
Public learning track
Radioactive Emissions and Nuclear Equations
10th Grade · Science · UK GCSE
5 lessons
Goal
Compare alpha, beta, gamma, and neutron radiation and balance nuclear equations representing radioactive decay.
5 lessons
0 of 5 done
- 1Nuclear Instability and Types of Radioactive EmissionsUp nextStart
- 2Comparing Penetration, Range in Air, and Ionising PowerPremiumNot started yet
- 3Writing Balanced Nuclear Equations for Alpha DecayNot started yet
- 4Writing Balanced Nuclear Equations for Beta DecayNot started yet
- 5Gamma Emission and Neutron Emission Nuclear EquationsNot started yet
Standards Covered
- UK-GCSE-SCIENCE-PHYS-AST-02General Certificate of Secondary Education (GCSE) · Science · Year 11 (GCSE) · Grade 10Absorption and emission of ionizing radiations and of electrons and nuclear particles
- UK-GCSE-SCIENCE-PHYS-AST-02-02General Certificate of Secondary Education (GCSE) · Science · Year 11 (GCSE) · Grade 10recall that some nuclei are unstable and may emit alpha particles, beta particles, or neutrons, and electromagnetic radiation as gamma rays; relate these emissions to possible changes in the mass or the charge of the nucleus, or both
- UK-GCSE-SCIENCE-PHYS-AST-02-05General Certificate of Secondary Education (GCSE) · Science · Year 11 (GCSE) · Grade 10recall the differences in the penetration properties of alpha-particles, beta-particles and gamma-rays
- UK-GCSE-SCIENCE-PHYS-AST-02-03General Certificate of Secondary Education (GCSE) · Science · Year 11 (GCSE) · Grade 10use names and symbols of common nuclei and particles to write balanced equations that represent radioactive decay
Curriculum Framework
10th Grade · Science · UK GCSE
1
6 lessons
Density and States of Matter
Explain differences in density and changes of state using the particle model and calculate density for regular and irregular objects.
2
8 lessons
Internal Energy, Specific Heat, and Latent Heat
Explain thermal energy changes using the particle model and perform calculations involving specific heat capacity and specific latent heat.
3
4 lessons
Particle Motion and Gas Pressure
Explain the behaviour of gas particles and the qualitative relationship between temperature, kinetic energy, and pressure at constant volume.
4
5 lessons
Development and Structure of the Nuclear Atom
Describe how scientific evidence transformed the atomic model and recall the structure, relative scale, and mass distribution of the atom.
5
5 lessons
Subatomic Particles, Isotopes, and Ions
Relate atomic number, mass number, and electron configurations to isotopes, ion formation, and radiation absorption or emission.
6
5 lessons
Radioactive Emissions and Nuclear Equations
Compare alpha, beta, gamma, and neutron radiation and balance nuclear equations representing radioactive decay.
7
5 lessons
Half-Life and Radioactive Activity
Explain the random nature of radioactive decay, determine half-life graphically, and calculate remaining activity and decay ratios.
8
4 lessons
Radiation Hazards: Contamination and Irradiation
Compare the mechanisms, health hazards, and safety precautions associated with radioactive contamination and irradiation.
9
5 lessons
Mathematical Skills in Nuclear Physics
Apply mathematical principles to balance nuclear equations by mass and charge, and calculate net decline ratios over multiple half-lives.