Lesson 3.2.2.2
3.2.2.2 Collisions of electrons with atoms Quiz: AQA Physics, Unit 2
20 questions
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Lesson 3.2.2.2, Collisions of electrons with atoms: 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
-
What is ionisation of an atom?
- Emitting a photon from the nucleus
- Removing an electron from the atom
- Adding a neutron to the nucleus
- Raising an electron to a higher energy level
-
What is excitation of an atom?
- Raising an electron to a higher energy level
- Converting a proton into a neutron
- Emitting an alpha particle
- Removing an electron from the atom
-
What is one electronvolt?
- The energy gained by an electron accelerated through a potential difference of 1 V
- The energy of a photon of frequency 1 Hz
- An energy of 1 J
- The charge of an electron
-
How is ultraviolet light produced in a fluorescent tube?
- Direct emission from the filament
- Electron collisions excite mercury atoms, which emit UV photons
- The photoelectric effect at the glass wall
- The phosphor ionises directly from the filament
-
What is the energy of 13.6 eV in joules?
- 8.5 × 10^-19 J
- 2.18 × 10^-19 J
- 2.18 × 10^-18 J
- 1.36 × 10^-18 J
-
An electron is accelerated through 10 V. What is its energy in joules?
- 6.3 × 10^-18 J
- 1.6 × 10^-18 J
- 1.6 × 10^-17 J
- 1.6 × 10^-19 J
-
What is the minimum electron energy needed to excite hydrogen from the ground state to the n = 2 level?
- 1.6 eV
- 10.2 eV
- 13.6 eV
- 3.4 eV
-
An electron with 15 eV collides with a ground-state hydrogen atom. What happens?
- The electron passes through unchanged
- The atom is ionised, because 15 eV exceeds 13.6 eV
- A photon of 15 eV is emitted by the atom
- The atom is excited to n = 2 only
-
An electron with 8 eV collides with a ground-state hydrogen atom. What happens?
- The atom is excited to n = 2
- The atom cannot be excited, and the collision is elastic
- The electron is absorbed without energy change
- The atom is ionised
-
What is 5.0 eV in joules?
- 5.0 × 10^-19 J
- 8.0 × 10^-18 J
- 8.0 × 10^-19 J
- 3.1 × 10^-20 J
-
An electron is accelerated through 2.5 kV. What energy does it gain?
- 2.5 keV
- 2.5 eV
- 4.0 eV
- 25 keV
-
A 12.0 eV electron collides with a ground-state hydrogen atom. Which process can occur?
- No interaction is possible
- Excitation to n = 3
- Ionisation
- Excitation to n = 2 only
-
How much energy is needed to ionise a hydrogen atom starting from the n = 2 level?
- 13.6 eV
- 1.5 eV
- 10.2 eV
- 3.4 eV
-
What is 10.2 eV expressed in joules?
- 6.38 × 10^-18 J
- 1.02 × 10^-18 J
- 1.63 × 10^-18 J
- 1.63 × 10^-19 J
-
An electron falls from the n = 2 to n = 1 level in hydrogen, emitting a 10.2 eV photon. What is its wavelength, using hc = 1240 eV nm?
- 1220 nm
- 10.2 nm
- 1.36 nm
- 122 nm
-
Why does a phosphor coating in a fluorescent tube glow visible light?
- It creates electrons by the photoelectric effect
- It absorbs UV photons and re-emits lower-energy visible photons
- It converts visible light into UV
- It is ionised by electrons to emit visible photons
-
An electron loses 1.0 × 10^-18 J in an excitation process. How much is this in eV?
- 0.63 eV
- 1.6 eV
- 16 eV
- 6.3 eV
-
In an inelastic collision with an atom, which quantity is NOT conserved?
- kinetic energy
- total energy
- momentum
- electric charge
-
What is the ionisation energy of a ground-state hydrogen atom in eV?
- 13.6 eV
- 3.4 eV
- 27.2 eV
- 10.2 eV
-
What happens after an excited atom returns to its ground state?
- It loses a proton
- It emits an electron with the same energy
- It emits a photon whose energy equals the difference between the two levels
- It absorbs a photon of the same energy
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