Lesson 3.2.1.2
3.2.1.2 Stable and unstable nuclei Quiz: AQA Physics, Unit 2
20 questions
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Lesson 3.2.1.2, Stable and unstable nuclei: 20 multiple choice questions for the AQA Physics (7408), Unit 2: Particles and radiation, written with Revision Ninja.
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The 20 questions
-
Approximately what range does the strong nuclear force act over?
- about 3 nm
- about 3 m
- about 3 fm
- about 3 pm
-
What does the strong nuclear force become if two nucleons are closer than about 0.5 fm?
- absent
- repulsive
- electrostatic
- attractive and strongest
-
What is an alpha particle?
- A proton
- A photon
- An electron
- A helium-4 nucleus
-
In beta-minus decay, what does a neutron in the nucleus become?
- A positron and a neutrino
- A proton, an electron and an antineutrino
- A helium nucleus
- A proton only
-
Why was the neutrino originally hypothesised in beta decay?
- To explain the energies of alpha particles
- To account for the missing electric charge
- To account for conservation of energy in beta decay
- To conserve momentum in alpha decay
-
Which nuclide is produced by alpha decay of 226 88 Ra?
- 226 86 Rn
- 222 86 Rn
- 222 90 Th
- 224 86 Rn
-
Which nuclide is produced by beta-minus decay of 14 6 C?
- 14 5 B
- 14 7 N
- 13 6 C
- 10 4 Be
-
Which statement describes an unstable nucleus?
- It never changes over time
- It is held together by gravity
- It has equal numbers of protons and neutrons only
- It spontaneously emits radiation to become more stable
-
What is the typical range of an alpha particle in air?
- a few centimetres
- a few micrometres
- several kilometres
- several metres
-
In alpha decay of 226 88 Ra, by how much does nucleon number change?
- decreases by 4
- decreases by 1
- decreases by 2
- stays the same
-
In beta-minus decay, how does the proton number of the nucleus change?
- It increases by 1
- It decreases by 1
- It decreases by 2
- It does not change
-
Which particle is emitted along with the electron in beta-minus decay?
- a proton
- a positron
- an electron antineutrino
- a photon
-
A nucleus undergoes an alpha decay followed by a beta-minus decay. What is the net change in nucleon number and proton number?
- Nucleon number decreases by 4 and proton number decreases by 2
- Nucleon number decreases by 2 and proton number is unchanged
- Nucleon number decreases by 4 and proton number is unchanged
- Nucleon number decreases by 4 and proton number decreases by 1
-
Why does a nucleus stay bound despite the electrostatic repulsion between its protons?
- Gravity between protons outweighs the electrostatic repulsion
- Protons repel only at distances greater than 3 fm
- Neutrons carry a negative charge that cancels the repulsion
- The short-range strong attraction between nucleons exceeds the electrostatic repulsion
-
What is the nuclide produced by beta-minus decay of 60 27 Co?
- 60 27 Ni
- 60 26 Fe
- 60 28 Ni
- 59 27 Co
-
Why is the electron energy spectrum in beta-minus decay continuous rather than a single value?
- Electrons are emitted with random charge
- The strong force changes strength in each decay
- The nucleus recoils with a different energy each time
- The antineutrino shares the decay energy with the electron in varying proportions
-
How many alpha and beta-minus decays transform 238 92 U into 206 82 Pb?
- 8 alpha and 6 beta-minus
- 4 alpha and 6 beta-minus
- 8 alpha and 0 beta-minus
- 6 alpha and 8 beta-minus
-
What is the distance 3 fm expressed in metres?
- 3 × 10^-9 m
- 3 × 10^-15 m
- 3 × 10^-12 m
- 3 × 10^-18 m
-
Which nuclide results from alpha decay of 212 83 Bi?
- 212 81 Tl
- 208 85 At
- 208 81 Tl
- 208 83 Bi
-
Compared with the electromagnetic force, how does the strong nuclear force behave over distance?
- It is much stronger but acts only over a very short range
- It is equal in strength but acts over a longer range
- It is weaker and acts over an infinite range
- It is much stronger and acts over an infinite range
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