
Public learning track
Interactions, Applications and Hazards of Electromagnetic Waves
10th Grade · Science · UK GCSE
8 lessons
Goal
Evaluate how electromagnetic waves interact with matter, their technological applications, and the health risks of ionising radiation.
Featured Diagrams
Absorption, Transmission, Reflection and Refraction Across Wavelengths
8 lessons
0 of 8 done
- 1Absorption, Transmission, Reflection and Refraction Across WavelengthsUp nextStart
- 2Explaining Refraction Using Wavefronts and Changes in Wave VelocityPremiumNot started yet
- 3Uses of Radio Waves and Microwaves in Communications and HeatingNot started yet
- 4Uses of Infrared and Visible Light in Technology and MedicineNot started yet
- 5Uses of Ultraviolet, X-Rays and Gamma RaysNot started yet
- 6Hazards of High-Frequency EM Radiation: Tissue Damage and CancerNot started yet
- 7Radiation Dose and Risk Evaluation in Medical ImagingNot started yet
- 8Exam-Style EM Applications, Interactions and Hazard EvaluationsNot started yet
Standards Covered
- UK-GCSE-SCIENCE-PHYS-EM-02General Certificate of Secondary Education (GCSE) · Science · Year 11 (GCSE) · Grade 10Interactions of electromagnetic radiation with matter and their applications
- UK-GCSE-SCIENCE-PHYS-EM-02-01General Certificate of Secondary Education (GCSE) · Science · Year 11 (GCSE) · Grade 10recall that different substances may absorb, transmit, refract, or reflect these waves in ways that vary with wavelength; explain how some effects are related to differences in the velocity of the waves in different substances
- UK-GCSE-SCIENCE-PHYS-EM-02-04General Certificate of Secondary Education (GCSE) · Science · Year 11 (GCSE) · Grade 10give examples of some practical uses of electromagnetic waves in the radio, micro-wave, infra-red, visible, ultra-violet, X-ray and gamma-ray regions and describe how ultra-violet waves, X-rays and gamma-rays can have hazardous effects, notably on human bodily tissues
- UK-GCSE-SCIENCE-PHYS-EM-02-02General Certificate of Secondary Education (GCSE) · Science · Year 11 (GCSE) · Grade 10recall that radio waves can be produced by or can themselves induce oscillations in electrical circuits
- UK-GCSE-SCIENCE-PHYS-EM-02-03General Certificate of Secondary Education (GCSE) · Science · Year 11 (GCSE) · Grade 10recall that changes in atoms and nuclei can also generate and absorb radiations over a wide frequency range
Curriculum Framework
10th Grade · Science · UK GCSE
1
7 lessons
Speed, Velocity, and Everyday Motion
Understand the distinction between scalar and vector quantities, recall typical speeds, and perform standard speed and unit conversion calculations.
2
5 lessons
Measuring Motion, Relative Velocity, and Exam Skills
Master experimental techniques for measuring motion, analyze timing errors, solve 1D relative velocity problems, and tackle GCSE-level kinematics questions.
3
10 lessons
Distance-Time Graphs and Calculating Speed
Plot, interpret, and calculate gradients from distance-time and displacement-time graphs.
4
12 lessons
Acceleration, Velocity-Time Graphs and Free Fall
Calculate acceleration, interpret velocity-time graphs, and calculate distance travelled using enclosed area.
5
8 lessons
Advanced Kinematics and Equations of Motion
Apply the uniform acceleration equation v² - u² = 2as and solve complex multi-step kinematics problems.
6
6 lessons
Circular Motion and Motion in Orbits
Explain how an object moving in a circle moves with constant speed but continuously changing velocity.
7
7 lessons
Newton's First Law, Resultant Forces and Inertia
Apply Newton's First Law to explain stationary objects, uniform velocity, and the effect of unbalanced resultant forces.
8
9 lessons
Newton's Second Law and Inertial Mass Calculations
Apply Newton's Second Law F = ma, calculate inertial mass, and investigate acceleration with varying force and mass.
9
6 lessons
Newton's Third Law and Equilibrium Interactions
Apply Newton's Third Law to interaction pairs and contrast Newton's Third Law pairs with balanced equilibrium forces.
10
9 lessons
Momentum, Impulse and Collisions in Closed Systems
Define momentum, calculate momentum using p = mv, and apply the principle of conservation of momentum to collisions and explosions.
11
7 lessons
Human Reaction Time, Thinking Distance and Road Safety
Measure human reaction times, recall typical values, and explain factors affecting driver thinking distance.
12
8 lessons
Braking Distances, Friction and Deceleration Hazards
Explain factors affecting braking distance, analyse energy dissipation during braking, and evaluate safety features.
13
8 lessons
Wave Properties, Graphs, and the Wave Equation
Describe wave motion and key wave properties, interpret wave graphs, and solve multi-step wave equation calculations.
14
4 lessons
Investigating Wave Speed: GCSE Required Practicals
Carry out and analyze required practical investigations to measure wave speed in liquids and solids, minimize experimental uncertainty, and apply methods to exam questions.
15
9 lessons
Transverse vs Longitudinal Waves and Sound in Matter
Differentiate transverse and longitudinal waves, explain wave transmission in media, and investigate sound waves.
16
8 lessons
Measuring Wave Speeds and Wave Motion Evidence
Demonstrate that waves transfer energy without matter and calculate wave speeds experimentally in water and air.
17
8 lessons
The Electromagnetic Spectrum: Properties and Energy Transfer
Explain the nature of electromagnetic waves, order the spectrum, and calculate wave parameters using standard form and SI prefixes.
18
8 lessons
Interactions, Applications and Hazards of Electromagnetic Waves
Evaluate how electromagnetic waves interact with matter, their technological applications, and the health risks of ionising radiation.