260\,\mathrm{Bq} with a 20Bq20\,\mathrm{Bq} background. The initial net rate is 240Bq240\,\mathrm{Bq}. After four half-lives it is 240/16=15Bq240/16=15\,\mathrm{Bq}, so the detector reads 15+20=35Bq15+20=35\,\mathrm{Bq}.

Interpret a non-zero limit

If the measured rate approaches a non-zero constant, the remaining signal may be background radiation or a systematic detector contribution. The sample activity itself may have continued toward zero.

Common trap

Do not fit a half-life directly to a count rate that still contains background; the offset distorts the decay curve.

E.3.13 Exam Analysis

Assessment in practice

1 marks
How it is assessed

Questions identify the background count rate or explain why activity approaches a non-zero constant.

Command terms

Identify / Suggest

What earns marks

Read the long-time offset as background, or state that background/systematic counts remain when the sample contribution decays.

Watch for

Treating the plateau as residual sample activity without considering background.