Atoms and radioactivity, Year 10: radioactive decay and the types of radiation:全部卡片
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- The unit of activity, equal to one nucleus decaying each second
The becquerel (Bq)
提示It is named after the French scientist who discovered radioactivity in 1896.
为什么Activity is how quickly the unstable nuclei in a source are decaying. A source in which 500 nuclei decay every second has an activity of 500 of these units. School sources are a few tens of thousands; medical ones can be many millions.
- What is the difference between the activity of a radioactive source and the count-rate measured from it?
Activity is the number of nuclei decaying each second in the source; count-rate is the number of decays a detector records each second
提示One belongs to the radioactive material itself; the other depends on the instrument pointed at it.
为什么A detector such as a Geiger-Müller tube catches only the radiation that happens to travel into it, so the count-rate is always smaller than the activity. The two rise and fall together, though, which is why count-rate can be used to follow how the activity of a source changes.
- Why does an unstable nucleus give out radiation?
To become more stable
提示The clue is in the word used to describe the nucleus beforehand.
为什么Some atomic nuclei are unstable. By emitting radiation such a nucleus changes into a different, steadier arrangement. The process is called radioactive decay, and nothing outside the nucleus triggers it.
- Radioactive decay is a ____ process: there is no way to predict which nucleus will decay next, or when.
random
提示The same word describes the roll of a fair dice.
为什么Each unstable nucleus has a certain chance of decaying in any given second, but nobody can say which one will go. Only for a very large number of nuclei does a pattern appear, and that pattern is what half-life describes.
- A detector placed near a radioactive source records 600 counts in 2 minutes. What is the count-rate in counts per second? (number only)
5
提示A rate 'per second' needs the time in seconds.
为什么Count-rate is how many decays a detector registers per second. Two minutes is 120 s, so the count-rate is 600 ÷ 120. Counting for a long time and dividing gives a steadier value than a single one-second reading, because decay is random.
- A particle made of two protons and two neutrons, the same as a helium nucleus
An alpha particle
提示It is named after the first letter of the Greek alphabet.
为什么Being large and carrying a charge, it is strongly ionising: it knocks electrons off many atoms as it passes. For the same reason it does not get far, travelling only a few centimetres in air and being stopped by a sheet of paper or by skin.
- What is a beta particle, and where in the atom does it come from?
A high-speed electron, ejected from the nucleus when a neutron turns into a proton
提示It is a familiar particle, but it does not start out in the shells where you would expect to find it.
为什么The nucleus contains no electrons to begin with. In beta decay a neutron changes into a proton, and the electron created in that change is thrown out at high speed. It is moderately ionising, travels about a metre in air and is stopped by a few millimetres of aluminium.
- Which is the most strongly ionising: alpha, beta or gamma radiation? (one word)
Alpha
提示The most ionising kind is also the easiest to stop.
为什么Ionising power and penetrating power run in opposite orders. The most ionising radiation gives up its energy quickly and is absorbed by a few centimetres of air; gamma is the least ionising and the most penetrating, with beta in between.
- Alpha radiation is stopped by a sheet of ____. Beta radiation is stopped by a few millimetres of ____. Gamma radiation is only reduced by thick ____ or concrete.
paper; aluminium; lead
提示The absorbers get denser and tougher down the list: something you write on, a light metal used for foil and cans, then a very heavy metal.
为什么Penetrating power increases from alpha to beta to gamma. In air, alpha travels a few centimetres, beta about a metre, and gamma a very long way. These differences are what decide which kind of source suits a particular job.
- A factory checks the thickness of aluminium foil by passing radiation through the moving sheet to a detector. Why is a beta source chosen, and not an alpha or a gamma source?
Alpha would be stopped completely and gamma would pass through almost unchanged; only beta is partly absorbed
提示The reading has to change when the foil gets a little thicker or thinner.
为什么If the foil becomes thicker, less beta radiation reaches the detector and the count-rate falls; if it becomes thinner, the count-rate rises. Alpha would give a reading of zero whatever the thickness, and gamma would give nearly the same high reading whatever the thickness. Choosing the best source for a job is something AQA expects pupils to do.
1★ GCSE-PHYS-RAD-0001
2★ GCSE-PHYS-RAD-0002
3★ GCSE-PHYS-RAD-0003
4★ GCSE-PHYS-RAD-0004
5★ GCSE-PHYS-RAD-0005
6★ GCSE-PHYS-RAD-0006
7★ GCSE-PHYS-RAD-0007
8★ GCSE-PHYS-RAD-0008
9★ GCSE-PHYS-RAD-0009
10★ GCSE-PHYS-RAD-0010